diff --git a/SAREF4BLD/RawRDF/IFC-device-Raw copy.rdf b/SAREF4BLD/RawRDF/IFC-device-Raw copy.rdf
new file mode 100644
index 0000000000000000000000000000000000000000..fb84ea6cc5bdedfb13c3db375ecac8337e5379b2
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@@ -0,0 +1,634 @@
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+ An actuator is a mechanical device for moving or controlling a mechanism or system. An actuator takes energy, usually created by air, electricity, or liquid, and converts that into some kind of motion.
+ actuator
+ https://w3id.org/ifc/IFC4_ADD1#IfcActuator
+
+
+
+
+
+
+
+ An air-to-air heat recovery device employs a counter-flow heat exchanger between inbound and outbound air flow. It is typically used to transfer heat from warmer air in one chamber to cooler air in the second chamber (i.e., typically used to recover heat from the conditioned air being exhausted and the outside air being supplied to a building), resulting in energy savings from reduced heating (or cooling) requirements.
+ Air to air heat recovery
+ https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecovery
+
+
+
+
+
+
+
+ An alarm is a device that signals the existence of a condition or situation that is outside the boundaries of normal expectation or that activates such a device.
+
+Alarms include the provision of break glass buttons and manual pull boxes that are used to activate alarms.
+ alarm
+ https://w3id.org/ifc/IFC4_ADD1#IfcAlarm
+
+
+
+
+
+
+
+ An audio-visual appliance is a device that displays, captures, transmits, or receives audio or video.
+
+Audio-visual appliances may be fixed in place or may be able to be moved from one space to another. They may require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source. Audio-visual appliances may be connected to data circuits including specialist circuits for audio visual purposes only.
+ audio visual applicance
+ https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicance
+
+
+
+
+
+
+
+ A burner is a device that converts fuel into heat through combustion. It includes gas, oil, and wood burners.
+ Burner
+ https://w3id.org/ifc/IFC4_ADD1#IfcBurner
+
+
+
+
+
+
+
+ A chiller is a device used to remove heat from a liquid via a vapor-compression or absorption refrigeration cycle to cool a fluid, typically water or a mixture of water and glycol. The chilled fluid is then used to cool and dehumidify air in a building.
+ Chiller
+ https://w3id.org/ifc/IFC4_ADD1#IfcChiller
+
+
+
+
+
+
+
+ A coil is a device used to provide heat transfer between non-mixing media. A common example is a cooling coil, which utilizes a finned coil in which circulates chilled water, antifreeze, or refrigerant that is used to remove heat from air moving across the surface of the coil. A coil may be used either for heating or cooling purposes by placing a series of tubes (the coil) carrying a heating or cooling fluid into an airstream. The coil may be constructed from tubes bundled in a serpentine form or from finned tubes that give a extended heat transfer surface.
+
+Coils may also be used for non-airflow cases such as embedded in a floor slab.
+ Coil
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoil
+
+
+
+
+
+
+
+ Coil type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoilType
+
+
+
+
+
+
+
+ A communications appliance transmits and receives electronic or digital information as data or sound.
+
+Communication appliances may be fixed in place or may be able to be moved from one space to another. Communication appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ communication appliance
+ https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationAppliance
+
+
+
+
+
+
+
+ A compressor is a device that compresses a fluid typically used in a refrigeration circuit.
+ Compressor
+ https://w3id.org/ifc/IFC4_ADD1#IfcCompressor
+
+
+
+
+
+
+
+ A condenser is a device that is used to dissipate heat, typically by condensing a substance such as a refrigerant from its gaseous to its liquid state.
+ Condenser
+ https://w3id.org/ifc/IFC4_ADD1#IfcCondenser
+
+
+
+
+
+
+
+ A controller is a device that monitors inputs and controls outputs within a building automation system.
+
+A controller may be physical (having placement within a spatial structure) or logical (a software interface or aggregated within a programmable physical controller).
+ controller
+ https://w3id.org/ifc/IFC4_ADD1#IfcController
+
+
+
+
+
+
+
+ A cooled beam (or chilled beam) is a device typically used to cool air by circulating a fluid such as chilled water through exposed finned tubes above a space. Typically mounted overhead near or within a ceiling, the cooled beam uses convection to cool the space below it by acting as a heat sink for the naturally rising warm air of the space. Once cooled, the air naturally drops back to the floor where the cycle begins again.
+ Cooled beam
+ https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeam
+
+
+
+
+
+
+
+ A cooling tower is a device which rejects heat to ambient air by circulating a fluid such as water through it to reduce its temperature by partial evaporation.
+ Cooling tower
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTower
+
+
+
+
+
+
+
+ A damper typically participates in an HVAC duct distribution system and is used to control or modulate the flow of air.
+ Damper
+ https://w3id.org/ifc/IFC4_ADD1#IfcDamper
+
+
+
+
+
+
+
+ A duct silencer is a device that is typically installed inside a duct distribution system for the purpose of reducing the noise levels from air movement, fan noise, etc. in the adjacent space or downstream of the duct silencer device.
+ Duct silencer
+ https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencer
+
+
+
+
+
+
+
+ An electric appliance is a device intended for consumer usage that is powered by electricity.
+
+Electric appliances may be fixed in place or may be able to be moved from one space to another. Electric appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ electric appliance
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricAppliance
+
+
+
+
+
+
+
+ An electric flow storage device is a device in which electrical energy is stored and from which energy may be progressively released.
+ Electric flow storage device
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDevice
+
+
+
+
+
+
+
+ An electric generator is an engine that is a machine for converting mechanical energy into electrical energy.
+ Electric generator
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricGenerator
+
+
+
+
+
+
+
+ An electric motor is an engine that is a machine for converting electrical energy into mechanical energy.
+ Electric motor
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotor
+
+
+
+
+
+
+
+ An electric time control is a device that applies control to the provision or flow of electrical energy over time.
+ Electric time control
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControl
+
+
+
+
+
+
+
+ The distribution flow element IfcEnergyConversionDevice defines the occurrence of a device used to perform energy conversion or heat transfer and typically participates in a flow distribution system. Its type is defined by IfcEnergyConversionDeviceType or its subtypes.
+ Energy conversion device
+ https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDevice
+
+
+
+
+
+
+
+ An engine is a device that converts fuel into mechanical energy through combustion.
+ Engine
+ https://w3id.org/ifc/IFC4_ADD1#IfcEngine
+
+
+
+
+
+
+
+ An evaporative cooler is a device that cools air by saturating it with water vapor.
+ Evaporative cooler
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCooler
+
+
+
+
+
+
+
+ An evaporator is a device in which a liquid refrigerent is vaporized and absorbs heat from the surrounding fluid.
+ Evaporator
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporator
+
+
+
+
+
+
+
+ A fan is a device which imparts mechanical work on a gas. A typical usage of a fan is to induce airflow in a building services air distribution system.
+ Fan
+ https://w3id.org/ifc/IFC4_ADD1#IfcFan
+
+
+
+
+
+
+
+ A filter is an apparatus used to remove particulate or gaseous matter from fluids and gases.
+ Filter
+ https://w3id.org/ifc/IFC4_ADD1#IfcFilter
+
+
+
+
+
+
+
+ A fire suppression terminal has the purpose of delivering a fluid (gas or liquid) that will suppress a fire.
+
+A fire suppression terminal provides for all forms of sprinkler, spreader and other form of terminal that is connected to a pipework system and intended to act in the role of suppressing a fire.
+ Fire suppression terminal
+ https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminal
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowController defines the occurrence of elements of a distribution system that are used to regulate flow through a distribution system. Examples include dampers, valves, switches, and relays. Its type is defined by IfcFlowControllerType or subtypes.
+ Flow controller
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowController
+
+
+
+
+
+
+
+ A flow instrument reads and displays the value of a particular property of a system at a point, or displays the difference in the value of a property between two points.
+
+Instrumentation is typically for the purpose of determining the value of the property at a point in time. It is not the purpose of an instrument to record or integrate the values over time (although they may be connected to recording devices that do perform such a function). This entity provides for all forms of mechanical flow instrument (thermometers, pressure gauges etc.) and electrical flow instruments (ammeters, voltmeters etc.)
+ flow instrument
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrument
+
+
+
+
+
+
+
+ A flow meter is a device that is used to measure the flow rate in a system.
+ Flow meter
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeter
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowMovingDevice defines the occurrence of an apparatus used to distribute, circulate or perform conveyance of fluids, including liquids and gases (such as a pump or fan), and typically participates in a flow distribution system. Its type is defined by IfcFlowMovingDeviceType or its subtypes.
+ Flow moving device
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDevice
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowStorageDevice defines the occurrence of a device that participates in a distribution system and is used for temporary storage (such as a tank). Its type is defined by IfcFlowStorageDeviceType or its subtypes.
+ Flow storage device
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDevice
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowTerminal defines the occurrence of a permanently attached element that acts as a terminus or beginning of a distribution system (such as an air outlet, drain, water closet, or sink). A terminal is typically a point at which a system interfaces with an external environment. Its type is defined by IfcFlowTerminalType or its subtypes.
+ Flow terminal
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminal
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowTreatmentDevice defines the occurrence of a device typically used to remove unwanted matter from a fluid, either liquid or gas, and typically participates in a flow distribution system. Its type is defined by IfcFlowTreatmentDeviceType or its subtypes.
+ Flow treatment device
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDevice
+
+
+
+
+
+
+
+ A heat exchanger is a device used to provide heat transfer between non-mixing media such as plate and shell and tube heat exchangers.
+
+IfcHeatExchanger is commonly used on water-side distribution systems to recover energy from a liquid to another liquid (typically water-based), whereas IfcAirToAirHeatRecovery is commonly used on air-side distribution systems to recover energy from a gas to a gas (usually air).
+ Heat exchanger
+ https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchanger
+
+
+
+
+
+
+
+ A humidifier is a device that adds moisture into the air.
+ Humidifier
+ https://w3id.org/ifc/IFC4_ADD1#IfcHumidifier
+
+
+
+
+
+
+
+ An interceptor is a device designed and installed in order to separate and retain deleterious, hazardous or undesirable matter while permitting normal sewage or liquids to discharge into a collection system by gravity.
+ Interceptor
+ https://w3id.org/ifc/IFC4_ADD1#IfcInterceptor
+
+
+
+
+
+
+
+ A lamp is an artificial light source such as a light bulb or tube.
+ Lamp
+ https://w3id.org/ifc/IFC4_ADD1#IfcLamp
+
+
+
+
+
+
+
+ A medical device is attached to a medical piping system and operates upon medical gases to perform a specific function. Medical gases include medical air, medical vacuum, oxygen, carbon dioxide, nitrogen, and nitrous oxide.
+
+Outlets for medical gasses should use IfcValve with PredefinedType equal to GASTAP, containing an IfcDistributionPort with FlowDirection=SINK and PredefinedType equal to COMPRESSEDAIR, VACUUM, or CHEMICAL, and having property sets on the port further indicating the gas type and pressure. Tanks for medical gasses should use IfcTank with PredefinedType equal to PRESSUREVESSEL, containing an IfcDistributionPort with FlowDirection=SOURCE and PredefinedType=CHEMICAL, and having property sets on the port further indicating the gas type and pressure range.
+ Medical device
+ https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDevice
+
+
+
+
+
+
+
+ An outlet is a device installed at a point to receive one or more inserted plugs for electrical power or communications.
+
+Power outlets are commonly connected within a junction box; data outlets may be directly connected to a wall. For power outlets sharing the same circuit within a junction box, the ports should indicate the logical wiring relationship to the enclosing junction box, even though they may be physically connected to a cable going to another outlet, switch, or fixture.
+ Outlet
+ https://w3id.org/ifc/IFC4_ADD1#IfcOutlet
+
+
+
+
+
+
+
+ A protective device breaks an electrical circuit when a stated electric current that passes through it is exceeded.
+
+A protective device provides protection against electrical current only (not as a general protective device). It may be used to represent the complete set of elements including both the tripping unit and the breaking unit that provide the protection. This may be particularly useful at earlier stages of design where the approach to breaking the electrical supply may be determined but the method of tripping may not. Alternatively, this entity may be used to specifically represent the breaking unit alone (in which case the tripping unit will also be specifically identified). This entity is specific to dedicated protective devices and excludes electrical outlets that may have circuit protection.
+ Protective device
+ https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDevice
+
+
+
+
+
+
+
+ A pump is a device which imparts mechanical work on fluids or slurries to move them through a channel or pipeline. A typical use of a pump is to circulate chilled water or heating hot water in a building services distribution system.
+ Pump
+ https://w3id.org/ifc/IFC4_ADD1#IfcPump
+
+
+
+
+
+
+
+ A sanitary terminal is a fixed appliance or terminal usually supplied with water and used for drinking, cleaning or foul water disposal or that is an item of equipment directly used with such an appliance or terminal.
+ Sanitary terminal
+ https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminal
+
+
+
+
+
+
+
+ A sensor is a device that measures a physical quantity and converts it into a signal which can be read by an observer or by an instrument.
+ sensor
+ https://w3id.org/ifc/IFC4_ADD1#IfcSensor
+
+
+
+
+
+
+
+ A solar device converts solar radiation into other energy such as electric current or thermal energy.
+ solar device
+ https://w3id.org/ifc/IFC4_ADD1#IfcSolarDevice
+
+
+
+
+
+
+
+ Space heaters utilize a combination of radiation and/or natural convection using a heating source such as electricity, steam or hot water to heat a limited space or area. Examples of space heaters include radiators, convectors, baseboard and finned-tube heaters.
+
+IfcUnitaryEquipment should be used for packaged units supporting a combination of heating, cooling, and/or dehumidification; IfcCoil should be used for coil-based floor heating.
+ Space heater
+ https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeater
+
+
+
+
+
+
+
+ A switch is used in a cable distribution system (electrical circuit) to control or modulate the flow of electricity.
+
+Switches include those used for electrical power, communications, audio-visual, or other distribution system types as determined by the available ports.
+ Switching device
+ https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDevice
+
+
+
+
+
+
+
+ A transformer is an inductive stationary device that transfers electrical energy from one circuit to another.
+
+IfcTransformer is used to transform electric power; conversion of electric signals for other purposes is handled at other entities: IfcController converts arbitrary signals, IfcAudioVisualAppliance converts signals for audio or video streams, and IfcCommunicationsAppliance converts signals for data or other communications usage.
+ Transformer
+ https://w3id.org/ifc/IFC4_ADD1#IfcTransformer
+
+
+
+
+
+
+
+ A tube bundle is a device consisting of tubes and bundles of tubes used for heat transfer and contained typically within other energy conversion devices, such as a chiller or coil.
+ Tube bundle
+ https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundle
+
+
+
+
+
+
+
+ A unitary control element combines a number of control components into a single product, such as a thermostat or humidistat.
+
+A unitary control element provides a housing for an aggregation of control or electrical distribution elements that, in combination, perform a singular (unitary) purpose. Each item in the aggregation may have its own geometric representation and location.
+ Unitary control element
+ https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElement
+
+
+
+
+
+
+
+ A valve is used in a building services piping distribution system to control or modulate the flow of the fluid.
+ Valve
+ https://w3id.org/ifc/IFC4_ADD1#IfcValve
+
+
+
+
+
+
+
+ A vibration isolator is a device used to minimize the effects of vibration transmissibility in a building.
+ Vibration isolator
+ https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolator
+
+
+
+
+
+
+
+ Shading devices are purpose built devices to protect from the sunlight, from natural light, or screening them from view. Shading devices can form part of the facade or can be mounted inside the building, they can be fixed or operable.
+ What is a shading device?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsAShadingDevice?
+
+
+
+
+
+
+
+ A transport element is a generalization of all transport related objects that move people, animals or goods within a building or building complex. The IfcTransportElement defines the occurrence of a transport element, that (if given), is expressed by the IfcTransportElementType.
+ What is a transport element?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsATransportElement?
+
+
+
+
+
+
+
+ JALOUSIE A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
+SHUTTER A mechanical devices that limits the passage of light. Often used as a a solid or louvered movable cover for a window.
+AWNING A rooflike shelter of canvas or other material extending over a doorway, from the top of a window, over a deck, or similar, in order to provide protection, as from the sun.
+ Which shading device types are there?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhichShadingDeviceTypesAreThere?
+
+
+
+
+
+
+
+ ELEVATOR Elevator or lift being a transport device to move people of good vertically.
+ESCALATOR Escalator being a transport device to move people. It consists of individual linked steps that move up and down on tracks while keeping the threads horizontal.
+MOVINGWALKWAY Moving walkway being a transport device to move people horizontally or on an incline. It is a slow conveyor belt that transports people.
+CRANEWAY A crane way system, normally including the crane rails, fasteners and the crane. It is primarily used to move heavy goods in a factory or other industry buildings.
+LIFTINGGEAR A device used for lifting or lowering heavy goods. It may be manually operated or electrically or pneumatically driven.
+ Which types of transport element are there?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhichTypesOfTransportElementAreThere?
+
+
+
+
+
+
+
diff --git a/SAREF4BLD/RawRDF/IFC-device-Raw.rdf b/SAREF4BLD/RawRDF/IFC-device-Raw.rdf
new file mode 100644
index 0000000000000000000000000000000000000000..757e372664d9cd8fb234546c7fa21037879741f7
--- /dev/null
+++ b/SAREF4BLD/RawRDF/IFC-device-Raw.rdf
@@ -0,0 +1,751 @@
+
+
+
+
+
+ actuator
+ An actuator is a mechanical device for moving or controlling a mechanism or system. An actuator takes energy, usually created by air, electricity, or liquid, and converts that into some kind of motion.
+ https://w3id.org/ifc/IFC4_ADD1#IfcActuator
+
+
+
+
+ actuator types
+ https://w3id.org/ifc/IFC4_ADD1#IfcActuatorTypes
+
+
+
+
+ alarm
+ An alarm is a device that signals the existence of a condition or situation that is outside the boundaries of normal expectation or that activates such a device.
+
+Alarms include the provision of break glass buttons and manual pull boxes that are used to activate alarms.
+ https://w3id.org/ifc/IFC4_ADD1#IfcAlarm
+
+
+
+
+ alarm types
+ https://w3id.org/ifc/IFC4_ADD1#IfcAlarmTypes
+
+
+
+
+ controller
+ A controller is a device that monitors inputs and controls outputs within a building automation system.
+
+A controller may be physical (having placement within a spatial structure) or logical (a software interface or aggregated within a programmable physical controller).
+ https://w3id.org/ifc/IFC4_ADD1#IfcController
+
+
+
+
+ controller types
+ https://w3id.org/ifc/IFC4_ADD1#IfcControllerTypes
+
+
+
+
+ flow instrument
+ A flow instrument reads and displays the value of a particular property of a system at a point, or displays the difference in the value of a property between two points.
+
+Instrumentation is typically for the purpose of determining the value of the property at a point in time. It is not the purpose of an instrument to record or integrate the values over time (although they may be connected to recording devices that do perform such a function). This entity provides for all forms of mechanical flow instrument (thermometers, pressure gauges etc.) and electrical flow instruments (ammeters, voltmeters etc.)
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrument
+
+
+
+
+ flow instrument types
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrumentTypes
+
+
+
+
+ sensor
+ A sensor is a device that measures a physical quantity and converts it into a signal which can be read by an observer or by an instrument.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSensor
+
+
+
+
+ sensor type
+ https://w3id.org/ifc/IFC4_ADD1#IfcSensorType
+
+
+
+
+ Unitary control element
+ A unitary control element combines a number of control components into a single product, such as a thermostat or humidistat.
+
+A unitary control element provides a housing for an aggregation of control or electrical distribution elements that, in combination, perform a singular (unitary) purpose. Each item in the aggregation may have its own geometric representation and location.
+ https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElement
+
+
+
+
+ Unitary control element type
+ https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElementType
+
+
+
+
+ audio visual applicance
+ An audio-visual appliance is a device that displays, captures, transmits, or receives audio or video.
+
+Audio-visual appliances may be fixed in place or may be able to be moved from one space to another. They may require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source. Audio-visual appliances may be connected to data circuits including specialist circuits for audio visual purposes only.
+ https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicance
+
+
+
+
+ audio visual applicance type
+ https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicanceType
+
+
+
+
+ communication appliance
+ A communications appliance transmits and receives electronic or digital information as data or sound.
+
+Communication appliances may be fixed in place or may be able to be moved from one space to another. Communication appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationAppliance
+
+
+
+
+ communication appliance type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationApplianceType
+
+
+
+
+ electric appliance
+ An electric appliance is a device intended for consumer usage that is powered by electricity.
+
+Electric appliances may be fixed in place or may be able to be moved from one space to another. Electric appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricAppliance
+
+
+
+
+ electric applicance type
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricApplicanceType
+
+
+
+
+ Electric flow storage device
+ An electric flow storage device is a device in which electrical energy is stored and from which energy may be progressively released.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDevice
+
+
+
+
+ Electric flow storage device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDeviceType
+
+
+
+
+ Electric generator
+ An electric generator is an engine that is a machine for converting mechanical energy into electrical energy.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricGenerator
+
+
+
+
+ Electric generator type
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricGeneratorType
+
+
+
+
+ Electric motor
+ An electric motor is an engine that is a machine for converting electrical energy into mechanical energy.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotor
+
+
+
+
+ Electric motor type
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotorType
+
+
+
+
+ Electric time control
+ An electric time control is a device that applies control to the provision or flow of electrical energy over time.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControl
+
+
+
+
+ Electric time control type
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControlType
+
+
+
+
+ Lamp
+ A lamp is an artificial light source such as a light bulb or tube.
+ https://w3id.org/ifc/IFC4_ADD1#IfcLamp
+
+
+
+
+ Lamp type
+ https://w3id.org/ifc/IFC4_ADD1#IfcLampType
+
+
+
+
+ Outlet
+ An outlet is a device installed at a point to receive one or more inserted plugs for electrical power or communications.
+
+Power outlets are commonly connected within a junction box; data outlets may be directly connected to a wall. For power outlets sharing the same circuit within a junction box, the ports should indicate the logical wiring relationship to the enclosing junction box, even though they may be physically connected to a cable going to another outlet, switch, or fixture.
+ https://w3id.org/ifc/IFC4_ADD1#IfcOutlet
+
+
+
+
+ outlet type
+ https://w3id.org/ifc/IFC4_ADD1#IfcOutletType
+
+
+
+
+ Protective device
+ A protective device breaks an electrical circuit when a stated electric current that passes through it is exceeded.
+
+A protective device provides protection against electrical current only (not as a general protective device). It may be used to represent the complete set of elements including both the tripping unit and the breaking unit that provide the protection. This may be particularly useful at earlier stages of design where the approach to breaking the electrical supply may be determined but the method of tripping may not. Alternatively, this entity may be used to specifically represent the breaking unit alone (in which case the tripping unit will also be specifically identified). This entity is specific to dedicated protective devices and excludes electrical outlets that may have circuit protection.
+ https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDevice
+
+
+
+
+ protective device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDeviceType
+
+
+
+
+ solar device
+ A solar device converts solar radiation into other energy such as electric current or thermal energy.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSolarDevice
+
+
+
+
+ solar device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcSolarDeviceType
+
+
+
+
+ Switching device
+ A switch is used in a cable distribution system (electrical circuit) to control or modulate the flow of electricity.
+
+Switches include those used for electrical power, communications, audio-visual, or other distribution system types as determined by the available ports.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDevice
+
+
+
+
+ Switching device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDeviceType
+
+
+
+
+ Transformer
+ A transformer is an inductive stationary device that transfers electrical energy from one circuit to another.
+
+IfcTransformer is used to transform electric power; conversion of electric signals for other purposes is handled at other entities: IfcController converts arbitrary signals, IfcAudioVisualAppliance converts signals for audio or video streams, and IfcCommunicationsAppliance converts signals for data or other communications usage.
+ https://w3id.org/ifc/IFC4_ADD1#IfcTransformer
+
+
+
+
+ Transformer type
+ https://w3id.org/ifc/IFC4_ADD1#IfcTransformerType
+
+
+
+
+ Air to air heat recovery
+ An air-to-air heat recovery device employs a counter-flow heat exchanger between inbound and outbound air flow. It is typically used to transfer heat from warmer air in one chamber to cooler air in the second chamber (i.e., typically used to recover heat from the conditioned air being exhausted and the outside air being supplied to a building), resulting in energy savings from reduced heating (or cooling) requirements.
+ https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecovery
+
+
+
+
+ Air to air heat recovery types
+ https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecoveryTypes
+
+
+
+
+ Burner
+ A burner is a device that converts fuel into heat through combustion. It includes gas, oil, and wood burners.
+ https://w3id.org/ifc/IFC4_ADD1#IfcBurner
+
+
+
+
+ Burner type
+ https://w3id.org/ifc/IFC4_ADD1#IfcBurnerType
+
+
+
+
+ Chiller
+ A chiller is a device used to remove heat from a liquid via a vapor-compression or absorption refrigeration cycle to cool a fluid, typically water or a mixture of water and glycol. The chilled fluid is then used to cool and dehumidify air in a building.
+ https://w3id.org/ifc/IFC4_ADD1#IfcChiller
+
+
+
+
+ Chiller type
+ https://w3id.org/ifc/IFC4_ADD1#IfcChillerType
+
+
+
+
+ Coil
+ A coil is a device used to provide heat transfer between non-mixing media. A common example is a cooling coil, which utilizes a finned coil in which circulates chilled water, antifreeze, or refrigerant that is used to remove heat from air moving across the surface of the coil. A coil may be used either for heating or cooling purposes by placing a series of tubes (the coil) carrying a heating or cooling fluid into an airstream. The coil may be constructed from tubes bundled in a serpentine form or from finned tubes that give a extended heat transfer surface.
+
+Coils may also be used for non-airflow cases such as embedded in a floor slab.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoil
+
+
+
+
+ Coil type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoilType
+
+
+
+
+ Compressor
+ A compressor is a device that compresses a fluid typically used in a refrigeration circuit.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCompressor
+
+
+
+
+ Compressor type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCompressorType
+
+
+
+
+ Condenser
+ A condenser is a device that is used to dissipate heat, typically by condensing a substance such as a refrigerant from its gaseous to its liquid state.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCondenser
+
+
+
+
+ Condenser type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCondenserType
+
+
+
+
+ Cooled beam
+ A cooled beam (or chilled beam) is a device typically used to cool air by circulating a fluid such as chilled water through exposed finned tubes above a space. Typically mounted overhead near or within a ceiling, the cooled beam uses convection to cool the space below it by acting as a heat sink for the naturally rising warm air of the space. Once cooled, the air naturally drops back to the floor where the cycle begins again.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeam
+
+
+
+
+ Cooled beam type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeamType
+
+
+
+
+ Cooling tower
+ A cooling tower is a device which rejects heat to ambient air by circulating a fluid such as water through it to reduce its temperature by partial evaporation.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTower
+
+
+
+
+ Cooling tower type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTowerType
+
+
+
+
+ Damper
+ A damper typically participates in an HVAC duct distribution system and is used to control or modulate the flow of air.
+ https://w3id.org/ifc/IFC4_ADD1#IfcDamper
+
+
+
+
+ Damper type
+ https://w3id.org/ifc/IFC4_ADD1#IfcDamperType
+
+
+
+
+ Duct silencer
+ A duct silencer is a device that is typically installed inside a duct distribution system for the purpose of reducing the noise levels from air movement, fan noise, etc. in the adjacent space or downstream of the duct silencer device.
+ https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencer
+
+
+
+
+ Duct silencer type
+ https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencerType
+
+
+
+
+ Engine
+ An engine is a device that converts fuel into mechanical energy through combustion.
+ https://w3id.org/ifc/IFC4_ADD1#IfcEngine
+
+
+
+
+ Engine type
+ https://w3id.org/ifc/IFC4_ADD1#IfcEngineType
+
+
+
+
+ Evaporative cooler
+ An evaporative cooler is a device that cools air by saturating it with water vapor.
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCooler
+
+
+
+
+ Evaporative cooler type
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCoolerType
+
+
+
+
+ Evaporator
+ An evaporator is a device in which a liquid refrigerent is vaporized and absorbs heat from the surrounding fluid.
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporator
+
+
+
+
+ Evaporator type
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporatorType
+
+
+
+
+ Fan
+ A fan is a device which imparts mechanical work on a gas. A typical usage of a fan is to induce airflow in a building services air distribution system.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFan
+
+
+
+
+ Fan type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFanType
+
+
+
+
+ Filter
+ A filter is an apparatus used to remove particulate or gaseous matter from fluids and gases.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFilter
+
+
+
+
+ Filter type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFilterType
+
+
+
+
+ Flow meter
+ A flow meter is a device that is used to measure the flow rate in a system.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeter
+
+
+
+
+ Flow meter type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeterType
+
+
+
+
+ Heat exchanger
+ A heat exchanger is a device used to provide heat transfer between non-mixing media such as plate and shell and tube heat exchangers.
+
+IfcHeatExchanger is commonly used on water-side distribution systems to recover energy from a liquid to another liquid (typically water-based), whereas IfcAirToAirHeatRecovery is commonly used on air-side distribution systems to recover energy from a gas to a gas (usually air).
+ https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchanger
+
+
+
+
+ Heat exchanger type
+ https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchangerType
+
+
+
+
+ Humidifier
+ A humidifier is a device that adds moisture into the air.
+ https://w3id.org/ifc/IFC4_ADD1#IfcHumidifier
+
+
+
+
+ Humidifier type
+ https://w3id.org/ifc/IFC4_ADD1#IfcHumidifierType
+
+
+
+
+ Medical device
+ A medical device is attached to a medical piping system and operates upon medical gases to perform a specific function. Medical gases include medical air, medical vacuum, oxygen, carbon dioxide, nitrogen, and nitrous oxide.
+
+Outlets for medical gasses should use IfcValve with PredefinedType equal to GASTAP, containing an IfcDistributionPort with FlowDirection=SINK and PredefinedType equal to COMPRESSEDAIR, VACUUM, or CHEMICAL, and having property sets on the port further indicating the gas type and pressure. Tanks for medical gasses should use IfcTank with PredefinedType equal to PRESSUREVESSEL, containing an IfcDistributionPort with FlowDirection=SOURCE and PredefinedType=CHEMICAL, and having property sets on the port further indicating the gas type and pressure range.
+ https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDevice
+
+
+
+
+ Medical device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDeviceType
+
+
+
+
+ Pump
+ A pump is a device which imparts mechanical work on fluids or slurries to move them through a channel or pipeline. A typical use of a pump is to circulate chilled water or heating hot water in a building services distribution system.
+ https://w3id.org/ifc/IFC4_ADD1#IfcPump
+
+
+
+
+ Pump type
+ https://w3id.org/ifc/IFC4_ADD1#IfcPumpType
+
+
+
+
+ Space heater
+ Space heaters utilize a combination of radiation and/or natural convection using a heating source such as electricity, steam or hot water to heat a limited space or area. Examples of space heaters include radiators, convectors, baseboard and finned-tube heaters.
+
+IfcUnitaryEquipment should be used for packaged units supporting a combination of heating, cooling, and/or dehumidification; IfcCoil should be used for coil-based floor heating.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeater
+
+
+
+
+ Space heater type
+ https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeaterType
+
+
+
+
+ Tube bundle
+ A tube bundle is a device consisting of tubes and bundles of tubes used for heat transfer and contained typically within other energy conversion devices, such as a chiller or coil.
+ https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundle
+
+
+
+
+ Tube bundle type
+ https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundleType
+
+
+
+
+ Valve
+ A valve is used in a building services piping distribution system to control or modulate the flow of the fluid.
+ https://w3id.org/ifc/IFC4_ADD1#IfcValve
+
+
+
+
+ Valve type
+ https://w3id.org/ifc/IFC4_ADD1#IfcValveType
+
+
+
+
+ Vibration isolator
+ A vibration isolator is a device used to minimize the effects of vibration transmissibility in a building.
+ https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolator
+
+
+
+
+ Vibration isolator type
+ https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolatorType
+
+
+
+
+ Fire suppression terminal
+ A fire suppression terminal has the purpose of delivering a fluid (gas or liquid) that will suppress a fire.
+
+A fire suppression terminal provides for all forms of sprinkler, spreader and other form of terminal that is connected to a pipework system and intended to act in the role of suppressing a fire.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminal
+
+
+
+
+ Fire suppression terminal type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminalType
+
+
+
+
+ Interceptor
+ An interceptor is a device designed and installed in order to separate and retain deleterious, hazardous or undesirable matter while permitting normal sewage or liquids to discharge into a collection system by gravity.
+ https://w3id.org/ifc/IFC4_ADD1#IfcInterceptor
+
+
+
+
+ Interceptor type
+ https://w3id.org/ifc/IFC4_ADD1#IfcInterceptorType
+
+
+
+
+ Sanitary terminal
+ A sanitary terminal is a fixed appliance or terminal usually supplied with water and used for drinking, cleaning or foul water disposal or that is an item of equipment directly used with such an appliance or terminal.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminal
+
+
+
+
+ Sanitary terminal type
+ https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminalType
+
+
+
+
+ Energy conversion device
+ The distribution flow element IfcEnergyConversionDevice defines the occurrence of a device used to perform energy conversion or heat transfer and typically participates in a flow distribution system. Its type is defined by IfcEnergyConversionDeviceType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDevice
+
+
+
+
+ Energy conversion device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDeviceType
+
+
+
+
+ Flow controller
+ The distribution flow element IfcFlowController defines the occurrence of elements of a distribution system that are used to regulate flow through a distribution system. Examples include dampers, valves, switches, and relays. Its type is defined by IfcFlowControllerType or subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowController
+
+
+
+
+ Flow controller type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowControllerType
+
+
+
+
+ Flow moving device
+ The distribution flow element IfcFlowMovingDevice defines the occurrence of an apparatus used to distribute, circulate or perform conveyance of fluids, including liquids and gases (such as a pump or fan), and typically participates in a flow distribution system. Its type is defined by IfcFlowMovingDeviceType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDevice
+
+
+
+
+ Flow moving device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDeviceType
+
+
+
+
+ Flow storage device
+ The distribution flow element IfcFlowStorageDevice defines the occurrence of a device that participates in a distribution system and is used for temporary storage (such as a tank). Its type is defined by IfcFlowStorageDeviceType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDevice
+
+
+
+
+ Flow storage device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDeviceType
+
+
+
+
+ Flow terminal
+ The distribution flow element IfcFlowTerminal defines the occurrence of a permanently attached element that acts as a terminus or beginning of a distribution system (such as an air outlet, drain, water closet, or sink). A terminal is typically a point at which a system interfaces with an external environment. Its type is defined by IfcFlowTerminalType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminal
+
+
+
+
+ Flow terminal type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminalType
+
+
+
+
+ Flow treatment device
+ The distribution flow element IfcFlowTreatmentDevice defines the occurrence of a device typically used to remove unwanted matter from a fluid, either liquid or gas, and typically participates in a flow distribution system. Its type is defined by IfcFlowTreatmentDeviceType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDevice
+
+
+
+
+ Flow treatment device type
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDeviceType
+
+
+
+
+ What is a shading device?
+ Shading devices are purpose built devices to protect from the sunlight, from natural light, or screening them from view. Shading devices can form part of the facade or can be mounted inside the building, they can be fixed or operable.
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsAShadingDevice?
+
+
+
+
+ Which shading device types are there?
+ JALOUSIE A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
+SHUTTER A mechanical devices that limits the passage of light. Often used as a a solid or louvered movable cover for a window.
+AWNING A rooflike shelter of canvas or other material extending over a doorway, from the top of a window, over a deck, or similar, in order to provide protection, as from the sun.
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhichShadingDeviceTypesAreThere?
+
+
+
+
+ What is a transport element?
+ A transport element is a generalization of all transport related objects that move people, animals or goods within a building or building complex. The IfcTransportElement defines the occurrence of a transport element, that (if given), is expressed by the IfcTransportElementType.
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsATransportElement?
+
+
+
+
+ Which types of transport element are there?
+ ELEVATOR Elevator or lift being a transport device to move people of good vertically.
+ESCALATOR Escalator being a transport device to move people. It consists of individual linked steps that move up and down on tracks while keeping the threads horizontal.
+MOVINGWALKWAY Moving walkway being a transport device to move people horizontally or on an incline. It is a slow conveyor belt that transports people.
+CRANEWAY A crane way system, normally including the crane rails, fasteners and the crane. It is primarily used to move heavy goods in a factory or other industry buildings.
+LIFTINGGEAR A device used for lifting or lowering heavy goods. It may be manually operated or electrically or pneumatically driven.
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhichTypesOfTransportElementAreThere?
+
+
+
\ No newline at end of file
diff --git a/SAREF4BLD/RawRDF/IFC-device-Raw.ttl b/SAREF4BLD/RawRDF/IFC-device-Raw.ttl
new file mode 100644
index 0000000000000000000000000000000000000000..d4d6ad683254276c52d29c1f08d47ab1d814bc9c
--- /dev/null
+++ b/SAREF4BLD/RawRDF/IFC-device-Raw.ttl
@@ -0,0 +1,532 @@
+@prefix rdfs: .
+@prefix foaf: .
+@prefix xsd: .
+@prefix owl: .
+@prefix rdf: .
+
+
+ a owl:Class ;
+ rdfs:label "actuator"@en ;
+ rdfs:comment "An actuator is a mechanical device for moving or controlling a mechanism or system. An actuator takes energy, usually created by air, electricity, or liquid, and converts that into some kind of motion."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcActuator" .
+
+ a owl:Class ;
+ rdfs:label "actuator types"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcActuatorTypes" .
+
+ a owl:Class ;
+ rdfs:label "alarm"@en ;
+ rdfs:comment """An alarm is a device that signals the existence of a condition or situation that is outside the boundaries of normal expectation or that activates such a device.
+
+Alarms include the provision of break glass buttons and manual pull boxes that are used to activate alarms."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcAlarm" .
+
+ a owl:Class ;
+ rdfs:label "alarm types"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcAlarmTypes" .
+
+ a owl:Class ;
+ rdfs:label "controller"@en ;
+ rdfs:comment """A controller is a device that monitors inputs and controls outputs within a building automation system.
+
+A controller may be physical (having placement within a spatial structure) or logical (a software interface or aggregated within a programmable physical controller)."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcController" .
+
+ a owl:Class ;
+ rdfs:label "controller types"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcControllerTypes" .
+
+ a owl:Class ;
+ rdfs:label "flow instrument"@en ;
+ rdfs:comment """A flow instrument reads and displays the value of a particular property of a system at a point, or displays the difference in the value of a property between two points.
+
+Instrumentation is typically for the purpose of determining the value of the property at a point in time. It is not the purpose of an instrument to record or integrate the values over time (although they may be connected to recording devices that do perform such a function). This entity provides for all forms of mechanical flow instrument (thermometers, pressure gauges etc.) and electrical flow instruments (ammeters, voltmeters etc.)"""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrument" .
+
+ a owl:Class ;
+ rdfs:label "flow instrument types"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrumentTypes" .
+
+ a owl:Class ;
+ rdfs:label "sensor"@en ;
+ rdfs:comment "A sensor is a device that measures a physical quantity and converts it into a signal which can be read by an observer or by an instrument."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSensor" .
+
+ a owl:Class ;
+ rdfs:label "sensor type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSensorType" .
+
+ a owl:Class ;
+ rdfs:label "Unitary control element"@en ;
+ rdfs:comment """A unitary control element combines a number of control components into a single product, such as a thermostat or humidistat.
+
+A unitary control element provides a housing for an aggregation of control or electrical distribution elements that, in combination, perform a singular (unitary) purpose. Each item in the aggregation may have its own geometric representation and location."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElement" .
+
+ a owl:Class ;
+ rdfs:label "Unitary control element type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElementType" .
+
+ a owl:Class ;
+ rdfs:label "audio visual applicance"@en ;
+ rdfs:comment """An audio-visual appliance is a device that displays, captures, transmits, or receives audio or video.
+
+Audio-visual appliances may be fixed in place or may be able to be moved from one space to another. They may require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source. Audio-visual appliances may be connected to data circuits including specialist circuits for audio visual purposes only."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicance" .
+
+ a owl:Class ;
+ rdfs:label "audio visual applicance type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicanceType" .
+
+ a owl:Class ;
+ rdfs:label "communication appliance"@en ;
+ rdfs:comment """A communications appliance transmits and receives electronic or digital information as data or sound.
+
+Communication appliances may be fixed in place or may be able to be moved from one space to another. Communication appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationAppliance" .
+
+ a owl:Class ;
+ rdfs:label "communication appliance type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationApplianceType" .
+
+ a owl:Class ;
+ rdfs:label "electric appliance"@en ;
+ rdfs:comment """An electric appliance is a device intended for consumer usage that is powered by electricity.
+
+Electric appliances may be fixed in place or may be able to be moved from one space to another. Electric appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricAppliance" .
+
+ a owl:Class ;
+ rdfs:label "electric applicance type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricApplicanceType" .
+
+ a owl:Class ;
+ rdfs:label "Electric flow storage device"@en ;
+ rdfs:comment "An electric flow storage device is a device in which electrical energy is stored and from which energy may be progressively released."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDevice" .
+
+ a owl:Class ;
+ rdfs:label "Electric flow storage device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Electric generator"@en ;
+ rdfs:comment "An electric generator is an engine that is a machine for converting mechanical energy into electrical energy."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricGenerator" .
+
+ a owl:Class ;
+ rdfs:label "Electric generator type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricGeneratorType" .
+
+ a owl:Class ;
+ rdfs:label "Electric motor"@en ;
+ rdfs:comment "An electric motor is an engine that is a machine for converting electrical energy into mechanical energy."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotor" .
+
+ a owl:Class ;
+ rdfs:label "Electric motor type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotorType" .
+
+ a owl:Class ;
+ rdfs:label "Electric time control"@en ;
+ rdfs:comment "An electric time control is a device that applies control to the provision or flow of electrical energy over time."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControl" .
+
+ a owl:Class ;
+ rdfs:label "Electric time control type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControlType" .
+
+ a owl:Class ;
+ rdfs:label "Lamp"@en ;
+ rdfs:comment "A lamp is an artificial light source such as a light bulb or tube."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcLamp" .
+
+ a owl:Class ;
+ rdfs:label "Lamp type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcLampType" .
+
+ a owl:Class ;
+ rdfs:label "Outlet"@en ;
+ rdfs:comment """An outlet is a device installed at a point to receive one or more inserted plugs for electrical power or communications.
+
+Power outlets are commonly connected within a junction box; data outlets may be directly connected to a wall. For power outlets sharing the same circuit within a junction box, the ports should indicate the logical wiring relationship to the enclosing junction box, even though they may be physically connected to a cable going to another outlet, switch, or fixture."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcOutlet" .
+
+ a owl:Class ;
+ rdfs:label "outlet type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcOutletType" .
+
+ a owl:Class ;
+ rdfs:label "Protective device"@en ;
+ rdfs:comment """A protective device breaks an electrical circuit when a stated electric current that passes through it is exceeded.
+
+A protective device provides protection against electrical current only (not as a general protective device). It may be used to represent the complete set of elements including both the tripping unit and the breaking unit that provide the protection. This may be particularly useful at earlier stages of design where the approach to breaking the electrical supply may be determined but the method of tripping may not. Alternatively, this entity may be used to specifically represent the breaking unit alone (in which case the tripping unit will also be specifically identified). This entity is specific to dedicated protective devices and excludes electrical outlets that may have circuit protection."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDevice" .
+
+ a owl:Class ;
+ rdfs:label "protective device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "solar device"@en ;
+ rdfs:comment "A solar device converts solar radiation into other energy such as electric current or thermal energy."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSolarDevice" .
+
+ a owl:Class ;
+ rdfs:label "solar device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSolarDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Switching device"@en ;
+ rdfs:comment """A switch is used in a cable distribution system (electrical circuit) to control or modulate the flow of electricity.
+
+Switches include those used for electrical power, communications, audio-visual, or other distribution system types as determined by the available ports."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDevice" .
+
+ a owl:Class ;
+ rdfs:label "Switching device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Transformer"@en ;
+ rdfs:comment """A transformer is an inductive stationary device that transfers electrical energy from one circuit to another.
+
+IfcTransformer is used to transform electric power; conversion of electric signals for other purposes is handled at other entities: IfcController converts arbitrary signals, IfcAudioVisualAppliance converts signals for audio or video streams, and IfcCommunicationsAppliance converts signals for data or other communications usage."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcTransformer" .
+
+ a owl:Class ;
+ rdfs:label "Transformer type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcTransformerType" .
+
+ a owl:Class ;
+ rdfs:label "Air to air heat recovery"@en ;
+ rdfs:comment "An air-to-air heat recovery device employs a counter-flow heat exchanger between inbound and outbound air flow. It is typically used to transfer heat from warmer air in one chamber to cooler air in the second chamber (i.e., typically used to recover heat from the conditioned air being exhausted and the outside air being supplied to a building), resulting in energy savings from reduced heating (or cooling) requirements."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecovery" .
+
+ a owl:Class ;
+ rdfs:label "Air to air heat recovery types"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecoveryTypes" .
+
+ a owl:Class ;
+ rdfs:label "Burner"@en ;
+ rdfs:comment "A burner is a device that converts fuel into heat through combustion. It includes gas, oil, and wood burners."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcBurner" .
+
+ a owl:Class ;
+ rdfs:label "Burner type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcBurnerType" .
+
+ a owl:Class ;
+ rdfs:label "Chiller"@en ;
+ rdfs:comment "A chiller is a device used to remove heat from a liquid via a vapor-compression or absorption refrigeration cycle to cool a fluid, typically water or a mixture of water and glycol. The chilled fluid is then used to cool and dehumidify air in a building."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcChiller" .
+
+ a owl:Class ;
+ rdfs:label "Chiller type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcChillerType" .
+
+ a owl:Class ;
+ rdfs:label "Coil"@en ;
+ rdfs:comment """A coil is a device used to provide heat transfer between non-mixing media. A common example is a cooling coil, which utilizes a finned coil in which circulates chilled water, antifreeze, or refrigerant that is used to remove heat from air moving across the surface of the coil. A coil may be used either for heating or cooling purposes by placing a series of tubes (the coil) carrying a heating or cooling fluid into an airstream. The coil may be constructed from tubes bundled in a serpentine form or from finned tubes that give a extended heat transfer surface.
+
+Coils may also be used for non-airflow cases such as embedded in a floor slab."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCoil" .
+
+ a owl:Class ;
+ rdfs:label "Coil type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCoilType" .
+
+ a owl:Class ;
+ rdfs:label "Compressor"@en ;
+ rdfs:comment "A compressor is a device that compresses a fluid typically used in a refrigeration circuit."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCompressor" .
+
+ a owl:Class ;
+ rdfs:label "Compressor type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCompressorType" .
+
+ a owl:Class ;
+ rdfs:label "Condenser"@en ;
+ rdfs:comment "A condenser is a device that is used to dissipate heat, typically by condensing a substance such as a refrigerant from its gaseous to its liquid state."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCondenser" .
+
+ a owl:Class ;
+ rdfs:label "Condenser type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCondenserType" .
+
+ a owl:Class ;
+ rdfs:label "Cooled beam"@en ;
+ rdfs:comment "A cooled beam (or chilled beam) is a device typically used to cool air by circulating a fluid such as chilled water through exposed finned tubes above a space. Typically mounted overhead near or within a ceiling, the cooled beam uses convection to cool the space below it by acting as a heat sink for the naturally rising warm air of the space. Once cooled, the air naturally drops back to the floor where the cycle begins again."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeam" .
+
+ a owl:Class ;
+ rdfs:label "Cooled beam type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeamType" .
+
+ a owl:Class ;
+ rdfs:label "Cooling tower"@en ;
+ rdfs:comment "A cooling tower is a device which rejects heat to ambient air by circulating a fluid such as water through it to reduce its temperature by partial evaporation."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTower" .
+
+ a owl:Class ;
+ rdfs:label "Cooling tower type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTowerType" .
+
+ a owl:Class ;
+ rdfs:label "Damper"@en ;
+ rdfs:comment "A damper typically participates in an HVAC duct distribution system and is used to control or modulate the flow of air."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcDamper" .
+
+ a owl:Class ;
+ rdfs:label "Damper type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcDamperType" .
+
+ a owl:Class ;
+ rdfs:label "Duct silencer"@en ;
+ rdfs:comment "A duct silencer is a device that is typically installed inside a duct distribution system for the purpose of reducing the noise levels from air movement, fan noise, etc. in the adjacent space or downstream of the duct silencer device."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencer" .
+
+ a owl:Class ;
+ rdfs:label "Duct silencer type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencerType" .
+
+ a owl:Class ;
+ rdfs:label "Engine"@en ;
+ rdfs:comment "An engine is a device that converts fuel into mechanical energy through combustion."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEngine" .
+
+ a owl:Class ;
+ rdfs:label "Engine type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEngineType" .
+
+ a owl:Class ;
+ rdfs:label "Evaporative cooler"@en ;
+ rdfs:comment "An evaporative cooler is a device that cools air by saturating it with water vapor."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCooler" .
+
+ a owl:Class ;
+ rdfs:label "Evaporative cooler type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCoolerType" .
+
+ a owl:Class ;
+ rdfs:label "Evaporator"@en ;
+ rdfs:comment "An evaporator is a device in which a liquid refrigerent is vaporized and absorbs heat from the surrounding fluid."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEvaporator" .
+
+ a owl:Class ;
+ rdfs:label "Evaporator type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEvaporatorType" .
+
+ a owl:Class ;
+ rdfs:label "Fan"@en ;
+ rdfs:comment "A fan is a device which imparts mechanical work on a gas. A typical usage of a fan is to induce airflow in a building services air distribution system."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFan" .
+
+ a owl:Class ;
+ rdfs:label "Fan type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFanType" .
+
+ a owl:Class ;
+ rdfs:label "Filter"@en ;
+ rdfs:comment "A filter is an apparatus used to remove particulate or gaseous matter from fluids and gases."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFilter" .
+
+ a owl:Class ;
+ rdfs:label "Filter type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFilterType" .
+
+ a owl:Class ;
+ rdfs:label "Flow meter"@en ;
+ rdfs:comment "A flow meter is a device that is used to measure the flow rate in a system."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeter" .
+
+ a owl:Class ;
+ rdfs:label "Flow meter type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeterType" .
+
+ a owl:Class ;
+ rdfs:label "Heat exchanger"@en ;
+ rdfs:comment """A heat exchanger is a device used to provide heat transfer between non-mixing media such as plate and shell and tube heat exchangers.
+
+IfcHeatExchanger is commonly used on water-side distribution systems to recover energy from a liquid to another liquid (typically water-based), whereas IfcAirToAirHeatRecovery is commonly used on air-side distribution systems to recover energy from a gas to a gas (usually air)."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchanger" .
+
+ a owl:Class ;
+ rdfs:label "Heat exchanger type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchangerType" .
+
+ a owl:Class ;
+ rdfs:label "Humidifier"@en ;
+ rdfs:comment "A humidifier is a device that adds moisture into the air."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcHumidifier" .
+
+ a owl:Class ;
+ rdfs:label "Humidifier type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcHumidifierType" .
+
+ a owl:Class ;
+ rdfs:label "Medical device"@en ;
+ rdfs:comment """A medical device is attached to a medical piping system and operates upon medical gases to perform a specific function. Medical gases include medical air, medical vacuum, oxygen, carbon dioxide, nitrogen, and nitrous oxide.
+
+Outlets for medical gasses should use IfcValve with PredefinedType equal to GASTAP, containing an IfcDistributionPort with FlowDirection=SINK and PredefinedType equal to COMPRESSEDAIR, VACUUM, or CHEMICAL, and having property sets on the port further indicating the gas type and pressure. Tanks for medical gasses should use IfcTank with PredefinedType equal to PRESSUREVESSEL, containing an IfcDistributionPort with FlowDirection=SOURCE and PredefinedType=CHEMICAL, and having property sets on the port further indicating the gas type and pressure range."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDevice" .
+
+ a owl:Class ;
+ rdfs:label "Medical device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Pump"@en ;
+ rdfs:comment "A pump is a device which imparts mechanical work on fluids or slurries to move them through a channel or pipeline. A typical use of a pump is to circulate chilled water or heating hot water in a building services distribution system."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcPump" .
+
+ a owl:Class ;
+ rdfs:label "Pump type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcPumpType" .
+
+ a owl:Class ;
+ rdfs:label "Space heater"@en ;
+ rdfs:comment """Space heaters utilize a combination of radiation and/or natural convection using a heating source such as electricity, steam or hot water to heat a limited space or area. Examples of space heaters include radiators, convectors, baseboard and finned-tube heaters.
+
+IfcUnitaryEquipment should be used for packaged units supporting a combination of heating, cooling, and/or dehumidification; IfcCoil should be used for coil-based floor heating."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeater" .
+
+ a owl:Class ;
+ rdfs:label "Space heater type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeaterType" .
+
+ a owl:Class ;
+ rdfs:label "Tube bundle"@en ;
+ rdfs:comment "A tube bundle is a device consisting of tubes and bundles of tubes used for heat transfer and contained typically within other energy conversion devices, such as a chiller or coil."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundle" .
+
+ a owl:Class ;
+ rdfs:label "Tube bundle type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundleType" .
+
+ a owl:Class ;
+ rdfs:label "Valve"@en ;
+ rdfs:comment "A valve is used in a building services piping distribution system to control or modulate the flow of the fluid."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcValve" .
+
+ a owl:Class ;
+ rdfs:label "Valve type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcValveType" .
+
+ a owl:Class ;
+ rdfs:label "Vibration isolator"@en ;
+ rdfs:comment "A vibration isolator is a device used to minimize the effects of vibration transmissibility in a building."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolator" .
+
+ a owl:Class ;
+ rdfs:label "Vibration isolator type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolatorType" .
+
+ a owl:Class ;
+ rdfs:label "Fire suppression terminal"@en ;
+ rdfs:comment """A fire suppression terminal has the purpose of delivering a fluid (gas or liquid) that will suppress a fire.
+
+A fire suppression terminal provides for all forms of sprinkler, spreader and other form of terminal that is connected to a pipework system and intended to act in the role of suppressing a fire."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminal" .
+
+ a owl:Class ;
+ rdfs:label "Fire suppression terminal type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminalType" .
+
+ a owl:Class ;
+ rdfs:label "Interceptor"@en ;
+ rdfs:comment "An interceptor is a device designed and installed in order to separate and retain deleterious, hazardous or undesirable matter while permitting normal sewage or liquids to discharge into a collection system by gravity."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcInterceptor" .
+
+ a owl:Class ;
+ rdfs:label "Interceptor type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcInterceptorType" .
+
+ a owl:Class ;
+ rdfs:label "Sanitary terminal"@en ;
+ rdfs:comment "A sanitary terminal is a fixed appliance or terminal usually supplied with water and used for drinking, cleaning or foul water disposal or that is an item of equipment directly used with such an appliance or terminal."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminal" .
+
+ a owl:Class ;
+ rdfs:label "Sanitary terminal type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminalType" .
+
+ a owl:Class ;
+ rdfs:label "Energy conversion device"@en ;
+ rdfs:comment "The distribution flow element IfcEnergyConversionDevice defines the occurrence of a device used to perform energy conversion or heat transfer and typically participates in a flow distribution system. Its type is defined by IfcEnergyConversionDeviceType or its subtypes."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDevice" .
+
+ a owl:Class ;
+ rdfs:label "Energy conversion device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Flow controller"@en ;
+ rdfs:comment "The distribution flow element IfcFlowController defines the occurrence of elements of a distribution system that are used to regulate flow through a distribution system. Examples include dampers, valves, switches, and relays. Its type is defined by IfcFlowControllerType or subtypes."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowController" .
+
+ a owl:Class ;
+ rdfs:label "Flow controller type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowControllerType" .
+
+ a owl:Class ;
+ rdfs:label "Flow moving device"@en ;
+ rdfs:comment "The distribution flow element IfcFlowMovingDevice defines the occurrence of an apparatus used to distribute, circulate or perform conveyance of fluids, including liquids and gases (such as a pump or fan), and typically participates in a flow distribution system. Its type is defined by IfcFlowMovingDeviceType or its subtypes."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDevice" .
+
+ a owl:Class ;
+ rdfs:label "Flow moving device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Flow storage device"@en ;
+ rdfs:comment "The distribution flow element IfcFlowStorageDevice defines the occurrence of a device that participates in a distribution system and is used for temporary storage (such as a tank). Its type is defined by IfcFlowStorageDeviceType or its subtypes."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDevice" .
+
+ a owl:Class ;
+ rdfs:label "Flow storage device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "Flow terminal"@en ;
+ rdfs:comment "The distribution flow element IfcFlowTerminal defines the occurrence of a permanently attached element that acts as a terminus or beginning of a distribution system (such as an air outlet, drain, water closet, or sink). A terminal is typically a point at which a system interfaces with an external environment. Its type is defined by IfcFlowTerminalType or its subtypes."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminal" .
+
+ a owl:Class ;
+ rdfs:label "Flow terminal type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminalType" .
+
+ a owl:Class ;
+ rdfs:label "Flow treatment device"@en ;
+ rdfs:comment "The distribution flow element IfcFlowTreatmentDevice defines the occurrence of a device typically used to remove unwanted matter from a fluid, either liquid or gas, and typically participates in a flow distribution system. Its type is defined by IfcFlowTreatmentDeviceType or its subtypes."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDevice" .
+
+ a owl:Class ;
+ rdfs:label "Flow treatment device type"@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDeviceType" .
+
+ a owl:Class ;
+ rdfs:label "What is a shading device?"@en ;
+ rdfs:comment "Shading devices are purpose built devices to protect from the sunlight, from natural light, or screening them from view. Shading devices can form part of the facade or can be mounted inside the building, they can be fixed or operable."@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsAShadingDevice?" .
+
+ a owl:Class ;
+ rdfs:label "Which shading device types are there?"@en ;
+ rdfs:comment """JALOUSIE A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
+SHUTTER A mechanical devices that limits the passage of light. Often used as a a solid or louvered movable cover for a window.
+AWNING A rooflike shelter of canvas or other material extending over a doorway, from the top of a window, over a deck, or similar, in order to provide protection, as from the sun."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcWhichShadingDeviceTypesAreThere?" .
+
+ a owl:Class ;
+ rdfs:label "What is a transport element?"@en ;
+ rdfs:comment "A transport element is a generalization of all transport related objects that move people, animals or goods within a building or building complex. The IfcTransportElement defines the occurrence of a transport element, that (if given), is expressed by the IfcTransportElementType. "@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsATransportElement?" .
+
+ a owl:Class ;
+ rdfs:label "Which types of transport element are there?"@en ;
+ rdfs:comment """ELEVATOR Elevator or lift being a transport device to move people of good vertically.
+ESCALATOR Escalator being a transport device to move people. It consists of individual linked steps that move up and down on tracks while keeping the threads horizontal.
+MOVINGWALKWAY Moving walkway being a transport device to move people horizontally or on an incline. It is a slow conveyor belt that transports people.
+CRANEWAY A crane way system, normally including the crane rails, fasteners and the crane. It is primarily used to move heavy goods in a factory or other industry buildings.
+LIFTINGGEAR A device used for lifting or lowering heavy goods. It may be manually operated or electrically or pneumatically driven."""@en ;
+ rdfs:seeAlso "https://w3id.org/ifc/IFC4_ADD1#IfcWhichTypesOfTransportElementAreThere?" .
diff --git a/SAREF4BLD/RawRDF/IFC-properties-Raw.rdf b/SAREF4BLD/RawRDF/IFC-properties-Raw.rdf
new file mode 100644
index 0000000000000000000000000000000000000000..ff2f533e053ca3411e103b7994e989924db4ef6a
--- /dev/null
+++ b/SAREF4BLD/RawRDF/IFC-properties-Raw.rdf
@@ -0,0 +1,2385 @@
+
+
+
+
+
+ access type
+
+ Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.
+
+
+
+
+
+
+
+
+
+ storage type
+
+ Defines the general material category intended to be stored.
+
+
+
+
+
+ nominal length or diameter
+
+ The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).
+
+
+
+
+
+ nominal width or diameter
+
+ The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).
+
+
+
+
+
+ nominal depth
+
+ The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).
+
+
+
+
+
+ nominal capacity
+
+ The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).
+
+
+
+
+
+ effective capacity
+
+ The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3
+
+
+
+
+
+ operating wight
+
+ Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+ pattern type
+
+ Defines the types of pattern (or shape of a tank that may be specified.
+
+
+
+
+
+ end shape type
+
+ Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5
+
+
+
+
+
+ first curvature radius
+
+ FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).
+
+
+
+
+
+ second curvature radius
+
+ SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).
+
+
+
+
+
+ number of sections
+
+ Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.
+
+
+
+
+
+ application
+
+ Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.
+
+
+
+
+
+
+
+
+
+ weight
+
+ The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+ nominal moisture gain
+
+ Nominal rate of water vapor added into the airstream. Usually measured in kg/s.
+
+
+
+
+
+ nominal air flow rate
+
+ Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.
+
+
+
+
+
+ internal control
+
+ Internal modulation control.
+
+
+
+
+
+ water requirement
+
+ Make-up water requirement. Usually measured in m3/s.
+
+
+
+
+
+ arrangement
+
+ Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.
+
+
+
+
+
+
+
+
+
+ capacity people
+
+ capacity of the transportation element measured in numbers of person.
+
+
+
+
+
+
+
+
+
+ capacity weight
+
+ Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+ fire exit
+
+ Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.
+
+
+
+
+
+ contributed luminous flux
+
+ Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).
+
+
+
+
+
+
+
+
+
+ light emitter nominal power
+
+ Light emitter nominal power. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ lamp maintenance factor
+
+ Non recoverable losses of luminous flux of a lamp due to lamp depreciation i.e. the decreasing of light output of a luminaire due to aging and dirt.
+
+
+
+
+
+ lamp ballast type
+
+ The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).
+
+
+
+
+
+ lamp compensation type
+
+ Identifies the form of compensation used for power factor correction and radio suppression.
+
+
+
+
+
+ color appearance
+
+ In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.
+
+
+
+
+
+ spectrum
+
+ The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.
+
+
+
+
+
+ color tempeature
+
+ The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ color rendering index
+
+ The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.
+
+
+
+
+
+ electric generator efficiency
+
+ the ratio of output capacity to intake capacity.
+
+
+
+
+
+
+
+
+
+ start current factor
+
+ IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+
+
+
+
+
+ maximum power output
+
+ The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ energy source
+
+ Enumeration defining the energy source or fuel cumbusted to generate heat.
+
+
+
+
+
+
+
+
+
+ energy source
+
+ The source of energy.
+
+
+
+
+
+
+
+
+
+ evaporation medium type
+
+ ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.
+
+
+
+
+
+
+
+
+
+ evaporation coolant
+
+ The fluid used for the coolant in the evaporator.
+
+
+
+
+
+ refrigerant class
+
+ Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+
+
+
+
+
+ external surface area
+
+ External surface area (both primary and secondary area). Usually measured in square metre (m2).
+
+
+
+
+
+ internal surface area
+
+ Internal surface area. Usually measured in square metre (m2).
+
+
+
+
+
+ internal refrigerant volume
+
+ Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).
+
+
+
+
+
+ internal water volume
+
+ Internal volume of evaporator (water side). Usually measured in cubic metre (m3).
+
+
+
+
+
+ nominal heat transfer area
+
+ Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+
+
+
+
+
+ nominal heat transfer coefficient
+
+ Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+
+
+
+
+
+ fail position
+
+ Specifies the required fail-safe position of the actuator.
+
+
+
+
+
+
+
+
+
+ manual override
+
+ Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.
+
+
+
+
+
+ flow arrangement
+
+ CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.
+
+
+
+
+
+
+
+
+
+ heat exchange area
+
+ Heat exchange area. Usually measured in square metre (m2).
+
+
+
+
+
+ operational temperature range
+
+ Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ water requirement
+
+ Make-up water requirement. Usually measured in m3/s.
+
+
+
+
+
+ flow rate range
+
+ Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.
+
+
+
+
+
+
+
+
+
+ flow resistance range
+
+ Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ connection size
+
+ The connection size of the to and from the pump. Usually measured in millimeters (mm).
+
+
+
+
+
+ temperature range
+
+ Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ net positive suction head
+
+ Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ nomminal rotation speed
+
+ Pump rotational speed under nominal conditions. Usually measured in cycles/s.
+
+
+
+
+
+ heat transfer type enum
+
+ Type of heat transfer between the two air streams.
+
+
+
+
+
+
+
+
+
+ has defrost
+
+ has the heat exchanger has defrost function or not.
+
+
+
+
+
+ operational temperature range
+
+ Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ primary air flow rate range
+
+ possible range of primary airflow that can be delivered. Usually measured in m3/s.
+
+
+
+
+
+ secondary air flow rate range
+
+ possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ hydraulic diameter
+
+ Hydraulic diameter. Usually measured in millimeters (mm).
+
+
+
+
+
+
+
+
+
+ length
+
+ The finished length of the silencer. Usually measured in millimeters (mm).
+
+
+
+
+
+ weight
+
+ The weight of the silencer. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+ air flow rate range
+
+ Possible range of airflow that can be delivered. Usually measured in m3/s.
+
+
+
+
+
+ working pressure range
+
+ Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ temperature range
+
+ Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ has exterior insulation
+
+ TRUE if the silencer has exterior insulation. FALSE if it does not.
+
+
+
+
+
+ is free hanging
+
+ Is it free hanging type (not mounted in a false ceiling)?
+
+
+
+
+
+
+
+
+
+ water flow control system type
+
+ Factory fitted waterflow control system.
+
+
+
+
+
+ water pressure range
+
+ Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ nominal cooling capacity
+
+ Nominal cooling capacity. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ nominal sorrounding temperature cooling
+
+ Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal sorrounding humidity cooling
+
+ Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal supply water temperature cooling
+
+ Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal return water temperature cooling
+
+ Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal water flow cooling
+
+ Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.
+
+
+
+
+
+ nominal heating capacity
+
+ Nominal heating capacity. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ nominal sorrounding temperature heating
+
+ Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal supply water temperature heating
+
+ Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal return water temperature heating
+
+ Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal water flow heating
+
+ Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.
+
+
+
+
+
+ integrated lighting type
+
+ Integrated lighting in cooled beam.
+
+
+
+
+
+ pipe connection enum
+
+ The manner in which the pipe connection is made to the cooled beam.
+
+
+
+
+
+ finish color
+
+ Finish color for cooled beam.
+
+
+
+
+
+ coil length
+
+ Length of coil. Usually measured in millimeters (mm).
+
+
+
+
+
+ coil width
+
+ Width of coil. Usually measured in millimeters (mm
+
+
+
+
+
+ is pluggable outlet
+
+ Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).
+
+
+
+
+
+
+
+
+
+ number os sockets
+
+ The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.
+
+
+
+
+
+ maximum power output
+
+ The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+
+
+
+
+
+
+
+
+
+ electric motor efficiency
+
+ The ratio of output capacity to intake capacity.
+
+
+
+
+
+ start current factor
+
+ IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+
+
+
+
+
+ starting time
+
+ The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.
+
+
+
+
+
+ te time
+
+ The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.
+
+
+
+
+
+ locked rotor current
+
+ Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).
+
+
+
+
+
+ motor enclosure type
+
+ A list of the available types of motor enclosure from which that required may be selected.
+
+
+
+
+
+ frame size
+
+ Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.
+
+
+
+
+
+ is guarded
+
+ Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).
+
+
+
+
+
+ has part winding
+
+ Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .
+
+
+
+
+
+ media source
+
+ Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).
+
+
+
+
+
+
+
+
+
+ audio volume
+
+ Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.
+
+
+
+
+
+ motor drive type
+
+ Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type.
+
+
+
+
+
+
+
+
+
+ capacity control type
+
+ InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.
+
+
+
+
+
+ operation temperature range
+
+ Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal air flow rate
+
+ Nominal air flow rate. Usually measured in m3/s.
+
+
+
+
+
+ nominal total pressure
+
+ Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ nominal static pressure
+
+ The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ nominal rotation speed
+
+ Nominal fan wheel speed. Usually measured in cycles/s.
+
+
+
+
+
+ nominal power rate
+
+ Nominal fan power rate.Usually measured in Watts (W, J/s).
+
+
+
+
+
+ operational riterial
+
+ Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.
+
+
+
+
+
+ nominal body length
+
+ Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+
+
+
+
+
+
+
+
+
+ nominal body width
+
+ Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+
+
+
+
+
+ nominal body depth
+
+ Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+
+
+
+
+
+ inlet connection size
+
+ Size of the inlet connection. Usually measured in millimeters (mm).
+
+
+
+
+
+ outlet connection size
+
+ Size of the outlet connection. Usually measured in millimeters (mm).
+
+
+
+
+
+ cover length
+
+ The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).
+
+
+
+
+
+ cover width
+
+ The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).
+
+
+
+
+
+ ventilating pipe size
+
+ Size of the ventilating pipe(s). Usually measured in millimeters (mm).
+
+
+
+
+
+ nominal capacity
+
+ Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).
+
+
+
+
+
+
+
+
+
+ nominal efficiency
+
+ Nominal chiller efficiency under nominal conditions.
+
+
+
+
+
+ nominal condensing temperature
+
+ Chiller condensing temperature. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal evaporating temmperature
+
+ Chiller evaporating temperature.Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal heat rejection rate
+
+ Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ nominal power consumption
+
+ Nominal total power consumption. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ nominal capcity
+
+ Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).
+
+
+
+
+
+
+
+
+
+ circuit type
+
+ OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.
+
+
+
+
+
+ flow arrangement
+
+ CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.
+
+
+
+
+
+ spray type
+
+ SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.
+
+
+
+
+
+ capacity control
+
+ FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.
+
+
+
+
+
+ control strategy
+
+ FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.
+
+
+
+
+
+ number of cells
+
+ Number of cells in one cooling tower unit.
+
+
+
+
+
+ basin reserve volume
+
+ Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).
+
+
+
+
+
+ lift elevation difference
+
+ Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).
+
+
+
+
+
+ water requirement
+
+ Make-up water requirements. Usually measured in m3/s.
+
+
+
+
+
+ operation temperature range
+
+ Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ ambient design dry bulb temperature
+
+ Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ ambient design wet bulb temperature
+
+ Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal supply voltage
+
+ The nominal voltage of the supply. Usually measured in Volts (V, W/A).
+
+
+
+
+
+
+
+
+
+ nominal supply voltage offset
+
+ The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.
+
+
+
+
+
+ nominal frequency
+
+ The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).
+
+
+
+
+
+ number of gangs
+
+ Number of gangs/buttons on this switch.
+
+
+
+
+
+
+
+
+
+ switch function
+
+ Indicates types of switches which differs in functionality.
+
+
+
+
+
+ has lock
+
+ Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).
+
+
+
+
+
+ is illuminated
+
+ An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).
+
+
+
+
+
+ legend
+
+ A text inscribed or applied to the switch as a legend to indicate purpose or function.
+
+
+
+
+
+ set point
+
+ Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.
+
+
+
+
+
+ number of rows
+
+ Number of tube rows in the tube bundle assembly.
+
+
+
+
+
+
+
+
+
+ staggered row spacing
+
+ Staggered tube row spacing. Usually measured in millimeters (mm).
+
+
+
+
+
+ in line row spacing
+
+ In-line tube row spacing. Usually measured in millimeters (mm).
+
+
+
+
+
+ number of circuits
+
+ Number of parallel fluid tube circuits.
+
+
+
+
+
+ fouling factor
+
+ Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+
+
+
+
+
+ thermal conductivity
+
+ Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+
+
+
+
+
+ length
+
+ Length of the tubes in the tube bundle. Usually measured in millimeters (mm).
+
+
+
+
+
+ volumen
+
+ Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).
+
+
+
+
+
+ nominal diameter
+
+ Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).
+
+
+
+
+
+ outside diameter
+
+ Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+
+
+
+
+
+ inside diameter
+
+ Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+
+
+
+
+
+ horizontal spacing
+
+ Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).
+
+
+
+
+
+ vertical spacing
+
+ Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).
+
+
+
+
+
+ has turbulator
+
+ TRUE if the tube has a turbulator, FALSE if it does not.
+
+
+
+
+
+ operation
+
+ The operational mechanism for the damper operation.
+
+
+
+
+
+
+
+
+
+ orientation
+
+ The intended orientation for the damper as specified by the manufacturer.
+
+
+
+
+
+ blade thickness
+
+ The thickness of the damper blade. Usually measured in millimeters (mm).
+
+
+
+
+
+ blade action
+
+ Blade action.
+
+
+
+
+
+ blade shape
+
+ Blade shape. Flat means triple V-groove.
+
+
+
+
+
+ blade edge
+
+ Blade edge.
+
+
+
+
+
+ number of blades
+
+ Number of blades.
+
+
+
+
+
+ face area
+
+ Face area open to the airstream. Usually measured in square metre (m2).
+
+
+
+
+
+ maximum air flow rate
+
+ Maximum allowable air flow rate. Usually measured in m3/s.
+
+
+
+
+
+ temperature range
+
+ Temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ maximum working pressure
+
+ Maximum working pressure. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ temperature rating
+
+ Temperature rating. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal air flow rate
+
+ Nominal air flow rate. Usually measured in m3/s.
+
+
+
+
+
+ open pressure drop
+
+ Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ leakage fully closed
+
+ Leakage when fully closed. Usually measured in m3/s.
+
+
+
+
+
+ frame type
+
+ The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).
+
+
+
+
+
+ frame depth
+
+ The length (or depth) of the damper frame. Usually measured in millimeters (mm).
+
+
+
+
+
+ frame thickness
+
+ The thickness of the damper frame material. Usually measured in millimeters (mm).
+
+
+
+
+
+ close off rating
+
+ Close off rating. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ operational temperature range
+
+ Allowable operational air temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+
+
+
+
+ air flow rate range
+
+ Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.
+
+
+
+
+
+ nominal sensible capacity
+
+ Nominal sensible capacity. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ nominal latent capacity
+
+ Nominal latent capacity. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ nominal ua
+
+ Nominal UA value.
+
+
+
+
+
+ placement type
+
+ Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL), CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL), UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.
+
+
+
+
+
+ placement type
+
+ Indicates how the space heater is designed to be placed.
+
+
+
+
+
+
+
+
+
+ temperature classification
+
+ Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.
+
+
+
+
+
+ heat transfer dimension
+
+ Indicates how heat is transmitted according to the shape of the space heater.
+
+
+
+
+
+ heat transfer medium
+
+ Enumeration defining the heat transfer medium if applicable.
+
+
+
+
+
+ energy source
+
+ Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET, dual-use hydronic/electric heaters shall use ELECTRICITY.
+
+
+
+
+
+ body mass
+
+ Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+ thermal mass heat capacity
+
+ Product of component mass and specific heat.
+
+
+
+
+
+ output capacity
+
+ Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ thermal efficiency
+
+ Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.
+
+
+
+
+
+ number of panels
+
+ Number of panels.
+
+
+
+
+
+ number of sections
+
+ Number of vertical sections, measured in the direction of flow.
+
+
+
+
+
+ power source
+
+ Type of power driving the compressor.
+
+
+
+
+
+
+
+
+
+ refrigerant class
+
+ Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+
+
+
+
+
+ minimun part load ratio
+
+ Minimum part load ratio as a fraction of nominal capacity.
+
+
+
+
+
+ maximum part load ratio
+
+ Maximum part load ratio as a fraction of nominal capacity.
+
+
+
+
+
+ compressor speed
+
+ Compressor speed. Usually measured in cycles/s.
+
+
+
+
+
+ nominal capacity
+
+ Compressor nameplate capacity. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ ideal capacity
+
+ Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ ideal shaft power
+
+ Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ has hot gas bypass
+
+ Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.
+
+
+
+
+
+ impeller diameter
+
+ Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).
+
+
+
+
+
+ pressure rating
+
+ Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+
+
+
+
+ operating mode
+
+ Identifies the operating mode of the boiler.
+
+
+
+
+
+ heat transfer surface area
+
+ Total heat transfer area of the vessel. Usually measured in square metre (m2).
+
+
+
+
+
+ nominal part load ratio
+
+ Allowable part load ratio range.
+
+
+
+
+
+ water inlet temperature range
+
+ Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ water storage capacity
+
+ Water storage capacity. Usually measured in cubic metre (m3).
+
+
+
+
+
+ is water storage heater
+
+ This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.
+
+
+
+
+
+ outlet temperature range
+
+ Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ nominal energy consumption
+
+ Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ energy source
+
+ Enumeration defining the energy source or fuel cumbusted to generate heat.
+
+
+
+
+
+ primary voltage
+
+ The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).
+
+
+
+
+
+
+
+
+
+ secondary voltage
+
+ The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).
+
+
+
+
+
+ primary current
+
+ The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).
+
+
+
+
+
+ secondary current
+
+ The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).
+
+
+
+
+
+ primary frequency
+
+ The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).
+
+
+
+
+
+ secondary frequency
+
+ The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).
+
+
+
+
+
+ primary apparent power
+
+ The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ secondary apparent power
+
+ The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).
+
+
+
+
+
+ maximum apparent power
+
+ Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).
+
+
+
+
+
+ secondary current type
+
+ A list of the secondary current types that can result from transformer output.
+
+
+
+
+
+ short circuit voltage
+
+ A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.
+
+
+
+
+
+ real impedance ratio
+
+ The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+
+
+
+
+
+ imaginary impedance ratio
+
+ The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+
+
+
+
+
+ transformer vector group
+
+ List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer). The connectivity is only relevant for three-phase transformers.
+
+
+
+
+
+ is neutral primary terminal available
+
+ An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).
+
+
+
+
+
+ is neutral secondary terminal available
+
+ An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).
+
+
+
+
+
+ read out type
+
+ Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.
+
+
+
+
+
+
+
+
+
+ remote reading
+
+ Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).
+
+
+
+
+
+ refrigerant class
+
+ Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+
+
+
+
+
+
+
+
+
+ external surface area
+
+ External surface area (both primary and secondary area). Usually measured in square metre (m2).
+
+
+
+
+
+ internal surface area
+
+ Internal surface area. Usually measured in square metre (m2).
+
+
+
+
+
+ internal refrigerant volume
+
+ Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).
+
+
+
+
+
+ internal water volume
+
+ Internal volume of condenser (water side). Usually measured in cubic metre (m3).
+
+
+
+
+
+ nominal heat transfer area
+
+ Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+
+
+
+
+
+ nominal heat transfer coefficient
+
+ Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+
+
+
+
+
+ shading device type
+
+ Specifies the type of shading device.
+
+
+
+
+
+
+
+
+
+ is external
+
+ Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.
+
+
+
+
+
+ mechanical operated
+
+ Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).
+
+
+
+
+
+ thermal transmittance
+
+ IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.
+
+
+
+
+
+ solar transmittance
+
+ (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+
+
+
+
+
+ visible light transmittance
+
+ Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.
+
+
+
+
+
+ solar reflectance
+
+ (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+
+
+
+
+
+ visible light reflectance
+
+ Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.
+
+
+
+
+
+ roughness
+
+ A measure of the vertical deviations of the surface.
+
+
+
+
+
+ standard
+
+ the designation of the Standard applicable for the definition of the characteristics of the tripping_unit.
+
+
+
+
+
+
+
+
+
+ limiting terminal size
+
+ The maximum terminal size capacity of the device. Usually measured in square metre (m2).
+
+
+
+
+
+ valve pattern
+
+ The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.
+
+
+
+
+
+
+
+
+
+ valve operation
+
+ The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.
+
+
+
+
+
+ valve mechanism
+
+ The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.
+
+
+
+
+
+ size
+
+ The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).
+
+
+
+
+
+ test pressure
+
+ The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ working pressure
+
+ The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ flow coefficient
+
+ Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.
+
+
+
+
+
+ close off rating
+
+ Close off rating. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ vibration transmissibility
+
+ the vibration transmissibility percentage.
+
+
+
+
+
+
+
+
+
+ isolator static deflection
+
+ Static deflection of the vibration isolator. Usually measured in millimeters (mm).
+
+
+
+
+
+ isolator compressibility
+
+ The compressibility of the vibration isolator.
+
+
+
+
+
+ height
+
+ Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).
+
+
+
+
+
+ maximum supported weight
+
+ The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+ weight
+
+ Weight of filter. Usually measured in kilograms (kg) or grams (g).
+
+
+
+
+
+
+
+
+
+ initial resistance
+
+ Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ final resistance
+
+ Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ operation temperature range
+
+ Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).
+
+
+
+
+
+ flow rate range
+
+ Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.
+
+
+
+
+
+ nominal filter face velocity
+
+ Filter face velocity. Usually measured in m/s.
+
+
+
+
+
+ nominal media surface velocity
+
+ Average fluid velocity at the media surface. Usually measured in m/s.
+
+
+
+
+
+ nominal pressure drop
+
+ Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).
+
+
+
+
+
+ nominal flow rate
+
+ Nominal fluid flow rate through the filter. Usually measured in m3/s.
+
+
+
+
+
+ nominal particle geometric mean diameter
+
+ Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).
+
+
+
+
+
+ nominal particle geometric standard deviation
+
+ Particle geometric standard deviation associated with nominal efficiency.
+
+
+
+
\ No newline at end of file
diff --git a/SAREF4BLD/RawRDF/catalog-v001.xml b/SAREF4BLD/RawRDF/catalog-v001.xml
new file mode 100644
index 0000000000000000000000000000000000000000..660e3195e78c2ea7968d45e3cda5af7893c79679
--- /dev/null
+++ b/SAREF4BLD/RawRDF/catalog-v001.xml
@@ -0,0 +1,7 @@
+
+
+
+
+
+
+
diff --git a/SAREF4BLD/RawRDF/fromProtege.owl b/SAREF4BLD/RawRDF/fromProtege.owl
new file mode 100644
index 0000000000000000000000000000000000000000..fb84ea6cc5bdedfb13c3db375ecac8337e5379b2
--- /dev/null
+++ b/SAREF4BLD/RawRDF/fromProtege.owl
@@ -0,0 +1,634 @@
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+ An actuator is a mechanical device for moving or controlling a mechanism or system. An actuator takes energy, usually created by air, electricity, or liquid, and converts that into some kind of motion.
+ actuator
+ https://w3id.org/ifc/IFC4_ADD1#IfcActuator
+
+
+
+
+
+
+
+ An air-to-air heat recovery device employs a counter-flow heat exchanger between inbound and outbound air flow. It is typically used to transfer heat from warmer air in one chamber to cooler air in the second chamber (i.e., typically used to recover heat from the conditioned air being exhausted and the outside air being supplied to a building), resulting in energy savings from reduced heating (or cooling) requirements.
+ Air to air heat recovery
+ https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecovery
+
+
+
+
+
+
+
+ An alarm is a device that signals the existence of a condition or situation that is outside the boundaries of normal expectation or that activates such a device.
+
+Alarms include the provision of break glass buttons and manual pull boxes that are used to activate alarms.
+ alarm
+ https://w3id.org/ifc/IFC4_ADD1#IfcAlarm
+
+
+
+
+
+
+
+ An audio-visual appliance is a device that displays, captures, transmits, or receives audio or video.
+
+Audio-visual appliances may be fixed in place or may be able to be moved from one space to another. They may require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source. Audio-visual appliances may be connected to data circuits including specialist circuits for audio visual purposes only.
+ audio visual applicance
+ https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicance
+
+
+
+
+
+
+
+ A burner is a device that converts fuel into heat through combustion. It includes gas, oil, and wood burners.
+ Burner
+ https://w3id.org/ifc/IFC4_ADD1#IfcBurner
+
+
+
+
+
+
+
+ A chiller is a device used to remove heat from a liquid via a vapor-compression or absorption refrigeration cycle to cool a fluid, typically water or a mixture of water and glycol. The chilled fluid is then used to cool and dehumidify air in a building.
+ Chiller
+ https://w3id.org/ifc/IFC4_ADD1#IfcChiller
+
+
+
+
+
+
+
+ A coil is a device used to provide heat transfer between non-mixing media. A common example is a cooling coil, which utilizes a finned coil in which circulates chilled water, antifreeze, or refrigerant that is used to remove heat from air moving across the surface of the coil. A coil may be used either for heating or cooling purposes by placing a series of tubes (the coil) carrying a heating or cooling fluid into an airstream. The coil may be constructed from tubes bundled in a serpentine form or from finned tubes that give a extended heat transfer surface.
+
+Coils may also be used for non-airflow cases such as embedded in a floor slab.
+ Coil
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoil
+
+
+
+
+
+
+
+ Coil type
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoilType
+
+
+
+
+
+
+
+ A communications appliance transmits and receives electronic or digital information as data or sound.
+
+Communication appliances may be fixed in place or may be able to be moved from one space to another. Communication appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ communication appliance
+ https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationAppliance
+
+
+
+
+
+
+
+ A compressor is a device that compresses a fluid typically used in a refrigeration circuit.
+ Compressor
+ https://w3id.org/ifc/IFC4_ADD1#IfcCompressor
+
+
+
+
+
+
+
+ A condenser is a device that is used to dissipate heat, typically by condensing a substance such as a refrigerant from its gaseous to its liquid state.
+ Condenser
+ https://w3id.org/ifc/IFC4_ADD1#IfcCondenser
+
+
+
+
+
+
+
+ A controller is a device that monitors inputs and controls outputs within a building automation system.
+
+A controller may be physical (having placement within a spatial structure) or logical (a software interface or aggregated within a programmable physical controller).
+ controller
+ https://w3id.org/ifc/IFC4_ADD1#IfcController
+
+
+
+
+
+
+
+ A cooled beam (or chilled beam) is a device typically used to cool air by circulating a fluid such as chilled water through exposed finned tubes above a space. Typically mounted overhead near or within a ceiling, the cooled beam uses convection to cool the space below it by acting as a heat sink for the naturally rising warm air of the space. Once cooled, the air naturally drops back to the floor where the cycle begins again.
+ Cooled beam
+ https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeam
+
+
+
+
+
+
+
+ A cooling tower is a device which rejects heat to ambient air by circulating a fluid such as water through it to reduce its temperature by partial evaporation.
+ Cooling tower
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTower
+
+
+
+
+
+
+
+ A damper typically participates in an HVAC duct distribution system and is used to control or modulate the flow of air.
+ Damper
+ https://w3id.org/ifc/IFC4_ADD1#IfcDamper
+
+
+
+
+
+
+
+ A duct silencer is a device that is typically installed inside a duct distribution system for the purpose of reducing the noise levels from air movement, fan noise, etc. in the adjacent space or downstream of the duct silencer device.
+ Duct silencer
+ https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencer
+
+
+
+
+
+
+
+ An electric appliance is a device intended for consumer usage that is powered by electricity.
+
+Electric appliances may be fixed in place or may be able to be moved from one space to another. Electric appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ electric appliance
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricAppliance
+
+
+
+
+
+
+
+ An electric flow storage device is a device in which electrical energy is stored and from which energy may be progressively released.
+ Electric flow storage device
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDevice
+
+
+
+
+
+
+
+ An electric generator is an engine that is a machine for converting mechanical energy into electrical energy.
+ Electric generator
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricGenerator
+
+
+
+
+
+
+
+ An electric motor is an engine that is a machine for converting electrical energy into mechanical energy.
+ Electric motor
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotor
+
+
+
+
+
+
+
+ An electric time control is a device that applies control to the provision or flow of electrical energy over time.
+ Electric time control
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControl
+
+
+
+
+
+
+
+ The distribution flow element IfcEnergyConversionDevice defines the occurrence of a device used to perform energy conversion or heat transfer and typically participates in a flow distribution system. Its type is defined by IfcEnergyConversionDeviceType or its subtypes.
+ Energy conversion device
+ https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDevice
+
+
+
+
+
+
+
+ An engine is a device that converts fuel into mechanical energy through combustion.
+ Engine
+ https://w3id.org/ifc/IFC4_ADD1#IfcEngine
+
+
+
+
+
+
+
+ An evaporative cooler is a device that cools air by saturating it with water vapor.
+ Evaporative cooler
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCooler
+
+
+
+
+
+
+
+ An evaporator is a device in which a liquid refrigerent is vaporized and absorbs heat from the surrounding fluid.
+ Evaporator
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporator
+
+
+
+
+
+
+
+ A fan is a device which imparts mechanical work on a gas. A typical usage of a fan is to induce airflow in a building services air distribution system.
+ Fan
+ https://w3id.org/ifc/IFC4_ADD1#IfcFan
+
+
+
+
+
+
+
+ A filter is an apparatus used to remove particulate or gaseous matter from fluids and gases.
+ Filter
+ https://w3id.org/ifc/IFC4_ADD1#IfcFilter
+
+
+
+
+
+
+
+ A fire suppression terminal has the purpose of delivering a fluid (gas or liquid) that will suppress a fire.
+
+A fire suppression terminal provides for all forms of sprinkler, spreader and other form of terminal that is connected to a pipework system and intended to act in the role of suppressing a fire.
+ Fire suppression terminal
+ https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminal
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowController defines the occurrence of elements of a distribution system that are used to regulate flow through a distribution system. Examples include dampers, valves, switches, and relays. Its type is defined by IfcFlowControllerType or subtypes.
+ Flow controller
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowController
+
+
+
+
+
+
+
+ A flow instrument reads and displays the value of a particular property of a system at a point, or displays the difference in the value of a property between two points.
+
+Instrumentation is typically for the purpose of determining the value of the property at a point in time. It is not the purpose of an instrument to record or integrate the values over time (although they may be connected to recording devices that do perform such a function). This entity provides for all forms of mechanical flow instrument (thermometers, pressure gauges etc.) and electrical flow instruments (ammeters, voltmeters etc.)
+ flow instrument
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrument
+
+
+
+
+
+
+
+ A flow meter is a device that is used to measure the flow rate in a system.
+ Flow meter
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeter
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowMovingDevice defines the occurrence of an apparatus used to distribute, circulate or perform conveyance of fluids, including liquids and gases (such as a pump or fan), and typically participates in a flow distribution system. Its type is defined by IfcFlowMovingDeviceType or its subtypes.
+ Flow moving device
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDevice
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowStorageDevice defines the occurrence of a device that participates in a distribution system and is used for temporary storage (such as a tank). Its type is defined by IfcFlowStorageDeviceType or its subtypes.
+ Flow storage device
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDevice
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowTerminal defines the occurrence of a permanently attached element that acts as a terminus or beginning of a distribution system (such as an air outlet, drain, water closet, or sink). A terminal is typically a point at which a system interfaces with an external environment. Its type is defined by IfcFlowTerminalType or its subtypes.
+ Flow terminal
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminal
+
+
+
+
+
+
+
+ The distribution flow element IfcFlowTreatmentDevice defines the occurrence of a device typically used to remove unwanted matter from a fluid, either liquid or gas, and typically participates in a flow distribution system. Its type is defined by IfcFlowTreatmentDeviceType or its subtypes.
+ Flow treatment device
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDevice
+
+
+
+
+
+
+
+ A heat exchanger is a device used to provide heat transfer between non-mixing media such as plate and shell and tube heat exchangers.
+
+IfcHeatExchanger is commonly used on water-side distribution systems to recover energy from a liquid to another liquid (typically water-based), whereas IfcAirToAirHeatRecovery is commonly used on air-side distribution systems to recover energy from a gas to a gas (usually air).
+ Heat exchanger
+ https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchanger
+
+
+
+
+
+
+
+ A humidifier is a device that adds moisture into the air.
+ Humidifier
+ https://w3id.org/ifc/IFC4_ADD1#IfcHumidifier
+
+
+
+
+
+
+
+ An interceptor is a device designed and installed in order to separate and retain deleterious, hazardous or undesirable matter while permitting normal sewage or liquids to discharge into a collection system by gravity.
+ Interceptor
+ https://w3id.org/ifc/IFC4_ADD1#IfcInterceptor
+
+
+
+
+
+
+
+ A lamp is an artificial light source such as a light bulb or tube.
+ Lamp
+ https://w3id.org/ifc/IFC4_ADD1#IfcLamp
+
+
+
+
+
+
+
+ A medical device is attached to a medical piping system and operates upon medical gases to perform a specific function. Medical gases include medical air, medical vacuum, oxygen, carbon dioxide, nitrogen, and nitrous oxide.
+
+Outlets for medical gasses should use IfcValve with PredefinedType equal to GASTAP, containing an IfcDistributionPort with FlowDirection=SINK and PredefinedType equal to COMPRESSEDAIR, VACUUM, or CHEMICAL, and having property sets on the port further indicating the gas type and pressure. Tanks for medical gasses should use IfcTank with PredefinedType equal to PRESSUREVESSEL, containing an IfcDistributionPort with FlowDirection=SOURCE and PredefinedType=CHEMICAL, and having property sets on the port further indicating the gas type and pressure range.
+ Medical device
+ https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDevice
+
+
+
+
+
+
+
+ An outlet is a device installed at a point to receive one or more inserted plugs for electrical power or communications.
+
+Power outlets are commonly connected within a junction box; data outlets may be directly connected to a wall. For power outlets sharing the same circuit within a junction box, the ports should indicate the logical wiring relationship to the enclosing junction box, even though they may be physically connected to a cable going to another outlet, switch, or fixture.
+ Outlet
+ https://w3id.org/ifc/IFC4_ADD1#IfcOutlet
+
+
+
+
+
+
+
+ A protective device breaks an electrical circuit when a stated electric current that passes through it is exceeded.
+
+A protective device provides protection against electrical current only (not as a general protective device). It may be used to represent the complete set of elements including both the tripping unit and the breaking unit that provide the protection. This may be particularly useful at earlier stages of design where the approach to breaking the electrical supply may be determined but the method of tripping may not. Alternatively, this entity may be used to specifically represent the breaking unit alone (in which case the tripping unit will also be specifically identified). This entity is specific to dedicated protective devices and excludes electrical outlets that may have circuit protection.
+ Protective device
+ https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDevice
+
+
+
+
+
+
+
+ A pump is a device which imparts mechanical work on fluids or slurries to move them through a channel or pipeline. A typical use of a pump is to circulate chilled water or heating hot water in a building services distribution system.
+ Pump
+ https://w3id.org/ifc/IFC4_ADD1#IfcPump
+
+
+
+
+
+
+
+ A sanitary terminal is a fixed appliance or terminal usually supplied with water and used for drinking, cleaning or foul water disposal or that is an item of equipment directly used with such an appliance or terminal.
+ Sanitary terminal
+ https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminal
+
+
+
+
+
+
+
+ A sensor is a device that measures a physical quantity and converts it into a signal which can be read by an observer or by an instrument.
+ sensor
+ https://w3id.org/ifc/IFC4_ADD1#IfcSensor
+
+
+
+
+
+
+
+ A solar device converts solar radiation into other energy such as electric current or thermal energy.
+ solar device
+ https://w3id.org/ifc/IFC4_ADD1#IfcSolarDevice
+
+
+
+
+
+
+
+ Space heaters utilize a combination of radiation and/or natural convection using a heating source such as electricity, steam or hot water to heat a limited space or area. Examples of space heaters include radiators, convectors, baseboard and finned-tube heaters.
+
+IfcUnitaryEquipment should be used for packaged units supporting a combination of heating, cooling, and/or dehumidification; IfcCoil should be used for coil-based floor heating.
+ Space heater
+ https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeater
+
+
+
+
+
+
+
+ A switch is used in a cable distribution system (electrical circuit) to control or modulate the flow of electricity.
+
+Switches include those used for electrical power, communications, audio-visual, or other distribution system types as determined by the available ports.
+ Switching device
+ https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDevice
+
+
+
+
+
+
+
+ A transformer is an inductive stationary device that transfers electrical energy from one circuit to another.
+
+IfcTransformer is used to transform electric power; conversion of electric signals for other purposes is handled at other entities: IfcController converts arbitrary signals, IfcAudioVisualAppliance converts signals for audio or video streams, and IfcCommunicationsAppliance converts signals for data or other communications usage.
+ Transformer
+ https://w3id.org/ifc/IFC4_ADD1#IfcTransformer
+
+
+
+
+
+
+
+ A tube bundle is a device consisting of tubes and bundles of tubes used for heat transfer and contained typically within other energy conversion devices, such as a chiller or coil.
+ Tube bundle
+ https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundle
+
+
+
+
+
+
+
+ A unitary control element combines a number of control components into a single product, such as a thermostat or humidistat.
+
+A unitary control element provides a housing for an aggregation of control or electrical distribution elements that, in combination, perform a singular (unitary) purpose. Each item in the aggregation may have its own geometric representation and location.
+ Unitary control element
+ https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElement
+
+
+
+
+
+
+
+ A valve is used in a building services piping distribution system to control or modulate the flow of the fluid.
+ Valve
+ https://w3id.org/ifc/IFC4_ADD1#IfcValve
+
+
+
+
+
+
+
+ A vibration isolator is a device used to minimize the effects of vibration transmissibility in a building.
+ Vibration isolator
+ https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolator
+
+
+
+
+
+
+
+ Shading devices are purpose built devices to protect from the sunlight, from natural light, or screening them from view. Shading devices can form part of the facade or can be mounted inside the building, they can be fixed or operable.
+ What is a shading device?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsAShadingDevice?
+
+
+
+
+
+
+
+ A transport element is a generalization of all transport related objects that move people, animals or goods within a building or building complex. The IfcTransportElement defines the occurrence of a transport element, that (if given), is expressed by the IfcTransportElementType.
+ What is a transport element?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhatIsATransportElement?
+
+
+
+
+
+
+
+ JALOUSIE A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
+SHUTTER A mechanical devices that limits the passage of light. Often used as a a solid or louvered movable cover for a window.
+AWNING A rooflike shelter of canvas or other material extending over a doorway, from the top of a window, over a deck, or similar, in order to provide protection, as from the sun.
+ Which shading device types are there?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhichShadingDeviceTypesAreThere?
+
+
+
+
+
+
+
+ ELEVATOR Elevator or lift being a transport device to move people of good vertically.
+ESCALATOR Escalator being a transport device to move people. It consists of individual linked steps that move up and down on tracks while keeping the threads horizontal.
+MOVINGWALKWAY Moving walkway being a transport device to move people horizontally or on an incline. It is a slow conveyor belt that transports people.
+CRANEWAY A crane way system, normally including the crane rails, fasteners and the crane. It is primarily used to move heavy goods in a factory or other industry buildings.
+LIFTINGGEAR A device used for lifting or lowering heavy goods. It may be manually operated or electrically or pneumatically driven.
+ Which types of transport element are there?
+ https://w3id.org/ifc/IFC4_ADD1#IfcWhichTypesOfTransportElementAreThere?
+
+
+
+
+
+
+
diff --git a/SAREF4BLD/ontology/catalog-v001.xml b/SAREF4BLD/ontology/catalog-v001.xml
new file mode 100644
index 0000000000000000000000000000000000000000..fe43464f1e3e4ab1d610e08aa892e8e375751fa2
--- /dev/null
+++ b/SAREF4BLD/ontology/catalog-v001.xml
@@ -0,0 +1,6 @@
+
+
+
+
+
+
diff --git a/SAREF4BLD/ontology/saref-bld.owl b/SAREF4BLD/ontology/saref-bld.owl
new file mode 100644
index 0000000000000000000000000000000000000000..ffa16918a91fa24814fdaa9087d39c2f51863af2
--- /dev/null
+++ b/SAREF4BLD/ontology/saref-bld.owl
@@ -0,0 +1,1049 @@
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+]>
+
+
+
+
+ http://purl.org/NET/rdflicense/cc-by4.0
+ http://saref.linkeddata.es/def/bldg
+ This ontology extends the SAREF ontology for the building devices domain. This extension is based on the ISO 16739:2013 Industry Foundation Classes (IFC) for data sharing in the construction and facility management industries.
+ saref4bldg
+ SAREF extension for light pollution
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+ actuator
+
+ An actuator is a mechanical device for moving or controlling a mechanism or system. An actuator takes energy, usually created by air, electricity, or liquid, and converts that into some kind of motion.
+ https://w3id.org/ifc/IFC4_ADD1#IfcActuator
+
+
+
+
+
+
+
+ Air to air heat recovery
+
+ An air-to-air heat recovery device employs a counter-flow heat exchanger between inbound and outbound air flow. It is typically used to transfer heat from warmer air in one chamber to cooler air in the second chamber (i.e., typically used to recover heat from the conditioned air being exhausted and the outside air being supplied to a building), resulting in energy savings from reduced heating (or cooling) requirements.
+ https://w3id.org/ifc/IFC4_ADD1#IfcAirToAirHeatRecovery
+
+
+
+
+
+
+
+ alarm
+
+ An alarm is a device that signals the existence of a condition or situation that is outside the boundaries of normal expectation or that activates such a device.
+
+Alarms include the provision of break glass buttons and manual pull boxes that are used to activate alarms.
+ https://w3id.org/ifc/IFC4_ADD1#IfcAlarm
+
+
+
+
+
+
+
+ audio visual applicance
+
+ An audio-visual appliance is a device that displays, captures, transmits, or receives audio or video.
+
+Audio-visual appliances may be fixed in place or may be able to be moved from one space to another. They may require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source. Audio-visual appliances may be connected to data circuits including specialist circuits for audio visual purposes only.
+ https://w3id.org/ifc/IFC4_ADD1#IfcAudioVisualApplicance
+
+
+
+
+
+
+
+ Awning
+
+
+
+
+
+
+
+
+ Boiler
+
+ "A boiler is a closed, pressure-rated vessel in which water or other fluid is heated using an energy source such as natural gas, heating oil, or electricity. The fluid in the vessel is then circulated out of the boiler for use in various processes or heating applications.
+
+IfcBoiler is a vessel solely used for heating of water or other fluids. Storage vessels, such as for drinking water storage are considered as tanks and use the IfcTank entity."
+ https://w3id.org/ifc/IFC4_ADD1#IfcBoiler
+
+
+
+
+
+
+
+ Building
+
+
+
+
+
+
+
+ BuildingDevice
+
+
+
+
+
+
+
+
+ BuildingSpace
+
+
+
+
+
+
+
+ Burner
+
+ A burner is a device that converts fuel into heat through combustion. It includes gas, oil, and wood burners.
+ https://w3id.org/ifc/IFC4_ADD1#IfcBurner
+
+
+
+
+
+
+
+ Chiller
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcChiller
+ A chiller is a device used to remove heat from a liquid via a vapor-compression or absorption refrigeration cycle to cool a fluid, typically water or a mixture of water and glycol. The chilled fluid is then used to cool and dehumidify air in a building.
+
+
+
+
+
+
+
+ Coil
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoil
+ A coil is a device used to provide heat transfer between non-mixing media. A common example is a cooling coil, which utilizes a finned coil in which circulates chilled water, antifreeze, or refrigerant that is used to remove heat from air moving across the surface of the coil. A coil may be used either for heating or cooling purposes by placing a series of tubes (the coil) carrying a heating or cooling fluid into an airstream. The coil may be constructed from tubes bundled in a serpentine form or from finned tubes that give a extended heat transfer surface.
+
+Coils may also be used for non-airflow cases such as embedded in a floor slab.
+
+
+
+
+
+
+
+ communication appliance
+
+ A communications appliance transmits and receives electronic or digital information as data or sound.
+
+Communication appliances may be fixed in place or may be able to be moved from one space to another. Communication appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCommunicationAppliance
+
+
+
+
+
+
+
+ Compressor
+
+ A compressor is a device that compresses a fluid typically used in a refrigeration circuit.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCompressor
+
+
+
+
+
+
+
+ Condenser
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcCondenser
+ A condenser is a device that is used to dissipate heat, typically by condensing a substance such as a refrigerant from its gaseous to its liquid state.
+
+
+
+
+
+
+
+ controller
+
+ A controller is a device that monitors inputs and controls outputs within a building automation system.
+
+A controller may be physical (having placement within a spatial structure) or logical (a software interface or aggregated within a programmable physical controller).
+ https://w3id.org/ifc/IFC4_ADD1#IfcController
+
+
+
+
+
+
+
+ Cooled beam
+
+ A cooled beam (or chilled beam) is a device typically used to cool air by circulating a fluid such as chilled water through exposed finned tubes above a space. Typically mounted overhead near or within a ceiling, the cooled beam uses convection to cool the space below it by acting as a heat sink for the naturally rising warm air of the space. Once cooled, the air naturally drops back to the floor where the cycle begins again.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCooledBeam
+
+
+
+
+
+
+
+ Cooling tower
+
+ A cooling tower is a device which rejects heat to ambient air by circulating a fluid such as water through it to reduce its temperature by partial evaporation.
+ https://w3id.org/ifc/IFC4_ADD1#IfcCoolingTower
+
+
+
+
+
+
+
+ Damper
+
+ A damper typically participates in an HVAC duct distribution system and is used to control or modulate the flow of air.
+ https://w3id.org/ifc/IFC4_ADD1#IfcDamper
+
+
+
+
+
+
+
+ Device
+
+
+
+
+
+
+
+ Distribution control device
+
+
+
+
+
+
+
+
+ DistributionDevice
+
+
+
+
+
+
+
+
+ DistributionFlowDevice
+
+
+
+
+
+
+
+
+ Duct silencer
+
+ A duct silencer is a device that is typically installed inside a duct distribution system for the purpose of reducing the noise levels from air movement, fan noise, etc. in the adjacent space or downstream of the duct silencer device.
+ https://w3id.org/ifc/IFC4_ADD1#IfcDuctSilencer
+
+
+
+
+
+
+
+ electric appliance
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricAppliance
+ An electric appliance is a device intended for consumer usage that is powered by electricity.
+
+Electric appliances may be fixed in place or may be able to be moved from one space to another. Electric appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.
+
+
+
+
+
+
+
+ Electric flow storage device
+
+ An electric flow storage device is a device in which electrical energy is stored and from which energy may be progressively released.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricFlowStorageDevice
+
+
+
+
+
+
+
+ Electric generator
+
+ An electric generator is an engine that is a machine for converting mechanical energy into electrical energy.
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricGenerator
+
+
+
+
+
+
+
+ Electric motor
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricMotor
+ An electric motor is an engine that is a machine for converting electrical energy into mechanical energy.
+
+
+
+
+
+
+
+ Electric time control
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcElectricTimeControl
+ An electric time control is a device that applies control to the provision or flow of electrical energy over time.
+
+
+
+
+
+
+
+ Energy conversion device
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcEnergyConversionDevice
+ The distribution flow element IfcEnergyConversionDevice defines the occurrence of a device used to perform energy conversion or heat transfer and typically participates in a flow distribution system. Its type is defined by IfcEnergyConversionDeviceType or its subtypes.
+
+
+
+
+
+
+
+ Engine
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcEngine
+ An engine is a device that converts fuel into mechanical energy through combustion.
+
+
+
+
+
+
+
+ Evaporative cooler
+
+ An evaporative cooler is a device that cools air by saturating it with water vapor.
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporativeCooler
+
+
+
+
+
+
+
+ Evaporator
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcEvaporator
+ An evaporator is a device in which a liquid refrigerent is vaporized and absorbs heat from the surrounding fluid.
+
+
+
+
+
+
+
+ Fan
+
+ A fan is a device which imparts mechanical work on a gas. A typical usage of a fan is to induce airflow in a building services air distribution system.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFan
+
+
+
+
+
+
+
+ Filter
+
+ A filter is an apparatus used to remove particulate or gaseous matter from fluids and gases.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFilter
+
+
+
+
+
+
+
+ Fire suppression terminal
+
+ A fire suppression terminal has the purpose of delivering a fluid (gas or liquid) that will suppress a fire.
+
+A fire suppression terminal provides for all forms of sprinkler, spreader and other form of terminal that is connected to a pipework system and intended to act in the role of suppressing a fire.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFireSuppressionTerminal
+
+
+
+
+
+
+
+ Flow controller
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowController
+ The distribution flow element IfcFlowController defines the occurrence of elements of a distribution system that are used to regulate flow through a distribution system. Examples include dampers, valves, switches, and relays. Its type is defined by IfcFlowControllerType or subtypes.
+
+
+
+
+
+
+
+ flow instrument
+
+ A flow instrument reads and displays the value of a particular property of a system at a point, or displays the difference in the value of a property between two points.
+
+Instrumentation is typically for the purpose of determining the value of the property at a point in time. It is not the purpose of an instrument to record or integrate the values over time (although they may be connected to recording devices that do perform such a function). This entity provides for all forms of mechanical flow instrument (thermometers, pressure gauges etc.) and electrical flow instruments (ammeters, voltmeters etc.)
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowInstrument
+
+
+
+
+
+
+
+ Flow meter
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMeter
+ A flow meter is a device that is used to measure the flow rate in a system.
+
+
+
+
+
+
+
+ Flow moving device
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowMovingDevice
+ The distribution flow element IfcFlowMovingDevice defines the occurrence of an apparatus used to distribute, circulate or perform conveyance of fluids, including liquids and gases (such as a pump or fan), and typically participates in a flow distribution system. Its type is defined by IfcFlowMovingDeviceType or its subtypes.
+
+
+
+
+
+
+
+ Flow storage device
+
+ The distribution flow element IfcFlowStorageDevice defines the occurrence of a device that participates in a distribution system and is used for temporary storage (such as a tank). Its type is defined by IfcFlowStorageDeviceType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowStorageDevice
+
+
+
+
+
+
+
+ Flow terminal
+
+ The distribution flow element IfcFlowTerminal defines the occurrence of a permanently attached element that acts as a terminus or beginning of a distribution system (such as an air outlet, drain, water closet, or sink). A terminal is typically a point at which a system interfaces with an external environment. Its type is defined by IfcFlowTerminalType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTerminal
+
+
+
+
+
+
+
+ Flow treatment device
+
+ The distribution flow element IfcFlowTreatmentDevice defines the occurrence of a device typically used to remove unwanted matter from a fluid, either liquid or gas, and typically participates in a flow distribution system. Its type is defined by IfcFlowTreatmentDeviceType or its subtypes.
+ https://w3id.org/ifc/IFC4_ADD1#IfcFlowTreatmentDevice
+
+
+
+
+
+
+
+ Heat exchanger
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcHeatExchanger
+ A heat exchanger is a device used to provide heat transfer between non-mixing media such as plate and shell and tube heat exchangers.
+
+IfcHeatExchanger is commonly used on water-side distribution systems to recover energy from a liquid to another liquid (typically water-based), whereas IfcAirToAirHeatRecovery is commonly used on air-side distribution systems to recover energy from a gas to a gas (usually air).
+
+
+
+
+
+
+
+ Humidifier
+
+ A humidifier is a device that adds moisture into the air.
+ https://w3id.org/ifc/IFC4_ADD1#IfcHumidifier
+
+
+
+
+
+
+
+ Interceptor
+
+ An interceptor is a device designed and installed in order to separate and retain deleterious, hazardous or undesirable matter while permitting normal sewage or liquids to discharge into a collection system by gravity.
+ https://w3id.org/ifc/IFC4_ADD1#IfcInterceptor
+
+
+
+
+
+
+
+ Jalousie
+
+ A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
+
+
+
+
+
+
+
+ Lamp
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcLamp
+ A lamp is an artificial light source such as a light bulb or tube.
+
+
+
+
+
+
+
+ Medical device
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcMedicalDevice
+ A medical device is attached to a medical piping system and operates upon medical gases to perform a specific function. Medical gases include medical air, medical vacuum, oxygen, carbon dioxide, nitrogen, and nitrous oxide.
+
+
+
+
+
+
+
+ Outlet
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcOutlet
+ An outlet is a device installed at a point to receive one or more inserted plugs for electrical power or communications.
+
+Power outlets are commonly connected within a junction box; data outlets may be directly connected to a wall. For power outlets sharing the same circuit within a junction box, the ports should indicate the logical wiring relationship to the enclosing junction box, even though they may be physically connected to a cable going to another outlet, switch, or fixture.
+
+
+
+
+
+
+
+ Protective device
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcProtectiveDevice
+ A protective device breaks an electrical circuit when a stated electric current that passes through it is exceeded.
+
+A protective device provides protection against electrical current only (not as a general protective device). It may be used to represent the complete set of elements including both the tripping unit and the breaking unit that provide the protection. This may be particularly useful at earlier stages of design where the approach to breaking the electrical supply may be determined but the method of tripping may not. Alternatively, this entity may be used to specifically represent the breaking unit alone (in which case the tripping unit will also be specifically identified). This entity is specific to dedicated protective devices and excludes electrical outlets that may have circuit protection.
+
+
+
+
+
+
+
+ Pump
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcPump
+ A pump is a device which imparts mechanical work on fluids or slurries to move them through a channel or pipeline. A typical use of a pump is to circulate chilled water or heating hot water in a building services distribution system.
+
+
+
+
+
+
+
+ Sanitary terminal
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcSanitaryTerminal
+ A sanitary terminal is a fixed appliance or terminal usually supplied with water and used for drinking, cleaning or foul water disposal or that is an item of equipment directly used with such an appliance or terminal.
+
+
+
+
+
+
+
+ sensor
+
+ A sensor is a device that measures a physical quantity and converts it into a signal which can be read by an observer or by an instrument.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSensor
+
+
+
+
+
+
+
+ Shading device
+
+ Shading devices are purpose built devices to protect from the sunlight, from natural light, or screening them from view. Shading devices can form part of the facade or can be mounted inside the building, they can be fixed or operable.
+ https://w3id.org/ifc/IFC4_ADD1#IfcShadingDevice
+
+
+
+
+
+
+
+ Shutter
+
+
+
+
+
+
+
+
+ solar device
+
+ A solar device converts solar radiation into other energy such as electric current or thermal energy.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSolarDevice
+
+
+
+
+
+
+
+ Space heater
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcSpaceHeater
+ Space heaters utilize a combination of radiation and/or natural convection using a heating source such as electricity, steam or hot water to heat a limited space or area. Examples of space heaters include radiators, convectors, baseboard and finned-tube heaters.
+
+IfcUnitaryEquipment should be used for packaged units supporting a combination of heating, cooling, and/or dehumidification; IfcCoil should be used for coil-based floor heating.
+
+
+
+
+
+
+
+ Switching device
+
+ A switch is used in a cable distribution system (electrical circuit) to control or modulate the flow of electricity.
+
+Switches include those used for electrical power, communications, audio-visual, or other distribution system types as determined by the available ports.
+ https://w3id.org/ifc/IFC4_ADD1#IfcSwitchingDevice
+
+
+
+
+
+
+
+ Tank
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcTank
+ A tank is a vessel or container in which a fluid or gas is stored for later use.
+
+
+
+
+
+
+
+ Transformer
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcTransformer
+ A transformer is an inductive stationary device that transfers electrical energy from one circuit to another.
+
+IfcTransformer is used to transform electric power; conversion of electric signals for other purposes is handled at other entities: IfcController converts arbitrary signals, IfcAudioVisualAppliance converts signals for audio or video streams, and IfcCommunicationsAppliance converts signals for data or other communications usage.
+
+
+
+
+
+
+
+ Transport element
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcTransportElement
+ A transport element is a generalization of all transport related objects that move people, animals or goods within a building or building complex. The IfcTransportElement defines the occurrence of a transport element, that (if given), is expressed by the IfcTransportElementType.
+
+
+
+
+
+
+
+ Tube bundle
+
+ A tube bundle is a device consisting of tubes and bundles of tubes used for heat transfer and contained typically within other energy conversion devices, such as a chiller or coil.
+ https://w3id.org/ifc/IFC4_ADD1#IfcTubeBundle
+
+
+
+
+
+
+
+ Unitary control element
+
+ A unitary control element combines a number of control components into a single product, such as a thermostat or humidistat.
+
+A unitary control element provides a housing for an aggregation of control or electrical distribution elements that, in combination, perform a singular (unitary) purpose. Each item in the aggregation may have its own geometric representation and location.
+ https://w3id.org/ifc/IFC4_ADD1#IfcUnitaryControlElement
+
+
+
+
+
+
+
+ Valve
+
+ A valve is used in a building services piping distribution system to control or modulate the flow of the fluid.
+ https://w3id.org/ifc/IFC4_ADD1#IfcValve
+
+
+
+
+
+
+
+ Vibration isolator
+
+ https://w3id.org/ifc/IFC4_ADD1#IfcVibrationIsolator
+ A vibration isolator is a device used to minimize the effects of vibration transmissibility in a building.
+
+
+
+
+
+
+
+
+
+
+
+
+ fluorescence
+
+
+
+
+
+
+
+ illuminance
+
+
+
+
+
+
+
+ irradiance
+
+
+
+
+
+
+
+ lightAbsorption
+
+
+
+
+
+
+
+ luminiscence
+
+
+
+
+
+
+
+ phosphorescence
+
+
+
+
+
+
+
+ reflectionOfLight
+
+
+
+
+
+
+
+ scatteringOfLight
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
+
diff --git a/SAREF4BLD/requirements/BuildingOntReq - IFC-bruto-Device.csv b/SAREF4BLD/requirements/BuildingOntReq - IFC-bruto-Device.csv
new file mode 100644
index 0000000000000000000000000000000000000000..aaa792391b76741e6d8320ae4727fa470dd6e630
--- /dev/null
+++ b/SAREF4BLD/requirements/BuildingOntReq - IFC-bruto-Device.csv
@@ -0,0 +1,147 @@
+Domain,Concept (device),Description,,,,Provenance
+IfcBuildingControlsDomain,actuator,"An actuator is a mechanical device for moving or controlling a mechanism or system. An actuator takes energy, usually created by air, electricity, or liquid, and converts that into some kind of motion.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcactuator.htm
+IfcBuildingControlsDomain,actuator types,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcactuatortypeenum.htm
+IfcBuildingControlsDomain,alarm,"An alarm is a device that signals the existence of a condition or situation that is outside the boundaries of normal expectation or that activates such a device.
+
+Alarms include the provision of break glass buttons and manual pull boxes that are used to activate alarms.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcalarm.htm
+IfcBuildingControlsDomain,alarm types,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcalarmtypeenum.htm
+IfcBuildingControlsDomain,controller,"A controller is a device that monitors inputs and controls outputs within a building automation system.
+
+A controller may be physical (having placement within a spatial structure) or logical (a software interface or aggregated within a programmable physical controller).",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifccontroller.htm
+IfcBuildingControlsDomain,controller types,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifccontrollertypeenum.htm
+IfcBuildingControlsDomain,flow instrument,"A flow instrument reads and displays the value of a particular property of a system at a point, or displays the difference in the value of a property between two points.
+
+Instrumentation is typically for the purpose of determining the value of the property at a point in time. It is not the purpose of an instrument to record or integrate the values over time (although they may be connected to recording devices that do perform such a function). This entity provides for all forms of mechanical flow instrument (thermometers, pressure gauges etc.) and electrical flow instruments (ammeters, voltmeters etc.)",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcflowinstrument.htm
+IfcBuildingControlsDomain,flow instrument types,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcflowinstrumenttypeenum.htm
+IfcBuildingControlsDomain,sensor,A sensor is a device that measures a physical quantity and converts it into a signal which can be read by an observer or by an instrument.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcsensor.htm
+IfcBuildingControlsDomain,sensor type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcsensortypeenum.htm
+IfcBuildingControlsDomain,Unitary control element,"A unitary control element combines a number of control components into a single product, such as a thermostat or humidistat.
+
+A unitary control element provides a housing for an aggregation of control or electrical distribution elements that, in combination, perform a singular (unitary) purpose. Each item in the aggregation may have its own geometric representation and location.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcunitarycontrolelement.htm
+IfcBuildingControlsDomain,Unitary control element type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcbuildingcontrolsdomain/lexical/ifcunitarycontrolelementtypeenum.htm
+IfcElectricalDomain,audio visual applicance,"An audio-visual appliance is a device that displays, captures, transmits, or receives audio or video.
+
+Audio-visual appliances may be fixed in place or may be able to be moved from one space to another. They may require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source. Audio-visual appliances may be connected to data circuits including specialist circuits for audio visual purposes only.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcaudiovisualappliance.htm
+IfcElectricalDomain,audio visual applicance type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcaudiovisualappliancetypeenum.htm
+IfcElectricalDomain,communication appliance,"A communications appliance transmits and receives electronic or digital information as data or sound.
+
+Communication appliances may be fixed in place or may be able to be moved from one space to another. Communication appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifccommunicationsappliance.htm
+IfcElectricalDomain,communication appliance type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifccommunicationsappliancetypeenum.htm
+IfcElectricalDomain,electric appliance,"An electric appliance is a device intended for consumer usage that is powered by electricity.
+
+Electric appliances may be fixed in place or may be able to be moved from one space to another. Electric appliances require an electrical supply that may be supplied either by an electrical circuit or provided from a local battery source.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricappliance.htm
+IfcElectricalDomain,electric applicance type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricappliancetypeenum.htm
+IfcElectricalDomain,Electric flow storage device,An electric flow storage device is a device in which electrical energy is stored and from which energy may be progressively released.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricflowstoragedevice.htm
+IfcElectricalDomain,Electric flow storage device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricflowstoragedevicetypeenum.htm
+IfcElectricalDomain,Electric generator,An electric generator is an engine that is a machine for converting mechanical energy into electrical energy.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricgenerator.htm
+IfcElectricalDomain,Electric generator type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricgeneratortypeenum.htm
+IfcElectricalDomain,Electric motor,An electric motor is an engine that is a machine for converting electrical energy into mechanical energy.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricmotor.htm
+IfcElectricalDomain,Electric motor type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectricmotortypeenum.htm
+IfcElectricalDomain,Electric time control,An electric time control is a device that applies control to the provision or flow of electrical energy over time.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectrictimecontrol.htm
+IfcElectricalDomain,Electric time control type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcelectrictimecontroltypeenum.htm
+IfcElectricalDomain,Lamp,A lamp is an artificial light source such as a light bulb or tube.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifclamp.htm
+IfcElectricalDomain,Lamp type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifclamptypeenum.htm
+IfcElectricalDomain,Outlet,"An outlet is a device installed at a point to receive one or more inserted plugs for electrical power or communications.
+
+Power outlets are commonly connected within a junction box; data outlets may be directly connected to a wall. For power outlets sharing the same circuit within a junction box, the ports should indicate the logical wiring relationship to the enclosing junction box, even though they may be physically connected to a cable going to another outlet, switch, or fixture.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcoutlet.htm
+IfcElectricalDomain,outlet type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcoutlettypeenum.htm
+IfcElectricalDomain,Protective device,"A protective device breaks an electrical circuit when a stated electric current that passes through it is exceeded.
+
+A protective device provides protection against electrical current only (not as a general protective device). It may be used to represent the complete set of elements including both the tripping unit and the breaking unit that provide the protection. This may be particularly useful at earlier stages of design where the approach to breaking the electrical supply may be determined but the method of tripping may not. Alternatively, this entity may be used to specifically represent the breaking unit alone (in which case the tripping unit will also be specifically identified). This entity is specific to dedicated protective devices and excludes electrical outlets that may have circuit protection.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcprotectivedevice.htm
+IfcElectricalDomain,protective device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcprotectivedevicetypeenum.htm
+IfcElectricalDomain,solar device,A solar device converts solar radiation into other energy such as electric current or thermal energy.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcsolardevicetypeenum.htm
+IfcElectricalDomain,solar device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcsolardevicetypeenum.htm
+IfcElectricalDomain,Switching device,"A switch is used in a cable distribution system (electrical circuit) to control or modulate the flow of electricity.
+
+Switches include those used for electrical power, communications, audio-visual, or other distribution system types as determined by the available ports.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcswitchingdevice.htm
+IfcElectricalDomain,Switching device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifcswitchingdevicetypeenum.htm
+IfcElectricalDomain,Transformer,"A transformer is an inductive stationary device that transfers electrical energy from one circuit to another.
+
+IfcTransformer is used to transform electric power; conversion of electric signals for other purposes is handled at other entities: IfcController converts arbitrary signals, IfcAudioVisualAppliance converts signals for audio or video streams, and IfcCommunicationsAppliance converts signals for data or other communications usage.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifctransformer.htm
+IfcElectricalDomain,Transformer type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcelectricaldomain/lexical/ifctransformertypeenum.htm
+IfcHvacDomain,Air to air heat recovery,"An air-to-air heat recovery device employs a counter-flow heat exchanger between inbound and outbound air flow. It is typically used to transfer heat from warmer air in one chamber to cooler air in the second chamber (i.e., typically used to recover heat from the conditioned air being exhausted and the outside air being supplied to a building), resulting in energy savings from reduced heating (or cooling) requirements.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcairtoairheatrecovery.htm
+IfcHvacDomain,Air to air heat recovery types,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcairtoairheatrecoverytypeenum.htm
+IfcHvacDomain,Burner,"A burner is a device that converts fuel into heat through combustion. It includes gas, oil, and wood burners.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcburner.htm
+IfcHvacDomain,Burner type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcburnertypeenum.htm
+IfcHvacDomain,Chiller,"A chiller is a device used to remove heat from a liquid via a vapor-compression or absorption refrigeration cycle to cool a fluid, typically water or a mixture of water and glycol. The chilled fluid is then used to cool and dehumidify air in a building.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcchiller.htm
+IfcHvacDomain,Chiller type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcchillertypeenum.htm
+IfcHvacDomain,Coil,"A coil is a device used to provide heat transfer between non-mixing media. A common example is a cooling coil, which utilizes a finned coil in which circulates chilled water, antifreeze, or refrigerant that is used to remove heat from air moving across the surface of the coil. A coil may be used either for heating or cooling purposes by placing a series of tubes (the coil) carrying a heating or cooling fluid into an airstream. The coil may be constructed from tubes bundled in a serpentine form or from finned tubes that give a extended heat transfer surface.
+
+Coils may also be used for non-airflow cases such as embedded in a floor slab.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccoil.htm
+IfcHvacDomain,Coil type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccoiltypeenum.htm
+IfcHvacDomain,Compressor,A compressor is a device that compresses a fluid typically used in a refrigeration circuit.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccompressor.htm
+IfcHvacDomain,Compressor type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccompressortypeenum.htm
+IfcHvacDomain,Condenser,"A condenser is a device that is used to dissipate heat, typically by condensing a substance such as a refrigerant from its gaseous to its liquid state.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccondenser.htm
+IfcHvacDomain,Condenser type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccondensertypeenum.htm
+IfcHvacDomain,Cooled beam,"A cooled beam (or chilled beam) is a device typically used to cool air by circulating a fluid such as chilled water through exposed finned tubes above a space. Typically mounted overhead near or within a ceiling, the cooled beam uses convection to cool the space below it by acting as a heat sink for the naturally rising warm air of the space. Once cooled, the air naturally drops back to the floor where the cycle begins again.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccooledbeam.htm
+IfcHvacDomain,Cooled beam type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccooledbeamtypeenum.htm
+IfcHvacDomain,Cooling tower,A cooling tower is a device which rejects heat to ambient air by circulating a fluid such as water through it to reduce its temperature by partial evaporation.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccoolingtower.htm
+IfcHvacDomain,Cooling tower type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifccoolingtowertypeenum.htm
+IfcHvacDomain,Damper,A damper typically participates in an HVAC duct distribution system and is used to control or modulate the flow of air.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcdamper.htm
+IfcHvacDomain,Damper type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcdampertypeenum.htm
+IfcHvacDomain,Duct silencer,"A duct silencer is a device that is typically installed inside a duct distribution system for the purpose of reducing the noise levels from air movement, fan noise, etc. in the adjacent space or downstream of the duct silencer device.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcductsilencer.htm
+IfcHvacDomain,Duct silencer type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcductsilencertypeenum.htm
+IfcHvacDomain,Engine,An engine is a device that converts fuel into mechanical energy through combustion.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcengine.htm
+IfcHvacDomain,Engine type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcenginetypeenum.htm
+IfcHvacDomain,Evaporative cooler,An evaporative cooler is a device that cools air by saturating it with water vapor.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcevaporativecooler.htm
+IfcHvacDomain,Evaporative cooler type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcevaporativecoolertypeenum.htm
+IfcHvacDomain,Evaporator,An evaporator is a device in which a liquid refrigerent is vaporized and absorbs heat from the surrounding fluid.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcevaporator.htm
+IfcHvacDomain,Evaporator type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcevaporatortypeenum.htm
+IfcHvacDomain,Fan,A fan is a device which imparts mechanical work on a gas. A typical usage of a fan is to induce airflow in a building services air distribution system.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcfan.htm
+IfcHvacDomain,Fan type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcfantypeenum.htm
+IfcHvacDomain,Filter,A filter is an apparatus used to remove particulate or gaseous matter from fluids and gases.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcfilter.htm
+IfcHvacDomain,Filter type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcfiltertypeenum.htm
+IfcHvacDomain,Flow meter,A flow meter is a device that is used to measure the flow rate in a system.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcflowmeter.htm
+IfcHvacDomain,Flow meter type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcflowmetertypeenum.htm
+IfcHvacDomain,Heat exchanger,"A heat exchanger is a device used to provide heat transfer between non-mixing media such as plate and shell and tube heat exchangers.
+
+IfcHeatExchanger is commonly used on water-side distribution systems to recover energy from a liquid to another liquid (typically water-based), whereas IfcAirToAirHeatRecovery is commonly used on air-side distribution systems to recover energy from a gas to a gas (usually air).",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcheatexchanger.htm
+IfcHvacDomain,Heat exchanger type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcheatexchangertypeenum.htm
+IfcHvacDomain,Humidifier,A humidifier is a device that adds moisture into the air.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifchumidifier.htm
+IfcHvacDomain,Humidifier type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifchumidifiertypeenum.htm
+IfcHvacDomain,Medical device,"A medical device is attached to a medical piping system and operates upon medical gases to perform a specific function. Medical gases include medical air, medical vacuum, oxygen, carbon dioxide, nitrogen, and nitrous oxide.
+
+Outlets for medical gasses should use IfcValve with PredefinedType equal to GASTAP, containing an IfcDistributionPort with FlowDirection=SINK and PredefinedType equal to COMPRESSEDAIR, VACUUM, or CHEMICAL, and having property sets on the port further indicating the gas type and pressure. Tanks for medical gasses should use IfcTank with PredefinedType equal to PRESSUREVESSEL, containing an IfcDistributionPort with FlowDirection=SOURCE and PredefinedType=CHEMICAL, and having property sets on the port further indicating the gas type and pressure range.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcmedicaldevice.htm
+IfcHvacDomain,Medical device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcmedicaldevicetypeenum.htm
+IfcHvacDomain,Pump,A pump is a device which imparts mechanical work on fluids or slurries to move them through a channel or pipeline. A typical use of a pump is to circulate chilled water or heating hot water in a building services distribution system.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcpump.htm
+IfcHvacDomain,Pump type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcpumptypeenum.htm
+IfcHvacDomain,Space heater,"Space heaters utilize a combination of radiation and/or natural convection using a heating source such as electricity, steam or hot water to heat a limited space or area. Examples of space heaters include radiators, convectors, baseboard and finned-tube heaters.
+
+IfcUnitaryEquipment should be used for packaged units supporting a combination of heating, cooling, and/or dehumidification; IfcCoil should be used for coil-based floor heating.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcspaceheater.htm
+IfcHvacDomain,Space heater type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcspaceheatertypeenum.htm
+IfcHvacDomain,Tube bundle,"A tube bundle is a device consisting of tubes and bundles of tubes used for heat transfer and contained typically within other energy conversion devices, such as a chiller or coil.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifctubebundle.htm
+IfcHvacDomain,Tube bundle type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifctubebundletypeenum.htm
+IfcHvacDomain,Valve,A valve is used in a building services piping distribution system to control or modulate the flow of the fluid.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcvalve.htm
+IfcHvacDomain,Valve type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcvalvetypeenum.htm
+IfcHvacDomain,Vibration isolator,A vibration isolator is a device used to minimize the effects of vibration transmissibility in a building.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcvibrationisolator.htm
+IfcHvacDomain,Vibration isolator type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifchvacdomain/lexical/ifcvibrationisolatortypeenum.htm
+IfcPlumbingFireProtectionDomain,Fire suppression terminal,"A fire suppression terminal has the purpose of delivering a fluid (gas or liquid) that will suppress a fire.
+
+A fire suppression terminal provides for all forms of sprinkler, spreader and other form of terminal that is connected to a pipework system and intended to act in the role of suppressing a fire.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcplumbingfireprotectiondomain/lexical/ifcfiresuppressionterminal.htm
+IfcPlumbingFireProtectionDomain,Fire suppression terminal type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcplumbingfireprotectiondomain/lexical/ifcfiresuppressionterminaltypeenum.htm
+IfcPlumbingFireProtectionDomain,Interceptor,"An interceptor is a device designed and installed in order to separate and retain deleterious, hazardous or undesirable matter while permitting normal sewage or liquids to discharge into a collection system by gravity.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcplumbingfireprotectiondomain/lexical/ifcinterceptor.htm
+IfcPlumbingFireProtectionDomain,Interceptor type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcplumbingfireprotectiondomain/lexical/ifcinterceptortypeenum.htm
+IfcPlumbingFireProtectionDomain,Sanitary terminal,"A sanitary terminal is a fixed appliance or terminal usually supplied with water and used for drinking, cleaning or foul water disposal or that is an item of equipment directly used with such an appliance or terminal.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcplumbingfireprotectiondomain/lexical/ifcsanitaryterminal.htm
+IfcPlumbingFireProtectionDomain,Sanitary terminal type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcplumbingfireprotectiondomain/lexical/ifcsanitaryterminaltypeenum.htm
+IfcStructuralAnalysisDomain,Energy conversion device,The distribution flow element IfcEnergyConversionDevice defines the occurrence of a device used to perform energy conversion or heat transfer and typically participates in a flow distribution system. Its type is defined by IfcEnergyConversionDeviceType or its subtypes.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcenergyconversiondevice.htm
+IfcStructuralAnalysisDomain,Energy conversion device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcenergyconversiondevicetype.htm
+IfcStructuralAnalysisDomain,Flow controller,"The distribution flow element IfcFlowController defines the occurrence of elements of a distribution system that are used to regulate flow through a distribution system. Examples include dampers, valves, switches, and relays. Its type is defined by IfcFlowControllerType or subtypes.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowcontroller.htm
+IfcStructuralAnalysisDomain,Flow controller type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowcontrollertype.htm
+IfcStructuralAnalysisDomain,Flow moving device,"The distribution flow element IfcFlowMovingDevice defines the occurrence of an apparatus used to distribute, circulate or perform conveyance of fluids, including liquids and gases (such as a pump or fan), and typically participates in a flow distribution system. Its type is defined by IfcFlowMovingDeviceType or its subtypes.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowmovingdevice.htm
+IfcStructuralAnalysisDomain,Flow moving device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowmovingdevicetype.htm
+IfcStructuralAnalysisDomain,Flow storage device,The distribution flow element IfcFlowStorageDevice defines the occurrence of a device that participates in a distribution system and is used for temporary storage (such as a tank). Its type is defined by IfcFlowStorageDeviceType or its subtypes.,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowstoragedevice.htm
+IfcStructuralAnalysisDomain,Flow storage device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowstoragedevicetype.htm
+IfcStructuralAnalysisDomain,Flow terminal,"The distribution flow element IfcFlowTerminal defines the occurrence of a permanently attached element that acts as a terminus or beginning of a distribution system (such as an air outlet, drain, water closet, or sink). A terminal is typically a point at which a system interfaces with an external environment. Its type is defined by IfcFlowTerminalType or its subtypes.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowterminal.htm
+IfcStructuralAnalysisDomain,Flow terminal type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowterminaltype.htm
+IfcStructuralAnalysisDomain,Flow treatment device,"The distribution flow element IfcFlowTreatmentDevice defines the occurrence of a device typically used to remove unwanted matter from a fluid, either liquid or gas, and typically participates in a flow distribution system. Its type is defined by IfcFlowTreatmentDeviceType or its subtypes.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowtreatmentdevice.htm
+IfcStructuralAnalysisDomain,Flow treatment device type,,,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgserviceelements/lexical/ifcflowtreatmentdevicetype.htm
+fcSharedBldgElements,What is a shading device?,"Shading devices are purpose built devices to protect from the sunlight, from natural light, or screening them from view. Shading devices can form part of the facade or can be mounted inside the building, they can be fixed or operable.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgelements/lexical/ifcshadingdevice.htm
+fcSharedBldgElements,Which shading device types are there?,"JALOUSIE A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
+SHUTTER A mechanical devices that limits the passage of light. Often used as a a solid or louvered movable cover for a window.
+AWNING A rooflike shelter of canvas or other material extending over a doorway, from the top of a window, over a deck, or similar, in order to provide protection, as from the sun.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcsharedbldgelements/lexical/ifcshadingdevicetypeenum.htm
+IfcProductExtension,What is a transport element?,"A transport element is a generalization of all transport related objects that move people, animals or goods within a building or building complex. The IfcTransportElement defines the occurrence of a transport element, that (if given), is expressed by the IfcTransportElementType. ",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcproductextension/lexical/ifctransportelement.htm
+IfcProductExtension,Which types of transport element are there?,"ELEVATOR Elevator or lift being a transport device to move people of good vertically.
+ESCALATOR Escalator being a transport device to move people. It consists of individual linked steps that move up and down on tracks while keeping the threads horizontal.
+MOVINGWALKWAY Moving walkway being a transport device to move people horizontally or on an incline. It is a slow conveyor belt that transports people.
+CRANEWAY A crane way system, normally including the crane rails, fasteners and the crane. It is primarily used to move heavy goods in a factory or other industry buildings.
+LIFTINGGEAR A device used for lifting or lowering heavy goods. It may be manually operated or electrically or pneumatically driven.",,,,http://www.buildingsmart-tech.org/ifc/IFC4/Add1/html/schema/ifcproductextension/lexical/ifctransportelementtypeenum.htm
\ No newline at end of file
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+Competency Question;Answer;;;;;;;;;;;;;;;;;;
+Which properties has a tank?;"- access type: {none, loose cover, manhole, secured cover, secured cover with manhole, etc.}. Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.
;storage type: {ice, water, rain water, waste water, potable water, fuel, oil, etc.}. Defines the general material category intended to be stored.
;nominal lenght or diameter: real. The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).
;nominal width or diameter: real. The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).
;nominal depth: real. The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).
;nominal capacity: real. The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).
;effective capacity: real. The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3
;operating wight: real. Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).
;pattern type: {horizontal cylinder, vertical cylinder, rectangular, etc.}. Defines the types of pattern (or shape of a tank that may be specified.
;end shape type: {concave convex, flat convex, convex convex, concave flat, flat flat, etc.}. Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top;for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5
;first curvature radius: real. FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).
;second curvature radius: real. SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).
;number of sections: integer. Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.";;;;;;;;;;;;;;;;;;
+Which properties has a Humidifier?;"- application: {portable, fixed, etc.}. Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.
;weight: real. The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).
;nominal moisture gain: real. Nominal rate of water vapor added into the airstream. Usually measured in kg/s.
;nominal air flow rate: real. Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.
;internal control: {on off, stepped, modulating, none, etc.}. Internal modulation control.
;water requirement: ratio. Make-up water requirement. Usually measured in m3/s.";;;;;;;;;;;;;;;;;;
+Which properties has a Heat exchanger?;- arrangement: {counter flow, cross flow, parallel flow, multipass, etc.}. Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.;;;;;;;;;;;;;;;;;;
+Which properties has a transport element?;"- capacity people: natural. Capacity of the transportation element measured in numbers of person.
;capacity weight: real. Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).
;fire exit: boolean. Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.";;;;;;;;;;;;;;;;;;
+Which properties has a Lamp?;"- Contributed luminous flux: real. Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).
;Light emitter nominal power: real. Light emitter nominal power. Usually measured in Watts (W, J/s).
;Lamp maintenance factor: real. Non recoverable losses of luminous flux of a lamp due to lamp depreciation;i.e. the decreasing of light output of a luminaire due to aging and dirt.
;Lamp ballast type: {conventional, eletronic, lowloss, etc.} The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).
;Lamp compensation type: {capacitive, inductive, etc.} Identifies the form of compensation used for power factor correction and radio suppression.
;Color appearance: string. In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white;the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.
;Spectrum: real-real.The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.
;Color tempeature: real. The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).
;Color rendering index: integer. The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.";;;;;;;;;;;;;;;;;;
+Which properties has a Electric generator?;"- Electric generator efficiency: positive ratio. The ratio of output capacity to intake capacity.
;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).";;;;;;;;;;;;;;;;;;
+Which properties has a Burner?;- energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;;;;;;;;;;;;;;;;;
+Which properties has a Engine?;- energy source: {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.}. The source of energy.;;;;;;;;;;;;;;;;;;
+Which properties has a Evaporator?;"- evaporation medium type: {cold liquid, cold air, etc.}. ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.
;evaporation coolant: {water, brine, clycol, etc.}. The fluid used for the coolant in the evaporator.
;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).
;internal surface area: real. Internal surface area. Usually measured in square metre (m2).
;internal refrigerant volume: real. Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).
;internal water volume: real. Internal volume of evaporator (water side). Usually measured in cubic metre (m3).
;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.";;;;;;;;;;;;;;;;;;
+Which properties has an actuator?;"- Fail position: {fail open, fail closed}. Specifies the required fail-safe position of the actuator.
;Manual override: boolean. Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.";;;;;;;;;;;;;;;;;;
+Which properties has a Evaporative cooler?;"- flow arrangement: {counter flow, cross flow, parallel flow, etc.}. CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.
;heat exchange area: real. Heat exchange area. Usually measured in square metre (m2).
;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;water requirement: real. Make-up water requirement. Usually measured in m3/s.";;;;;;;;;;;;;;;;;;
+Which properties has a Pump?;"- flow rate range: [real, real]. Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.
;flow resistance range: [real, real]. Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).
;connection size: positive real. The connection size of the to and from the pump. Usually measured in millimeters (mm).
;temperature range: [real, real]. Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).
;net positive suction head: real. Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).
;nomminal rotation speed: real. Pump rotational speed under nominal conditions. Usually measured in cycles/s.";;;;;;;;;;;;;;;;;;
+Which properties has a Air to air heat recovery?;"- Heat transfer type enum: {sensible, laltent, etc.}. Type of heat transfer between the two air streams.
;has defrost: booelan. has the heat exchanger has defrost function or not.
;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;primary air flow rate range: [real, real]. possible range of primary airflow that can be delivered. Usually measured in m3/s.
;secondary air flow rate range: [real, real]. possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).";;;;;;;;;;;;;;;;;;
+Which properties has a Duct silencer?;"- hydraulic diameter: real. Hydraulic diameter. Usually measured in millimeters (mm).
;lenght: real. The finished length of the silencer. Usually measured in millimeters (mm).
;weight: real. The weight of the silencer. Usually measured in kilograms (kg) or grams (g).
;air flow rate range: [real, real]. Possible range of airflow that can be delivered. Usually measured in m3/s.
;working pressure range: [real, real]. Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).
;temperature range: [real, real]. Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).
;has exterior insulation: boolean. TRUE if the silencer has exterior insulation. FALSE if it does not.";;;;;;;;;;;;;;;;;;
+Which properties has a Cooled beam?;"- is free hanging: boolean. Is it free hanging type (not mounted in a false ceiling)?
;water flow control system type: {none, on off valve, 2 way valve, 3 way valve, etc.} Factory fitted waterflow control system.
;water pressure range: [real, real]. Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).
;nominal cooling capacity: real. Nominal cooling capacity. Usually measured in Watts (W, J/s).
;nominal sorrounding temperature cooling: real. Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal sorrounding humidity cooling: normalised ratio. Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal supply water temperature cooling: real. Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal return water temperature cooling: real. Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal water flow cooling. real. Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.
;nominal heating capacity: real. Nominal heating capacity. Usually measured in Watts (W, J/s).
;nominal sorrounding temperature heating: real. Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
;nominal supply water temperature heating: real. Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
;nominal return water temperature heating: real. Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
;nominal water flow heating: real. Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.
;integrated lighting type: {none, direct, indirect, direct and indirect, etc.}. Integrated lighting in cooled beam.
;pipe connection enum: {straight, right, left, top, etc.}. The manner in which the pipe connection is made to the cooled beam.
;finish color: string. Finish color for cooled beam.
;coil lenght: positive real. Length of coil. Usually measured in millimeters (mm).
;coil width: positive real. Width of coil. Usually measured in millimeters (mm";;;;;;;;;;;;;;;;;;
+Which properties has a Outlet?;"- Is pluggable outlet: logical. Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).
;Number os sockets: integer. The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.";;;;;;;;;;;;;;;;;;
+Which properties has a Electric motor?;"- Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
;Electric motor efficiency: positive ratio. The ratio of output capacity to intake capacity.
;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
;Starting time: real. The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.
;Te time: real. The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.
;Locked rotor current. real. Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).
;Motor enclosure type: {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.} A list of the available types of motor enclosure from which that required may be selected.
;Frame size: string. Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.
;Is guarded: boolean. Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).
;Has part winding: boolean. Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .";;;;;;;;;;;;;;;;;;
+Which properties has a audio visual appliance?;"- Media source: Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).
;Audio volume: real. Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.";;;;;;;;;;;;;;;;;;
+Which properties has a Fan?;"- motor drive type: {direct drive, belt drive, coupling, etc.}. Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type.
;capacity control type: {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.}. InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.
;operation temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.
;nominal total pressure: real. Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).
;nominal static pressure: real. The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).
;nominal rotation speed: real. Nominal fan wheel speed. Usually measured in cycles/s.
;nominal power rate: real. Nominal fan power rate.Usually measured in Watts (W, J/s).
;operational riterial: real. Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.";;;;;;;;;;;;;;;;;;
+Which properties has a Interceptor?;"- nominal body lenght: real. Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
;nominal body width: real. Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
;nominal body depth: real. Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
;inlet connection size: real. Size of the inlet connection. Usually measured in millimeters (mm).
;outlet connection size: real. Size of the outlet connection. Usually measured in millimeters (mm).
;cover lenght: real. The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).
;cover width: real. The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).
;ventilating pipe size: real. Size of the ventilating pipe(s). Usually measured in millimeters (mm).";;;;;;;;;;;;;;;;;;
+Which properties has a Chiller?;"- nominal capacity: real. Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).
;nominal efficiency: positive ratio. Nominal chiller efficiency under nominal conditions.
;nominal condensing temperature: real. Chiller condensing temperature. Usually measured in degrees Kelvin (K).
;nominal evaporating temmperature. real. Chiller evaporating temperature.Usually measured in degrees Kelvin (K).
;nominal heat rejection rate: real. Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).
;nominal power consumption: real. Nominal total power consumption. Usually measured in Watts (W, J/s).";;;;;;;;;;;;;;;;;;
+Which properties has a Cooling tower?;"- nominal capcity: real. Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).
;circuit type: {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.}. OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.
;flow arrangement: {counter flow, cross flow, parallel flow, etc.} CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.
;spray type: {spray filled, splash type fill, film type fill, etc.} SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.
;capacity control: {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.}. FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.
;control strategy: {fixed existing water temp, wer bulb temp reset, etc.}. FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.
;number of cells: integer. Number of cells in one cooling tower unit.
;basin reserve volume: real. Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).
;lift elevation difference: real. Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).
;water requirement: real. Make-up water requirements. Usually measured in m3/s.
;operation temperature range: real. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;ambient design dry bulb temperature: real. Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
;ambient design wet bulb temperature: real. Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).";;;;;;;;;;;;;;;;;;
+Which properties has a Electric flow storage device?;"- Nominal supply voltage: real. The nominal voltage of the supply. Usually measured in Volts (V, W/A).
;Nominal lsupply voltage offset: real interval. The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.
;Nominal frequency. real. The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).";;;;;;;;;;;;;;;;;;
+Which properties has a Switching device?;"- Number of gangs: integer. Number of gangs/buttons on this switch.
;Switch function: {on off switch, intermediate switch, double throw switch, etc.}. Indicates types of switches which differs in functionality.
;Has lock: boolean. Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).
;is illuminated: boolean. An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).
;Legend: string. A text inscribed or applied to the switch as a legend to indicate purpose or function.
;Set point: . Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.";;;;;;;;;;;;;;;;;;
+Which properties has a Tube bundle?;"- number of rows: integer. Number of tube rows in the tube bundle assembly.
;staggered row spacing: real. Staggered tube row spacing. Usually measured in millimeters (mm).
;in line row spacing:r eal. In-line tube row spacing. Usually measured in millimeters (mm).
;number of circuits: integer. Number of parallel fluid tube circuits.
;fouling factor: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
;thermal conductivity: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
;lenght: real. Length of the tubes in the tube bundle. Usually measured in millimeters (mm).
;volumen: real. Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).
;nominal diameter: real. Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).
;outside diameter: real. Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
;inside diameter: real. Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
;horizontal spacing: real. Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).
;vertical spacing: real. Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).
;has turbulator: boolean. TRUE if the tube has a turbulator, FALSE if it does not.";;;;;;;;;;;;;;;;;;
+Which properties has a Damper?;"- operation: {automatic, manual, etc.}. The operational mechanism for the damper operation.
;orientation: {vertical, horizontal, vertical or horizontal, etc.}. The intended orientation for the damper as specified by the manufacturer.
;blade thickness: real. The thickness of the damper blade. Usually measured in millimeters (mm).
;blade action: {folding curtain, parallel, opposed, single, etc.}. Blade action.
;blade shape: {flat, fabricated airfoil, extruded airfoil, etc.}. Blade shape. Flat means triple V-groove.
;blade edge: {crimped, uncrimped, etc.}. Blade edge.
;number of blades: integer. Number of blades.
;face area: real. Face area open to the airstream. Usually measured in square metre (m2).
;maximum air flow rate: real. Maximum allowable air flow rate. Usually measured in m3/s.
;temperature range: [real, real]. Temperature range. Usually measured in degrees Kelvin (K).
;maximum working pressure: real. Maximum working pressure. Usually measured in Pascals (Pa, N/m2).
;temperature rating: real. Temperature rating. Usually measured in degrees Kelvin (K).
;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.
;open pressure drop: real. Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).
;leakage fully closed: real. Leakage when fully closed. Usually measured in m3/s.
;frame type: string. The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).
;frame depth: real. The length (or depth) of the damper frame. Usually measured in millimeters (mm).
;frame thickness: real. The thickness of the damper frame material. Usually measured in millimeters (mm).
;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).";;;;;;;;;;;;;;;;;;
+Which properties has a Coil?;"- operational temperature range: [real, real]. Allowable operational air temperature range. Usually measured in degrees Kelvin (K).
;air flow rate range: [real, real]. Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.
;nominal sensible capacity: real. Nominal sensible capacity. Usually measured in Watts (W, J/s).
;nominal latent capacity: real. Nominal latent capacity. Usually measured in Watts (W, J/s).
;nominal UA: real. Nominal UA value.
;placement type: {floor, ceiling, unit, etc.} Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL);CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL);UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.";;;;;;;;;;;;;;;;;;
+Which properties has a Space heater?;"- placement type:{baseboard, towel warmer, suspended, wall, etc.}. Indicates how the space heater is designed to be placed.
;temperature classification: {low temperature, high temperature, etc.}. Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.
;heat transfer dimension: {point, path, surface, etc.}. Indicates how heat is transmitted according to the shape of the space heater.
;heat transfer medium: {water, steam, etc.}. Enumeration defining the heat transfer medium if applicable.
;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET;dual-use hydronic/electric heaters shall use ELECTRICITY.
;body mass: real. Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).
;thermal mass heat capacity: real. Product of component mass and specific heat.
;output capacity: real. Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).
;thermal efficiency: normalised ratio. Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.
;number of panels: integer. Number of panels.
;number of sections: integer. Number of vertical sections, measured in the direction of flow.";;;;;;;;;;;;;;;;;;
+Which properties has a Compressor?;"- power source: {motor driven, engine driven, gas turbine, etc.} Type of power driving the compressor.
;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
;minimun part load ratio: positive ratio. Minimum part load ratio as a fraction of nominal capacity.
;maximum part load ratio: positive ratio. Maximum part load ratio as a fraction of nominal capacity.
;compressor speed: real. Compressor speed. Usually measured in cycles/s.
;nominal capacity: real. Compressor nameplate capacity. Usually measured in Watts (W, J/s).
;ideal capacity: real. Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).
;ideal shaft power: real. Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).
;has hot gas bypass: boolean. Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.
;impeller diameter: positive real. Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).";;;;;;;;;;;;;;;;;;
+Which properties has a Boiler?;"- pressure rating: real. Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).
;operating mode: {fixed, two step modulating, etc.} Identifies the operating mode of the boiler.
;heat transfer surface area: real. Total heat transfer area of the vessel. Usually measured in square metre (m2).
;nominal part load ratio: [real, real]. Allowable part load ratio range.
;water inlet temperature range: [real, real]. Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).
;water storage capacity: real. Water storage capacity. Usually measured in cubic metre (m3).
;is water storage heater: booelan. This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.
;outlet temperature range: [real, real]. Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).
;nominal energy consumption: real. Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).
;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.";;;;;;;;;;;;;;;;;;
+Which properties has a Transformer?;"- Primary voltage: real. The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).
;Secondary voltage: real. The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).
;Primary current: real. The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).
;Secondary current: real. The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).
;Primary frequency: real. The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).
;Secondary frequency: real. The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).
;Primary apparent power: real. The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).
;Secondary apparent power: real. The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).
;Maximum apparent power: real. Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).
;Secondary current type: {AC, DC}. A list of the secondary current types that can result from transformer output.
;Short circuit voltage. complex number. A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.
;Real impedance ratio: real ratio. The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
;Imaginary impedance ratio: real ratio. The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
;Transformer vector group: {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.}. List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer);The connectivity is only relevant for three-phase transformers.
;Is neutral primary terminal available: boolean. An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).
;Is neutral secondary terminal available: boolean. An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).";;;;;;;;;;;;;;;;;;
+Which properties has a Flow meter?;"- read out type: {dial, digital, etc.}. Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.
;remote reading: booelan. Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).";;;;;;;;;;;;;;;;;;
+Which properties has a Condenser?;"- refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).
;internal surface area: real. Internal surface area. Usually measured in square metre (m2).
;internal refrigerant volume: real. Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).
;internal water volume: real. Internal volume of condenser (water side). Usually measured in cubic metre (m3).
;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.";;;;;;;;;;;;;;;;;;
+Which properties has a shading device?;"- Shading device type: {fixed, movable, overhang, sidefin, etc.]. Specifies the type of shading device.
;Is external: boolean. Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.
;Mechanical operated: boolean. Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).
;Thermal transmittance: real. IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.
;Solar transmittance: positive ratio. (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
;Visible light transmittance: positive ratio. Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.
;Solar reflectance: positive ratio. (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
;Visible light reflectance: positive ratio. Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.
;Roughness: string. A measure of the vertical deviations of the surface.";;;;;;;;;;;;;;;;;;
+Which properties has a protective device tripping unit?;"- Standard: string. The designation of the standard applicable for the definition of the characteristics of the tripping_unit.
;Limiting terminal size: real. The maximum terminal size capacity of the device. Usually measured in square metre (m2).";;;;;;;;;;;;;;;;;;
+Which properties has a Valve?;"- valve pattern: {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.}. The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.
;valve operation: {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.}. The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.
;valve mechanism: {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.}. The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.
;size: real. The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).
;test pressure: real. The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).
;working pressure: real. The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).
;flow coefficient: real. Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.
;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).";;;;;;;;;;;;;;;;;;
+Which properties has a Vibration isolator?;"- vibration transmissibility: positive ratio. The vibration transmissibility percentage.
;isolator static deflection: real. Static deflection of the vibration isolator. Usually measured in millimeters (mm).
;isolator compressibility: real ratio. The compressibility of the vibration isolator.
;height: real. Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).
;maximum supported weight: real. The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).";;;;;;;;;;;;;;;;;;
+Which properties has a Filter?;"- weight: real. Weight of filter. Usually measured in kilograms (kg) or grams (g).
;initial resistance: real. Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
;final resistance: real. Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
;operation temperature range: [real, real]. Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).
;flow rate range: [real, real]. Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.
;nominal filter face velocity: real. Filter face velocity. Usually measured in m/s.
;nominal media surface velocity: real. Average fluid velocity at the media surface. Usually measured in m/s.
;nominal pressure drop: real. Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).
;nominal flow rate: real. Nominal fluid flow rate through the filter. Usually measured in m3/s.
;nominal particle geometric mean diameter: real. Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).
;nominal particle geometric standard deviation: real. Particle geometric standard deviation associated with nominal efficiency. ";;;;;;;;;;;;;;;;;;
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diff --git a/SAREF4BLD/requirements/Properties1.csv b/SAREF4BLD/requirements/Properties1.csv
new file mode 100644
index 0000000000000000000000000000000000000000..3914282c6d946a2dff50fadbdd5a79e7b9e92dc3
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+++ b/SAREF4BLD/requirements/Properties1.csv
@@ -0,0 +1,39 @@
+Competency Question;Answer;;;;;;;;;;;;;;;;;;
+Which properties has a tank?;- access type: {none, loose cover, manhole, secured cover, secured cover with manhole, etc.}. Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.
;storage type: {ice, water, rain water, waste water, potable water, fuel, oil, etc.}. Defines the general material category intended to be stored.
;nominal lenght or diameter: real. The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).
;nominal width or diameter: real. The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).
;nominal depth: real. The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).
;nominal capacity: real. The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).
;effective capacity: real. The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3
;operating wight: real. Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).
;pattern type: {horizontal cylinder, vertical cylinder, rectangular, etc.}. Defines the types of pattern (or shape of a tank that may be specified.
;end shape type: {concave convex, flat convex, convex convex, concave flat, flat flat, etc.}. Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top;for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5
;first curvature radius: real. FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).
;second curvature radius: real. SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).
;number of sections: integer. Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.;;;;;;;;;;;;;;;;;;
+Which properties has a Humidifier?;- application: {portable, fixed, etc.}. Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.
;weight: real. The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).
;nominal moisture gain: real. Nominal rate of water vapor added into the airstream. Usually measured in kg/s.
;nominal air flow rate: real. Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.
;internal control: {on off, stepped, modulating, none, etc.}. Internal modulation control.
;water requirement: ratio. Make-up water requirement. Usually measured in m3/s.;;;;;;;;;;;;;;;;;;
+Which properties has a Heat exchanger?;- arrangement: {counter flow, cross flow, parallel flow, multipass, etc.}. Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.;;;;;;;;;;;;;;;;;;
+Which properties has a transport element?;- capacity people: natural. Capacity of the transportation element measured in numbers of person.
;capacity weight: real. Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).
;fire exit: boolean. Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.;;;;;;;;;;;;;;;;;;
+Which properties has a Lamp?;- Contributed luminous flux: real. Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).
;Light emitter nominal power: real. Light emitter nominal power. Usually measured in Watts (W, J/s).
;Lamp maintenance factor: real. Non recoverable losses of luminous flux of a lamp due to lamp depreciation;i.e. the decreasing of light output of a luminaire due to aging and dirt.
;Lamp ballast type: {conventional, eletronic, lowloss, etc.} The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).
;Lamp compensation type: {capacitive, inductive, etc.} Identifies the form of compensation used for power factor correction and radio suppression.
;Color appearance: string. In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white;the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.
;Spectrum: real-real.The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.
;Color tempeature: real. The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).
;Color rendering index: integer. The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.;;;;;;;;;;;;;;;;;;
+Which properties has a Electric generator?;- Electric generator efficiency: positive ratio. The ratio of output capacity to intake capacity.
;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).;;;;;;;;;;;;;;;;;;
+Which properties has a Burner?;- energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;;;;;;;;;;;;;;;;;
+Which properties has a Engine?;- energy source: {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.}. The source of energy.;;;;;;;;;;;;;;;;;;
+Which properties has a Evaporator?;- evaporation medium type: {cold liquid, cold air, etc.}. ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.
;evaporation coolant: {water, brine, clycol, etc.}. The fluid used for the coolant in the evaporator.
;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).
;internal surface area: real. Internal surface area. Usually measured in square metre (m2).
;internal refrigerant volume: real. Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).
;internal water volume: real. Internal volume of evaporator (water side). Usually measured in cubic metre (m3).
;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.;;;;;;;;;;;;;;;;;;
+Which properties has an actuator?;- Fail position: {fail open, fail closed}. Specifies the required fail-safe position of the actuator.
;Manual override: boolean. Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.;;;;;;;;;;;;;;;;;;
+Which properties has a Evaporative cooler?;- flow arrangement: {counter flow, cross flow, parallel flow, etc.}. CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.
;heat exchange area: real. Heat exchange area. Usually measured in square metre (m2).
;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;water requirement: real. Make-up water requirement. Usually measured in m3/s.;;;;;;;;;;;;;;;;;;
+Which properties has a Pump?;- flow rate range: [real, real]. Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.
;flow resistance range: [real, real]. Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).
;connection size: positive real. The connection size of the to and from the pump. Usually measured in millimeters (mm).
;temperature range: [real, real]. Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).
;net positive suction head: real. Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).
;nomminal rotation speed: real. Pump rotational speed under nominal conditions. Usually measured in cycles/s.;;;;;;;;;;;;;;;;;;
+Which properties has a Air to air heat recovery?;- Heat transfer type enum: {sensible, laltent, etc.}. Type of heat transfer between the two air streams.
;has defrost: booelan. has the heat exchanger has defrost function or not.
;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;primary air flow rate range: [real, real]. possible range of primary airflow that can be delivered. Usually measured in m3/s.
;secondary air flow rate range: [real, real]. possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).;;;;;;;;;;;;;;;;;;
+Which properties has a Duct silencer?;- hydraulic diameter: real. Hydraulic diameter. Usually measured in millimeters (mm).
;lenght: real. The finished length of the silencer. Usually measured in millimeters (mm).
;weight: real. The weight of the silencer. Usually measured in kilograms (kg) or grams (g).
;air flow rate range: [real, real]. Possible range of airflow that can be delivered. Usually measured in m3/s.
;working pressure range: [real, real]. Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).
;temperature range: [real, real]. Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).
;has exterior insulation: boolean. TRUE if the silencer has exterior insulation. FALSE if it does not.;;;;;;;;;;;;;;;;;;
+Which properties has a Cooled beam?;- is free hanging: boolean. Is it free hanging type (not mounted in a false ceiling)?
;water flow control system type: {none, on off valve, 2 way valve, 3 way valve, etc.} Factory fitted waterflow control system.
;water pressure range: [real, real]. Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).
;nominal cooling capacity: real. Nominal cooling capacity. Usually measured in Watts (W, J/s).
;nominal sorrounding temperature cooling: real. Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal sorrounding humidity cooling: normalised ratio. Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal supply water temperature cooling: real. Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal return water temperature cooling: real. Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
;nominal water flow cooling. real. Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.
;nominal heating capacity: real. Nominal heating capacity. Usually measured in Watts (W, J/s).
;nominal sorrounding temperature heating: real. Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
;nominal supply water temperature heating: real. Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
;nominal return water temperature heating: real. Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
;nominal water flow heating: real. Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.
;integrated lighting type: {none, direct, indirect, direct and indirect, etc.}. Integrated lighting in cooled beam.
;pipe connection enum: {straight, right, left, top, etc.}. The manner in which the pipe connection is made to the cooled beam.
;finish color: string. Finish color for cooled beam.
;coil lenght: positive real. Length of coil. Usually measured in millimeters (mm).
;coil width: positive real. Width of coil. Usually measured in millimeters (mm;;;;;;;;;;;;;;;;;;
+Which properties has a Outlet?;- Is pluggable outlet: logical. Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).
;Number os sockets: integer. The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.;;;;;;;;;;;;;;;;;;
+Which properties has a Electric motor?;- Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
;Electric motor efficiency: positive ratio. The ratio of output capacity to intake capacity.
;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
;Starting time: real. The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.
;Te time: real. The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.
;Locked rotor current. real. Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).
;Motor enclosure type: {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.} A list of the available types of motor enclosure from which that required may be selected.
;Frame size: string. Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.
;Is guarded: boolean. Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).
;Has part winding: boolean. Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .;;;;;;;;;;;;;;;;;;
+Which properties has a audio visual appliance?;- Media source: Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).
;Audio volume: real. Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.;;;;;;;;;;;;;;;;;;
+Which properties has a Fan?;- motor drive type: {direct drive, belt drive, coupling, etc.}. Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type.
;capacity control type: {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.}. InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.
;operation temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.
;nominal total pressure: real. Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).
;nominal static pressure: real. The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).
;nominal rotation speed: real. Nominal fan wheel speed. Usually measured in cycles/s.
;nominal power rate: real. Nominal fan power rate.Usually measured in Watts (W, J/s).
;operational riterial: real. Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.;;;;;;;;;;;;;;;;;;
+Which properties has a Interceptor?;- nominal body lenght: real. Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
;nominal body width: real. Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
;nominal body depth: real. Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
;inlet connection size: real. Size of the inlet connection. Usually measured in millimeters (mm).
;outlet connection size: real. Size of the outlet connection. Usually measured in millimeters (mm).
;cover lenght: real. The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).
;cover width: real. The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).
;ventilating pipe size: real. Size of the ventilating pipe(s). Usually measured in millimeters (mm).;;;;;;;;;;;;;;;;;;
+Which properties has a Chiller?;- nominal capacity: real. Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).
;nominal efficiency: positive ratio. Nominal chiller efficiency under nominal conditions.
;nominal condensing temperature: real. Chiller condensing temperature. Usually measured in degrees Kelvin (K).
;nominal evaporating temmperature. real. Chiller evaporating temperature.Usually measured in degrees Kelvin (K).
;nominal heat rejection rate: real. Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).
;nominal power consumption: real. Nominal total power consumption. Usually measured in Watts (W, J/s).;;;;;;;;;;;;;;;;;;
+Which properties has a Cooling tower?;- nominal capcity: real. Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).
;circuit type: {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.}. OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.
;flow arrangement: {counter flow, cross flow, parallel flow, etc.} CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.
;spray type: {spray filled, splash type fill, film type fill, etc.} SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.
;capacity control: {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.}. FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.
;control strategy: {fixed existing water temp, wer bulb temp reset, etc.}. FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.
;number of cells: integer. Number of cells in one cooling tower unit.
;basin reserve volume: real. Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).
;lift elevation difference: real. Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).
;water requirement: real. Make-up water requirements. Usually measured in m3/s.
;operation temperature range: real. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
;ambient design dry bulb temperature: real. Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
;ambient design wet bulb temperature: real. Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).;;;;;;;;;;;;;;;;;;
+Which properties has a Electric flow storage device?;- Nominal supply voltage: real. The nominal voltage of the supply. Usually measured in Volts (V, W/A).
;Nominal lsupply voltage offset: real interval. The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.
;Nominal frequency. real. The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).;;;;;;;;;;;;;;;;;;
+Which properties has a Switching device?;- Number of gangs: integer. Number of gangs/buttons on this switch.
;Switch function: {on off switch, intermediate switch, double throw switch, etc.}. Indicates types of switches which differs in functionality.
;Has lock: boolean. Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).
;is illuminated: boolean. An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).
;Legend: string. A text inscribed or applied to the switch as a legend to indicate purpose or function.
;Set point: . Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.;;;;;;;;;;;;;;;;;;
+Which properties has a Tube bundle?;- number of rows: integer. Number of tube rows in the tube bundle assembly.
;staggered row spacing: real. Staggered tube row spacing. Usually measured in millimeters (mm).
;in line row spacing:r eal. In-line tube row spacing. Usually measured in millimeters (mm).
;number of circuits: integer. Number of parallel fluid tube circuits.
;fouling factor: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
;thermal conductivity: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
;lenght: real. Length of the tubes in the tube bundle. Usually measured in millimeters (mm).
;volumen: real. Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).
;nominal diameter: real. Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).
;outside diameter: real. Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
;inside diameter: real. Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
;horizontal spacing: real. Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).
;vertical spacing: real. Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).
;has turbulator: boolean. TRUE if the tube has a turbulator, FALSE if it does not.;;;;;;;;;;;;;;;;;;
+Which properties has a Damper?;- operation: {automatic, manual, etc.}. The operational mechanism for the damper operation.
;orientation: {vertical, horizontal, vertical or horizontal, etc.}. The intended orientation for the damper as specified by the manufacturer.
;blade thickness: real. The thickness of the damper blade. Usually measured in millimeters (mm).
;blade action: {folding curtain, parallel, opposed, single, etc.}. Blade action.
;blade shape: {flat, fabricated airfoil, extruded airfoil, etc.}. Blade shape. Flat means triple V-groove.
;blade edge: {crimped, uncrimped, etc.}. Blade edge.
;number of blades: integer. Number of blades.
;face area: real. Face area open to the airstream. Usually measured in square metre (m2).
;maximum air flow rate: real. Maximum allowable air flow rate. Usually measured in m3/s.
;temperature range: [real, real]. Temperature range. Usually measured in degrees Kelvin (K).
;maximum working pressure: real. Maximum working pressure. Usually measured in Pascals (Pa, N/m2).
;temperature rating: real. Temperature rating. Usually measured in degrees Kelvin (K).
;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.
;open pressure drop: real. Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).
;leakage fully closed: real. Leakage when fully closed. Usually measured in m3/s.
;frame type: string. The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).
;frame depth: real. The length (or depth) of the damper frame. Usually measured in millimeters (mm).
;frame thickness: real. The thickness of the damper frame material. Usually measured in millimeters (mm).
;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).;;;;;;;;;;;;;;;;;;
+Which properties has a Coil?;- operational temperature range: [real, real]. Allowable operational air temperature range. Usually measured in degrees Kelvin (K).
;air flow rate range: [real, real]. Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.
;nominal sensible capacity: real. Nominal sensible capacity. Usually measured in Watts (W, J/s).
;nominal latent capacity: real. Nominal latent capacity. Usually measured in Watts (W, J/s).
;nominal UA: real. Nominal UA value.
;placement type: {floor, ceiling, unit, etc.} Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL);CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL);UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.;;;;;;;;;;;;;;;;;;
+Which properties has a Space heater?;- placement type:{baseboard, towel warmer, suspended, wall, etc.}. Indicates how the space heater is designed to be placed.
;temperature classification: {low temperature, high temperature, etc.}. Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.
;heat transfer dimension: {point, path, surface, etc.}. Indicates how heat is transmitted according to the shape of the space heater.
;heat transfer medium: {water, steam, etc.}. Enumeration defining the heat transfer medium if applicable.
;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET;dual-use hydronic/electric heaters shall use ELECTRICITY.
;body mass: real. Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).
;thermal mass heat capacity: real. Product of component mass and specific heat.
;output capacity: real. Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).
;thermal efficiency: normalised ratio. Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.
;number of panels: integer. Number of panels.
;number of sections: integer. Number of vertical sections, measured in the direction of flow.;;;;;;;;;;;;;;;;;;
+Which properties has a Compressor?;- power source: {motor driven, engine driven, gas turbine, etc.} Type of power driving the compressor.
;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
;minimun part load ratio: positive ratio. Minimum part load ratio as a fraction of nominal capacity.
;maximum part load ratio: positive ratio. Maximum part load ratio as a fraction of nominal capacity.
;compressor speed: real. Compressor speed. Usually measured in cycles/s.
;nominal capacity: real. Compressor nameplate capacity. Usually measured in Watts (W, J/s).
;ideal capacity: real. Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).
;ideal shaft power: real. Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).
;has hot gas bypass: boolean. Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.
;impeller diameter: positive real. Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).;;;;;;;;;;;;;;;;;;
+Which properties has a Boiler?;- pressure rating: real. Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).
;operating mode: {fixed, two step modulating, etc.} Identifies the operating mode of the boiler.
;heat transfer surface area: real. Total heat transfer area of the vessel. Usually measured in square metre (m2).
;nominal part load ratio: [real, real]. Allowable part load ratio range.
;water inlet temperature range: [real, real]. Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).
;water storage capacity: real. Water storage capacity. Usually measured in cubic metre (m3).
;is water storage heater: booelan. This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.
;outlet temperature range: [real, real]. Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).
;nominal energy consumption: real. Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).
;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;;;;;;;;;;;;;;;;;
+Which properties has a Transformer?;- Primary voltage: real. The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).
;Secondary voltage: real. The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).
;Primary current: real. The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).
;Secondary current: real. The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).
;Primary frequency: real. The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).
;Secondary frequency: real. The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).
;Primary apparent power: real. The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).
;Secondary apparent power: real. The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).
;Maximum apparent power: real. Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).
;Secondary current type: {AC, DC}. A list of the secondary current types that can result from transformer output.
;Short circuit voltage. complex number. A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.
;Real impedance ratio: real ratio. The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
;Imaginary impedance ratio: real ratio. The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
;Transformer vector group: {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.}. List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer);The connectivity is only relevant for three-phase transformers.
;Is neutral primary terminal available: boolean. An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).
;Is neutral secondary terminal available: boolean. An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).;;;;;;;;;;;;;;;;;;
+Which properties has a Flow meter?;- read out type: {dial, digital, etc.}. Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.
;remote reading: booelan. Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).;;;;;;;;;;;;;;;;;;
+Which properties has a Condenser?;- refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).
;internal surface area: real. Internal surface area. Usually measured in square metre (m2).
;internal refrigerant volume: real. Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).
;internal water volume: real. Internal volume of condenser (water side). Usually measured in cubic metre (m3).
;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.;;;;;;;;;;;;;;;;;;
+Which properties has a shading device?;- Shading device type: {fixed, movable, overhang, sidefin, etc.]. Specifies the type of shading device.
;Is external: boolean. Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.
;Mechanical operated: boolean. Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).
;Thermal transmittance: real. IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.
;Solar transmittance: positive ratio. (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
;Visible light transmittance: positive ratio. Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.
;Solar reflectance: positive ratio. (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
;Visible light reflectance: positive ratio. Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.
;Roughness: string. A measure of the vertical deviations of the surface.;;;;;;;;;;;;;;;;;;
+Which properties has a protective device tripping unit?;- Standard: string. The designation of the standard applicable for the definition of the characteristics of the tripping_unit.
;Limiting terminal size: real. The maximum terminal size capacity of the device. Usually measured in square metre (m2).;;;;;;;;;;;;;;;;;;
+Which properties has a Valve?;- valve pattern: {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.}. The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.
;valve operation: {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.}. The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.
;valve mechanism: {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.}. The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.
;size: real. The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).
;test pressure: real. The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).
;working pressure: real. The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).
;flow coefficient: real. Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.
;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).;;;;;;;;;;;;;;;;;;
+Which properties has a Vibration isolator?;- vibration transmissibility: positive ratio. The vibration transmissibility percentage.
;isolator static deflection: real. Static deflection of the vibration isolator. Usually measured in millimeters (mm).
;isolator compressibility: real ratio. The compressibility of the vibration isolator.
;height: real. Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).
;maximum supported weight: real. The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).;;;;;;;;;;;;;;;;;;
+Which properties has a Filter?;- weight: real. Weight of filter. Usually measured in kilograms (kg) or grams (g).
;initial resistance: real. Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
;final resistance: real. Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
;operation temperature range: [real, real]. Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).
;flow rate range: [real, real]. Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.
;nominal filter face velocity: real. Filter face velocity. Usually measured in m/s.
;nominal media surface velocity: real. Average fluid velocity at the media surface. Usually measured in m/s.
;nominal pressure drop: real. Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).
;nominal flow rate: real. Nominal fluid flow rate through the filter. Usually measured in m3/s.
;nominal particle geometric mean diameter: real. Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).
;nominal particle geometric standard deviation: real. Particle geometric standard deviation associated with nominal efficiency. ;;;;;;;;;;;;;;;;;;
\ No newline at end of file
diff --git a/SAREF4BLD/requirements/Properties2.csv b/SAREF4BLD/requirements/Properties2.csv
new file mode 100644
index 0000000000000000000000000000000000000000..fd17845277bb1d6ad029fedd36cf016a2e297823
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+++ b/SAREF4BLD/requirements/Properties2.csv
@@ -0,0 +1,278 @@
+Which properties has a tank?;tank;access type: {none, loose cover, manhole, secured cover, secured cover with manhole, etc.}. Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.;;
+Which properties has a tank?;tank;storage type: {ice, water, rain water, waste water, potable water, fuel, oil, etc.}. Defines the general material category intended to be stored.;;
+Which properties has a tank?;tank;nominal lenght or diameter: real. The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;nominal width or diameter: real. The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;nominal depth: real. The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;nominal capacity: real. The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).;;
+Which properties has a tank?;tank;effective capacity: real. The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3;;
+Which properties has a tank?;tank;operating wight: real. Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a tank?;tank;pattern type: {horizontal cylinder, vertical cylinder, rectangular, etc.}. Defines the types of pattern (or shape of a tank that may be specified.;;
+Which properties has a tank?;tank;end shape type: {concave convex, flat convex, convex convex, concave flat, flat flat, etc.}. Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top;for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5;
+Which properties has a tank?;tank;first curvature radius: real. FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;second curvature radius: real. SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;number of sections: integer. Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.;;
+Which properties has a Humidifier?;Humidifier;application: {portable, fixed, etc.}. Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.;;
+Which properties has a Humidifier?;Humidifier;weight: real. The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Humidifier?;Humidifier;nominal moisture gain: real. Nominal rate of water vapor added into the airstream. Usually measured in kg/s.;;
+Which properties has a Humidifier?;Humidifier;nominal air flow rate: real. Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.;;
+Which properties has a Humidifier?;Humidifier;internal control: {on off, stepped, modulating, none, etc.}. Internal modulation control.;;
+Which properties has a Humidifier?;Humidifier;water requirement: ratio. Make-up water requirement. Usually measured in m3/s.;;
+Which properties has a Heat exchanger?;Heat exchanger;arrangement: {counter flow, cross flow, parallel flow, multipass, etc.}. Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.;;
+Which properties has a transport element?;transport element;capacity people: natural. capacity of the transportation element measured in numbers of person.;;
+Which properties has a transport element?;transport element;capacity weight: real. Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a transport element?;transport element;fire exit: boolean. Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.;;
+Which properties has a Lamp?;Lamp;Contributed luminous flux: real. Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).;;
+Which properties has a Lamp?;Lamp;Light emitter nominal power: real. Light emitter nominal power. Usually measured in Watts (W, J/s).;;
+Which properties has a Lamp?;Lamp;Lamp maintenance factor: real. Non recoverable losses of luminous flux of a lamp due to lamp depreciation;i.e. the decreasing of light output of a luminaire due to aging and dirt.;
+Which properties has a Lamp?;Lamp;Lamp ballast type: {conventional, eletronic, lowloss, etc.} The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).;;
+Which properties has a Lamp?;Lamp;Lamp compensation type: {capacitive, inductive, etc.} Identifies the form of compensation used for power factor correction and radio suppression.;;
+Which properties has a Lamp?;Lamp;Color appearance: string. In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white;the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.;
+Which properties has a Lamp?;Lamp;Spectrum: real-real.The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.;;
+Which properties has a Lamp?;Lamp;Color tempeature: real. The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).;;
+Which properties has a Lamp?;Lamp;Color rendering index: integer. The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.;;
+Which properties has a Electric generator?;Electric generator;Electric generator efficiency: positive ratio. the ratio of output capacity to intake capacity.;;
+Which properties has a Electric generator?;Electric generator;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.;;
+Which properties has a Electric generator?;Electric generator;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).;;
+Which properties has a Burner?;Burner;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;
+Which properties has a Engine?;Engine;energy source: {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.}. The source of energy.;;
+Which properties has a Evaporator?;Evaporator;evaporation medium type: {cold liquid, cold air, etc.}. ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.;;
+Which properties has a Evaporator?;Evaporator;evaporation coolant: {water, brine, clycol, etc.}. The fluid used for the coolant in the evaporator.;;
+Which properties has a Evaporator?;Evaporator;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.;;
+Which properties has a Evaporator?;Evaporator;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).;;
+Which properties has a Evaporator?;Evaporator;internal surface area: real. Internal surface area. Usually measured in square metre (m2).;;
+Which properties has a Evaporator?;Evaporator;internal refrigerant volume: real. Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).;;
+Which properties has a Evaporator?;Evaporator;internal water volume: real. Internal volume of evaporator (water side). Usually measured in cubic metre (m3).;;
+Which properties has a Evaporator?;Evaporator;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).;;
+Which properties has a Evaporator?;Evaporator;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.;;
+Which properties has an actuator?;Which properties has an actuator;Fail position: {fail open, fail closed}. Specifies the required fail-safe position of the actuator.;;
+Which properties has an actuator?;Which properties has an actuator;Manual override: boolean. Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.;;
+Which properties has a Evaporative cooler?;Evaporative cooler;flow arrangement: {counter flow, cross flow, parallel flow, etc.}. CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.;;
+Which properties has a Evaporative cooler?;Evaporative cooler;heat exchange area: real. Heat exchange area. Usually measured in square metre (m2).;;
+Which properties has a Evaporative cooler?;Evaporative cooler;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Evaporative cooler?;Evaporative cooler;water requirement: real. Make-up water requirement. Usually measured in m3/s.;;
+Which properties has a Pump?;Pump;flow rate range: [real, real]. Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.;;
+Which properties has a Pump?;Pump;flow resistance range: [real, real]. Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Pump?;Pump;connection size: positive real. The connection size of the to and from the pump. Usually measured in millimeters (mm).;;
+Which properties has a Pump?;Pump;temperature range: [real, real]. Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).;;
+Which properties has a Pump?;Pump;net positive suction head: real. Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Pump?;Pump;nomminal rotation speed: real. Pump rotational speed under nominal conditions. Usually measured in cycles/s.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;Heat transfer type enum: {sensible, laltent, etc.}. Type of heat transfer between the two air streams.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;has defrost: booelan. has the heat exchanger has defrost function or not.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;primary air flow rate range: [real, real]. possible range of primary airflow that can be delivered. Usually measured in m3/s.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;secondary air flow rate range: [real, real]. possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Duct silencer?;Duct silencer;hydraulic diameter: real. Hydraulic diameter. Usually measured in millimeters (mm).;;
+Which properties has a Duct silencer?;Duct silencer;lenght: real. The finished length of the silencer. Usually measured in millimeters (mm).;;
+Which properties has a Duct silencer?;Duct silencer;weight: real. The weight of the silencer. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Duct silencer?;Duct silencer;air flow rate range: [real, real]. Possible range of airflow that can be delivered. Usually measured in m3/s.;;
+Which properties has a Duct silencer?;Duct silencer;working pressure range: [real, real]. Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Duct silencer?;Duct silencer;temperature range: [real, real]. Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).;;
+Which properties has a Duct silencer?;Duct silencer;has exterior insulation: boolean. TRUE if the silencer has exterior insulation. FALSE if it does not.;;
+Which properties has a Cooled beam?;Cooled beam;is free hanging: boolean. Is it free hanging type (not mounted in a false ceiling)?;;
+Which properties has a Cooled beam?;Cooled beam;water flow control system type: {none, on off valve, 2 way valve, 3 way valve, etc.} Factory fitted waterflow control system.;;
+Which properties has a Cooled beam?;Cooled beam;water pressure range: [real, real]. Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Cooled beam?;Cooled beam;nominal cooling capacity: real. Nominal cooling capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature cooling: real. Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding humidity cooling: normalised ratio. Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature cooling: real. Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature cooling: real. Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal water flow cooling. real. Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.;;
+Which properties has a Cooled beam?;Cooled beam;nominal heating capacity: real. Nominal heating capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature heating: real. Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature heating: real. Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature heating: real. Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal water flow heating: real. Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.;;
+Which properties has a Cooled beam?;Cooled beam;integrated lighting type: {none, direct, indirect, direct and indirect, etc.}. Integrated lighting in cooled beam.;;
+Which properties has a Cooled beam?;Cooled beam;pipe connection enum: {straight, right, left, top, etc.}. The manner in which the pipe connection is made to the cooled beam.;;
+Which properties has a Cooled beam?;Cooled beam;finish color: string. Finish color for cooled beam.;;
+Which properties has a Cooled beam?;Cooled beam;coil lenght: positive real. Length of coil. Usually measured in millimeters (mm).;;
+Which properties has a Cooled beam?;Cooled beam;coil width: positive real. Width of coil. Usually measured in millimeters (mm;;
+Which properties has a Outlet?;Outlet;Is pluggable outlet: logical. Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).;;
+Which properties has a Outlet?;Outlet;Number os sockets: integer. The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.;;
+Which properties has a Electric motor?;Electric motor;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).;;
+Which properties has a Electric motor?;Electric motor;Electric motor efficiency: positive ratio. The ratio of output capacity to intake capacity.;;
+Which properties has a Electric motor?;Electric motor;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.;;
+Which properties has a Electric motor?;Electric motor;Starting time: real. The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.;;
+Which properties has a Electric motor?;Electric motor;Te time: real. The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.;;
+Which properties has a Electric motor?;Electric motor;Locked rotor current. real. Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).;;
+Which properties has a Electric motor?;Electric motor;Motor enclosure type: {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.} A list of the available types of motor enclosure from which that required may be selected.;;
+Which properties has a Electric motor?;Electric motor;Frame size: string. Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.;;
+Which properties has a Electric motor?;Electric motor;Is guarded: boolean. Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).;;
+Which properties has a Electric motor?;Electric motor;Has part winding: boolean. Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .;;
+Which properties has a audio visual appliance?;audio visual appliance;Media source: Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).;;
+Which properties has a audio visual appliance?;audio visual appliance;Audio volume: real. Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.;;
+Which properties has a Fan?;Fan;motor drive type: {direct drive, belt drive, coupling, etc.}. Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type. ;;
+Which properties has a Fan?;Fan;capacity control type: {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.}. InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.;;
+Which properties has a Fan?;Fan;operation temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Fan?;Fan;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.;;
+Which properties has a Fan?;Fan;nominal total pressure: real. Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Fan?;Fan;nominal static pressure: real. The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Fan?;Fan;nominal rotation speed: real. Nominal fan wheel speed. Usually measured in cycles/s.;;
+Which properties has a Fan?;Fan;nominal power rate: real. Nominal fan power rate.Usually measured in Watts (W, J/s).;;
+Which properties has a Fan?;Fan;operational riterial: real. Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.;;
+Which properties has a Interceptor?;Interceptor;nominal body lenght: real. Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;nominal body width: real. Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;nominal body depth: real. Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;inlet connection size: real. Size of the inlet connection. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;outlet connection size: real. Size of the outlet connection. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;cover lenght: real. The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;cover width: real. The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;ventilating pipe size: real. Size of the ventilating pipe(s). Usually measured in millimeters (mm).;;
+Which properties has a Chiller?;Chiller;nominal capacity: real. Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).;;
+Which properties has a Chiller?;Chiller;nominal efficiency: positive ratio. Nominal chiller efficiency under nominal conditions. ;;
+Which properties has a Chiller?;Chiller;nominal condensing temperature: real. Chiller condensing temperature. Usually measured in degrees Kelvin (K).;;
+Which properties has a Chiller?;Chiller;nominal evaporating temmperature. real. Chiller evaporating temperature.Usually measured in degrees Kelvin (K).;;
+Which properties has a Chiller?;Chiller;nominal heat rejection rate: real. Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).;;
+Which properties has a Chiller?;Chiller;nominal power consumption: real. Nominal total power consumption. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooling tower?;Cooling tower;nominal capcity: real. Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooling tower?;Cooling tower;circuit type: {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.}. OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.;;
+Which properties has a Cooling tower?;Cooling tower;flow arrangement: {counter flow, cross flow, parallel flow, etc.} CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.;;
+Which properties has a Cooling tower?;Cooling tower;spray type: {spray filled, splash type fill, film type fill, etc.} SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.;;
+Which properties has a Cooling tower?;Cooling tower;capacity control: {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.}. FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.;;
+Which properties has a Cooling tower?;Cooling tower;control strategy: {fixed existing water temp, wer bulb temp reset, etc.}. FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.;;
+Which properties has a Cooling tower?;Cooling tower;number of cells: integer. Number of cells in one cooling tower unit.;;
+Which properties has a Cooling tower?;Cooling tower;basin reserve volume: real. Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).;;
+Which properties has a Cooling tower?;Cooling tower;lift elevation difference: real. Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).;;
+Which properties has a Cooling tower?;Cooling tower;water requirement: real. Make-up water requirements. Usually measured in m3/s.;;
+Which properties has a Cooling tower?;Cooling tower;operation temperature range: real. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooling tower?;Cooling tower;ambient design dry bulb temperature: real. Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooling tower?;Cooling tower;ambient design wet bulb temperature: real. Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).;;
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage: real. The nominal voltage of the supply. Usually measured in Volts (V, W/A).;;
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal lsupply voltage offset: real interval. The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.;;
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal frequency. real. The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).;;
+Which properties has a Switching device?;Switching device;Number of gangs: integer. Number of gangs/buttons on this switch.;;
+Which properties has a Switching device?;Switching device;Switch function: {on off switch, intermediate switch, double throw switch, etc.}. Indicates types of switches which differs in functionality.;;
+Which properties has a Switching device?;Switching device;Has lock: boolean. Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).;;
+Which properties has a Switching device?;Switching device;is illuminated: boolean. An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).;;
+Which properties has a Switching device?;Switching device;Legend: string. A text inscribed or applied to the switch as a legend to indicate purpose or function.;;
+Which properties has a Switching device?;Switching device;Set point: . Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.;;
+Which properties has a Tube bundle?;Tube bundle;Number of rows: integer. Number of tube rows in the tube bundle assembly.;;
+Which properties has a Tube bundle?;Tube bundle;staggered row spacing: real. Staggered tube row spacing. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;in line row spacing:r eal. In-line tube row spacing. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;number of circuits: integer. Number of parallel fluid tube circuits.;;
+Which properties has a Tube bundle?;Tube bundle;fouling factor: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.;;
+Which properties has a Tube bundle?;Tube bundle;thermal conductivity: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.;;
+Which properties has a Tube bundle?;Tube bundle;lenght: real. Length of the tubes in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;volumen: real. Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).;;
+Which properties has a Tube bundle?;Tube bundle;nominal diameter: real. Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;outside diameter: real. Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;inside diameter: real. Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;horizontal spacing: real. Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;vertical spacing: real. Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;has turbulator: boolean. TRUE if the tube has a turbulator, FALSE if it does not.;;
+Which properties has a Damper?;Damper;operation: {automatic, manual, etc.}. The operational mechanism for the damper operation.;;
+Which properties has a Damper?;Damper;orientation: {vertical, horizontal, vertical or horizontal, etc.}. The intended orientation for the damper as specified by the manufacturer.;;
+Which properties has a Damper?;Damper;blade thickness: real. The thickness of the damper blade. Usually measured in millimeters (mm).;;
+Which properties has a Damper?;Damper;blade action: {folding curtain, parallel, opposed, single, etc.}. Blade action.;;
+Which properties has a Damper?;Damper;blade shape: {flat, fabricated airfoil, extruded airfoil, etc.}. Blade shape. Flat means triple V-groove.;;
+Which properties has a Damper?;Damper;blade edge: {crimped, uncrimped, etc.}. Blade edge.;;
+Which properties has a Damper?;Damper;number of blades: integer. Number of blades.;;
+Which properties has a Damper?;Damper;face area: real. Face area open to the airstream. Usually measured in square metre (m2).;;
+Which properties has a Damper?;Damper;maximum air flow rate: real. Maximum allowable air flow rate. Usually measured in m3/s.;;
+Which properties has a Damper?;Damper;temperature range: [real, real]. Temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Damper?;Damper;maximum working pressure: real. Maximum working pressure. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Damper?;Damper;temperature rating: real. Temperature rating. Usually measured in degrees Kelvin (K).;;
+Which properties has a Damper?;Damper;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.;;
+Which properties has a Damper?;Damper;open pressure drop: real. Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Damper?;Damper;leakage fully closed: real. Leakage when fully closed. Usually measured in m3/s.;;
+Which properties has a Damper?;Damper;frame type: string. The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).;;
+Which properties has a Damper?;Damper;frame depth: real. The length (or depth) of the damper frame. Usually measured in millimeters (mm).;;
+Which properties has a Damper?;Damper;frame thickness: real. The thickness of the damper frame material. Usually measured in millimeters (mm).;;
+Which properties has a Damper?;Damper;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Coil?;Coil;operational temperature range: [real, real]. Allowable operational air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Coil?;Coil;air flow rate range: [real, real]. Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.;;
+Which properties has a Coil?;Coil;nominal sensible capacity: real. Nominal sensible capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Coil?;Coil;nominal latent capacity: real. Nominal latent capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Coil?;Coil;nominal UA: real. Nominal UA value.;;
+Which properties has a Coil?;Coil;placement type: {floor, ceiling, unit, etc.} Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL);CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL);UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.
+Which properties has a Space heater?;Space heater;placement type:{baseboard, towel warmer, suspended, wall, etc.}. Indicates how the space heater is designed to be placed. ;;
+Which properties has a Space heater?;Space heater;temperature classification: {low temperature, high temperature, etc.}. Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.;;
+Which properties has a Space heater?;Space heater;heat transfer dimension: {point, path, surface, etc.}. Indicates how heat is transmitted according to the shape of the space heater.;;
+Which properties has a Space heater?;Space heater;heat transfer medium: {water, steam, etc.}. Enumeration defining the heat transfer medium if applicable.;;
+Which properties has a Space heater?;Space heater;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET;dual-use hydronic/electric heaters shall use ELECTRICITY.;
+Which properties has a Space heater?;Space heater;body mass: real. Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Space heater?;Space heater;thermal mass heat capacity: real. Product of component mass and specific heat.;;
+Which properties has a Space heater?;Space heater;output capacity: real. Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).;;
+Which properties has a Space heater?;Space heater;thermal efficiency: normalised ratio. Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.;;
+Which properties has a Space heater?;Space heater;number of panels: integer. Number of panels.;;
+Which properties has a Space heater?;Space heater;number of sections: integer. Number of vertical sections, measured in the direction of flow.;;
+Which properties has a Compressor?;Compressor;power source: {motor driven, engine driven, gas turbine, etc.} Type of power driving the compressor.;;
+Which properties has a Compressor?;Compressor;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.;;
+Which properties has a Compressor?;Compressor;minimun part load ratio: positive ratio. Minimum part load ratio as a fraction of nominal capacity.;;
+Which properties has a Compressor?;Compressor;maximum part load ratio: positive ratio. Maximum part load ratio as a fraction of nominal capacity.;;
+Which properties has a Compressor?;Compressor;compressor speed: real. Compressor speed. Usually measured in cycles/s.;;
+Which properties has a Compressor?;Compressor;nominal capacity: real. Compressor nameplate capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Compressor?;Compressor;ideal capacity: real. Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).;;
+Which properties has a Compressor?;Compressor;ideal shaft power: real. Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).;;
+Which properties has a Compressor?;Compressor;has hot gas bypass: boolean. Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.;;
+Which properties has a Compressor?;Compressor;impeller diameter: positive real. Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).;;
+Which properties has a Boiler?;Boiler;pressure rating: real. Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Boiler?;Boiler;operating mode: {fixed, two step modulating, etc.} Identifies the operating mode of the boiler.;;
+Which properties has a Boiler?;Boiler;heat transfer surface area: real. Total heat transfer area of the vessel. Usually measured in square metre (m2).;;
+Which properties has a Boiler?;Boiler;nominal part load ratio: [real, real]. Allowable part load ratio range.;;
+Which properties has a Boiler?;Boiler;water inlet temperature range: [real, real]. Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Boiler?;Boiler;water storage capacity: real. Water storage capacity. Usually measured in cubic metre (m3).;;
+Which properties has a Boiler?;Boiler;is water storage heater: booelan. This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.;;
+Which properties has a Boiler?;Boiler;outlet temperature range: [real, real]. Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).;;
+Which properties has a Boiler?;Boiler;nominal energy consumption: real. Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).;;
+Which properties has a Boiler?;Boiler;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;
+Which properties has a Transformer?;Transformer;Primary voltage: real. The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).;;
+Which properties has a Transformer?;Transformer;Secondary voltage: real. The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).;;
+Which properties has a Transformer?;Transformer;Primary current: real. The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).;;
+Which properties has a Transformer?;Transformer;Secondary current: real. The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).;;
+Which properties has a Transformer?;Transformer;Primary frequency: real. The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).;;
+Which properties has a Transformer?;Transformer;Secondary frequency: real. The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).;;
+Which properties has a Transformer?;Transformer;Primary apparent power: real. The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).;;
+Which properties has a Transformer?;Transformer;Secondary apparent power: real. The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).;;
+Which properties has a Transformer?;Transformer;Maximum apparent power: real. Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).;;
+Which properties has a Transformer?;Transformer;Secondary current type: {AC, DC}. A list of the secondary current types that can result from transformer output.;;
+Which properties has a Transformer?;Transformer;Short circuit voltage. complex number. A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.;;
+Which properties has a Transformer?;Transformer;Real impedance ratio: real ratio. The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.;;
+Which properties has a Transformer?;Transformer;Imaginary impedance ratio: real ratio. The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.;;
+Which properties has a Transformer?;Transformer;Transformer vector group: {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.}. List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer);The connectivity is only relevant for three-phase transformers.;
+Which properties has a Transformer?;Transformer;Is neutral primary terminal available: boolean. An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).;;
+Which properties has a Transformer?;Transformer;Is neutral secondary terminal available: boolean. An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).;;
+Which properties has a Flow meter?;Flow meter;read out type: {dial, digital, etc.}. Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.;;
+Which properties has a Flow meter?;Flow meter;remote reading: booelan. Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).;;
+Which properties has a Condenser?;Condenser;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.;;
+Which properties has a Condenser?;Condenser;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).;;
+Which properties has a Condenser?;Condenser;internal surface area: real. Internal surface area. Usually measured in square metre (m2).;;
+Which properties has a Condenser?;Condenser;internal refrigerant volume: real. Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).;;
+Which properties has a Condenser?;Condenser;internal water volume: real. Internal volume of condenser (water side). Usually measured in cubic metre (m3).;;
+Which properties has a Condenser?;Condenser;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).;;
+Which properties has a Condenser?;Condenser;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.;;
+Which properties has a shading device?;shading device;Shading device type: {fixed, movable, overhang, sidefin, etc.]. Specifies the type of shading device.;;
+Which properties has a shading device?;shading device;Is external: boolean. Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.;;
+Which properties has a shading device?;shading device;Mechanical operated: boolean. Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).;;
+Which properties has a shading device?;shading device;Thermal transmittance: real. IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.;;
+Which properties has a shading device?;shading device;Solar transmittance: positive ratio. (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1;;
+Which properties has a shading device?;shading device;Visible light transmittance: positive ratio. Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.;;
+Which properties has a shading device?;shading device;Solar reflectance: positive ratio. (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1;;
+Which properties has a shading device?;shading device;Visible light reflectance: positive ratio. Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.;;
+Which properties has a shading device?;shading device;Roughness: string. A measure of the vertical deviations of the surface.;;
+Which properties has a protective device tripping unit?;protective device tripping unit;Standard: string. the designation of the Standard applicable for the definition of the characteristics of the tripping_unit.;;
+Which properties has a protective device tripping unit?;protective device tripping unit;Limiting terminal size: real. The maximum terminal size capacity of the device. Usually measured in square metre (m2).;;
+Which properties has a Valve?;Valve;valve pattern: {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.}. The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.;;
+Which properties has a Valve?;Valve;valve operation: {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.}. The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.;;
+Which properties has a Valve?;Valve;valve mechanism: {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.}. The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.;;
+Which properties has a Valve?;Valve;size: real. The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).;;
+Which properties has a Valve?;Valve;test pressure: real. The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Valve?;Valve;working pressure: real. The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Valve?;Valve;flow coefficient: real. Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.;;
+Which properties has a Valve?;Valve;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Vibration isolator?;Vibration isolator;vibration transmissibility: positive ratio. the vibration transmissibility percentage.;;
+Which properties has a Vibration isolator?;Vibration isolator;isolator static deflection: real. Static deflection of the vibration isolator. Usually measured in millimeters (mm).;;
+Which properties has a Vibration isolator?;Vibration isolator;isolator compressibility: real ratio. The compressibility of the vibration isolator.;;
+Which properties has a Vibration isolator?;Vibration isolator;height: real. Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).;;
+Which properties has a Vibration isolator?;Vibration isolator;maximum supported weight: real. The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Filter?;Filter;weight: real. Weight of filter. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Filter?;Filter;initial resistance: real. Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Filter?;Filter;final resistance: real. Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Filter?;Filter;operation temperature range: [real, real]. Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Filter?;Filter;flow rate range: [real, real]. Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.;;
+Which properties has a Filter?;Filter;nominal filter face velocity: real. Filter face velocity. Usually measured in m/s.;;
+Which properties has a Filter?;Filter;nominal media surface velocity: real. Average fluid velocity at the media surface. Usually measured in m/s.;;
+Which properties has a Filter?;Filter;nominal pressure drop: real. Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Filter?;Filter;nominal flow rate: real. Nominal fluid flow rate through the filter. Usually measured in m3/s.;;
+Which properties has a Filter?;Filter;nominal particle geometric mean diameter: real. Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).;;
+Which properties has a Filter?;Filter;nominal particle geometric standard deviation: real. Particle geometric standard deviation associated with nominal efficiency. ;;
\ No newline at end of file
diff --git a/SAREF4BLD/requirements/Properties3.csv b/SAREF4BLD/requirements/Properties3.csv
new file mode 100644
index 0000000000000000000000000000000000000000..fd17845277bb1d6ad029fedd36cf016a2e297823
--- /dev/null
+++ b/SAREF4BLD/requirements/Properties3.csv
@@ -0,0 +1,278 @@
+Which properties has a tank?;tank;access type: {none, loose cover, manhole, secured cover, secured cover with manhole, etc.}. Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.;;
+Which properties has a tank?;tank;storage type: {ice, water, rain water, waste water, potable water, fuel, oil, etc.}. Defines the general material category intended to be stored.;;
+Which properties has a tank?;tank;nominal lenght or diameter: real. The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;nominal width or diameter: real. The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;nominal depth: real. The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;nominal capacity: real. The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).;;
+Which properties has a tank?;tank;effective capacity: real. The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3;;
+Which properties has a tank?;tank;operating wight: real. Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a tank?;tank;pattern type: {horizontal cylinder, vertical cylinder, rectangular, etc.}. Defines the types of pattern (or shape of a tank that may be specified.;;
+Which properties has a tank?;tank;end shape type: {concave convex, flat convex, convex convex, concave flat, flat flat, etc.}. Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top;for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5;
+Which properties has a tank?;tank;first curvature radius: real. FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;second curvature radius: real. SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).;;
+Which properties has a tank?;tank;number of sections: integer. Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.;;
+Which properties has a Humidifier?;Humidifier;application: {portable, fixed, etc.}. Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.;;
+Which properties has a Humidifier?;Humidifier;weight: real. The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Humidifier?;Humidifier;nominal moisture gain: real. Nominal rate of water vapor added into the airstream. Usually measured in kg/s.;;
+Which properties has a Humidifier?;Humidifier;nominal air flow rate: real. Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.;;
+Which properties has a Humidifier?;Humidifier;internal control: {on off, stepped, modulating, none, etc.}. Internal modulation control.;;
+Which properties has a Humidifier?;Humidifier;water requirement: ratio. Make-up water requirement. Usually measured in m3/s.;;
+Which properties has a Heat exchanger?;Heat exchanger;arrangement: {counter flow, cross flow, parallel flow, multipass, etc.}. Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.;;
+Which properties has a transport element?;transport element;capacity people: natural. capacity of the transportation element measured in numbers of person.;;
+Which properties has a transport element?;transport element;capacity weight: real. Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a transport element?;transport element;fire exit: boolean. Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.;;
+Which properties has a Lamp?;Lamp;Contributed luminous flux: real. Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).;;
+Which properties has a Lamp?;Lamp;Light emitter nominal power: real. Light emitter nominal power. Usually measured in Watts (W, J/s).;;
+Which properties has a Lamp?;Lamp;Lamp maintenance factor: real. Non recoverable losses of luminous flux of a lamp due to lamp depreciation;i.e. the decreasing of light output of a luminaire due to aging and dirt.;
+Which properties has a Lamp?;Lamp;Lamp ballast type: {conventional, eletronic, lowloss, etc.} The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).;;
+Which properties has a Lamp?;Lamp;Lamp compensation type: {capacitive, inductive, etc.} Identifies the form of compensation used for power factor correction and radio suppression.;;
+Which properties has a Lamp?;Lamp;Color appearance: string. In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white;the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.;
+Which properties has a Lamp?;Lamp;Spectrum: real-real.The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.;;
+Which properties has a Lamp?;Lamp;Color tempeature: real. The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).;;
+Which properties has a Lamp?;Lamp;Color rendering index: integer. The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.;;
+Which properties has a Electric generator?;Electric generator;Electric generator efficiency: positive ratio. the ratio of output capacity to intake capacity.;;
+Which properties has a Electric generator?;Electric generator;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.;;
+Which properties has a Electric generator?;Electric generator;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).;;
+Which properties has a Burner?;Burner;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;
+Which properties has a Engine?;Engine;energy source: {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.}. The source of energy.;;
+Which properties has a Evaporator?;Evaporator;evaporation medium type: {cold liquid, cold air, etc.}. ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.;;
+Which properties has a Evaporator?;Evaporator;evaporation coolant: {water, brine, clycol, etc.}. The fluid used for the coolant in the evaporator.;;
+Which properties has a Evaporator?;Evaporator;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.;;
+Which properties has a Evaporator?;Evaporator;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).;;
+Which properties has a Evaporator?;Evaporator;internal surface area: real. Internal surface area. Usually measured in square metre (m2).;;
+Which properties has a Evaporator?;Evaporator;internal refrigerant volume: real. Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).;;
+Which properties has a Evaporator?;Evaporator;internal water volume: real. Internal volume of evaporator (water side). Usually measured in cubic metre (m3).;;
+Which properties has a Evaporator?;Evaporator;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).;;
+Which properties has a Evaporator?;Evaporator;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.;;
+Which properties has an actuator?;Which properties has an actuator;Fail position: {fail open, fail closed}. Specifies the required fail-safe position of the actuator.;;
+Which properties has an actuator?;Which properties has an actuator;Manual override: boolean. Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.;;
+Which properties has a Evaporative cooler?;Evaporative cooler;flow arrangement: {counter flow, cross flow, parallel flow, etc.}. CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.;;
+Which properties has a Evaporative cooler?;Evaporative cooler;heat exchange area: real. Heat exchange area. Usually measured in square metre (m2).;;
+Which properties has a Evaporative cooler?;Evaporative cooler;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Evaporative cooler?;Evaporative cooler;water requirement: real. Make-up water requirement. Usually measured in m3/s.;;
+Which properties has a Pump?;Pump;flow rate range: [real, real]. Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.;;
+Which properties has a Pump?;Pump;flow resistance range: [real, real]. Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Pump?;Pump;connection size: positive real. The connection size of the to and from the pump. Usually measured in millimeters (mm).;;
+Which properties has a Pump?;Pump;temperature range: [real, real]. Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).;;
+Which properties has a Pump?;Pump;net positive suction head: real. Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Pump?;Pump;nomminal rotation speed: real. Pump rotational speed under nominal conditions. Usually measured in cycles/s.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;Heat transfer type enum: {sensible, laltent, etc.}. Type of heat transfer between the two air streams.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;has defrost: booelan. has the heat exchanger has defrost function or not.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;primary air flow rate range: [real, real]. possible range of primary airflow that can be delivered. Usually measured in m3/s.;;
+Which properties has a Air to air heat recovery?;Air to air heat recovery;secondary air flow rate range: [real, real]. possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Duct silencer?;Duct silencer;hydraulic diameter: real. Hydraulic diameter. Usually measured in millimeters (mm).;;
+Which properties has a Duct silencer?;Duct silencer;lenght: real. The finished length of the silencer. Usually measured in millimeters (mm).;;
+Which properties has a Duct silencer?;Duct silencer;weight: real. The weight of the silencer. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Duct silencer?;Duct silencer;air flow rate range: [real, real]. Possible range of airflow that can be delivered. Usually measured in m3/s.;;
+Which properties has a Duct silencer?;Duct silencer;working pressure range: [real, real]. Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Duct silencer?;Duct silencer;temperature range: [real, real]. Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).;;
+Which properties has a Duct silencer?;Duct silencer;has exterior insulation: boolean. TRUE if the silencer has exterior insulation. FALSE if it does not.;;
+Which properties has a Cooled beam?;Cooled beam;is free hanging: boolean. Is it free hanging type (not mounted in a false ceiling)?;;
+Which properties has a Cooled beam?;Cooled beam;water flow control system type: {none, on off valve, 2 way valve, 3 way valve, etc.} Factory fitted waterflow control system.;;
+Which properties has a Cooled beam?;Cooled beam;water pressure range: [real, real]. Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Cooled beam?;Cooled beam;nominal cooling capacity: real. Nominal cooling capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature cooling: real. Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding humidity cooling: normalised ratio. Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature cooling: real. Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature cooling: real. Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal water flow cooling. real. Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.;;
+Which properties has a Cooled beam?;Cooled beam;nominal heating capacity: real. Nominal heating capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature heating: real. Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature heating: real. Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature heating: real. Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooled beam?;Cooled beam;nominal water flow heating: real. Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.;;
+Which properties has a Cooled beam?;Cooled beam;integrated lighting type: {none, direct, indirect, direct and indirect, etc.}. Integrated lighting in cooled beam.;;
+Which properties has a Cooled beam?;Cooled beam;pipe connection enum: {straight, right, left, top, etc.}. The manner in which the pipe connection is made to the cooled beam.;;
+Which properties has a Cooled beam?;Cooled beam;finish color: string. Finish color for cooled beam.;;
+Which properties has a Cooled beam?;Cooled beam;coil lenght: positive real. Length of coil. Usually measured in millimeters (mm).;;
+Which properties has a Cooled beam?;Cooled beam;coil width: positive real. Width of coil. Usually measured in millimeters (mm;;
+Which properties has a Outlet?;Outlet;Is pluggable outlet: logical. Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).;;
+Which properties has a Outlet?;Outlet;Number os sockets: integer. The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.;;
+Which properties has a Electric motor?;Electric motor;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).;;
+Which properties has a Electric motor?;Electric motor;Electric motor efficiency: positive ratio. The ratio of output capacity to intake capacity.;;
+Which properties has a Electric motor?;Electric motor;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.;;
+Which properties has a Electric motor?;Electric motor;Starting time: real. The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.;;
+Which properties has a Electric motor?;Electric motor;Te time: real. The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.;;
+Which properties has a Electric motor?;Electric motor;Locked rotor current. real. Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).;;
+Which properties has a Electric motor?;Electric motor;Motor enclosure type: {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.} A list of the available types of motor enclosure from which that required may be selected.;;
+Which properties has a Electric motor?;Electric motor;Frame size: string. Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.;;
+Which properties has a Electric motor?;Electric motor;Is guarded: boolean. Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).;;
+Which properties has a Electric motor?;Electric motor;Has part winding: boolean. Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .;;
+Which properties has a audio visual appliance?;audio visual appliance;Media source: Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).;;
+Which properties has a audio visual appliance?;audio visual appliance;Audio volume: real. Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.;;
+Which properties has a Fan?;Fan;motor drive type: {direct drive, belt drive, coupling, etc.}. Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type. ;;
+Which properties has a Fan?;Fan;capacity control type: {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.}. InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.;;
+Which properties has a Fan?;Fan;operation temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Fan?;Fan;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.;;
+Which properties has a Fan?;Fan;nominal total pressure: real. Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Fan?;Fan;nominal static pressure: real. The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Fan?;Fan;nominal rotation speed: real. Nominal fan wheel speed. Usually measured in cycles/s.;;
+Which properties has a Fan?;Fan;nominal power rate: real. Nominal fan power rate.Usually measured in Watts (W, J/s).;;
+Which properties has a Fan?;Fan;operational riterial: real. Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.;;
+Which properties has a Interceptor?;Interceptor;nominal body lenght: real. Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;nominal body width: real. Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;nominal body depth: real. Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;inlet connection size: real. Size of the inlet connection. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;outlet connection size: real. Size of the outlet connection. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;cover lenght: real. The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;cover width: real. The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).;;
+Which properties has a Interceptor?;Interceptor;ventilating pipe size: real. Size of the ventilating pipe(s). Usually measured in millimeters (mm).;;
+Which properties has a Chiller?;Chiller;nominal capacity: real. Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).;;
+Which properties has a Chiller?;Chiller;nominal efficiency: positive ratio. Nominal chiller efficiency under nominal conditions. ;;
+Which properties has a Chiller?;Chiller;nominal condensing temperature: real. Chiller condensing temperature. Usually measured in degrees Kelvin (K).;;
+Which properties has a Chiller?;Chiller;nominal evaporating temmperature. real. Chiller evaporating temperature.Usually measured in degrees Kelvin (K).;;
+Which properties has a Chiller?;Chiller;nominal heat rejection rate: real. Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).;;
+Which properties has a Chiller?;Chiller;nominal power consumption: real. Nominal total power consumption. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooling tower?;Cooling tower;nominal capcity: real. Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).;;
+Which properties has a Cooling tower?;Cooling tower;circuit type: {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.}. OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.;;
+Which properties has a Cooling tower?;Cooling tower;flow arrangement: {counter flow, cross flow, parallel flow, etc.} CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.;;
+Which properties has a Cooling tower?;Cooling tower;spray type: {spray filled, splash type fill, film type fill, etc.} SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.;;
+Which properties has a Cooling tower?;Cooling tower;capacity control: {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.}. FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.;;
+Which properties has a Cooling tower?;Cooling tower;control strategy: {fixed existing water temp, wer bulb temp reset, etc.}. FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.;;
+Which properties has a Cooling tower?;Cooling tower;number of cells: integer. Number of cells in one cooling tower unit.;;
+Which properties has a Cooling tower?;Cooling tower;basin reserve volume: real. Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).;;
+Which properties has a Cooling tower?;Cooling tower;lift elevation difference: real. Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).;;
+Which properties has a Cooling tower?;Cooling tower;water requirement: real. Make-up water requirements. Usually measured in m3/s.;;
+Which properties has a Cooling tower?;Cooling tower;operation temperature range: real. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooling tower?;Cooling tower;ambient design dry bulb temperature: real. Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).;;
+Which properties has a Cooling tower?;Cooling tower;ambient design wet bulb temperature: real. Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).;;
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage: real. The nominal voltage of the supply. Usually measured in Volts (V, W/A).;;
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal lsupply voltage offset: real interval. The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.;;
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal frequency. real. The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).;;
+Which properties has a Switching device?;Switching device;Number of gangs: integer. Number of gangs/buttons on this switch.;;
+Which properties has a Switching device?;Switching device;Switch function: {on off switch, intermediate switch, double throw switch, etc.}. Indicates types of switches which differs in functionality.;;
+Which properties has a Switching device?;Switching device;Has lock: boolean. Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).;;
+Which properties has a Switching device?;Switching device;is illuminated: boolean. An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).;;
+Which properties has a Switching device?;Switching device;Legend: string. A text inscribed or applied to the switch as a legend to indicate purpose or function.;;
+Which properties has a Switching device?;Switching device;Set point: . Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.;;
+Which properties has a Tube bundle?;Tube bundle;Number of rows: integer. Number of tube rows in the tube bundle assembly.;;
+Which properties has a Tube bundle?;Tube bundle;staggered row spacing: real. Staggered tube row spacing. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;in line row spacing:r eal. In-line tube row spacing. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;number of circuits: integer. Number of parallel fluid tube circuits.;;
+Which properties has a Tube bundle?;Tube bundle;fouling factor: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.;;
+Which properties has a Tube bundle?;Tube bundle;thermal conductivity: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.;;
+Which properties has a Tube bundle?;Tube bundle;lenght: real. Length of the tubes in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;volumen: real. Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).;;
+Which properties has a Tube bundle?;Tube bundle;nominal diameter: real. Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;outside diameter: real. Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;inside diameter: real. Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;horizontal spacing: real. Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;vertical spacing: real. Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).;;
+Which properties has a Tube bundle?;Tube bundle;has turbulator: boolean. TRUE if the tube has a turbulator, FALSE if it does not.;;
+Which properties has a Damper?;Damper;operation: {automatic, manual, etc.}. The operational mechanism for the damper operation.;;
+Which properties has a Damper?;Damper;orientation: {vertical, horizontal, vertical or horizontal, etc.}. The intended orientation for the damper as specified by the manufacturer.;;
+Which properties has a Damper?;Damper;blade thickness: real. The thickness of the damper blade. Usually measured in millimeters (mm).;;
+Which properties has a Damper?;Damper;blade action: {folding curtain, parallel, opposed, single, etc.}. Blade action.;;
+Which properties has a Damper?;Damper;blade shape: {flat, fabricated airfoil, extruded airfoil, etc.}. Blade shape. Flat means triple V-groove.;;
+Which properties has a Damper?;Damper;blade edge: {crimped, uncrimped, etc.}. Blade edge.;;
+Which properties has a Damper?;Damper;number of blades: integer. Number of blades.;;
+Which properties has a Damper?;Damper;face area: real. Face area open to the airstream. Usually measured in square metre (m2).;;
+Which properties has a Damper?;Damper;maximum air flow rate: real. Maximum allowable air flow rate. Usually measured in m3/s.;;
+Which properties has a Damper?;Damper;temperature range: [real, real]. Temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Damper?;Damper;maximum working pressure: real. Maximum working pressure. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Damper?;Damper;temperature rating: real. Temperature rating. Usually measured in degrees Kelvin (K).;;
+Which properties has a Damper?;Damper;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.;;
+Which properties has a Damper?;Damper;open pressure drop: real. Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Damper?;Damper;leakage fully closed: real. Leakage when fully closed. Usually measured in m3/s.;;
+Which properties has a Damper?;Damper;frame type: string. The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).;;
+Which properties has a Damper?;Damper;frame depth: real. The length (or depth) of the damper frame. Usually measured in millimeters (mm).;;
+Which properties has a Damper?;Damper;frame thickness: real. The thickness of the damper frame material. Usually measured in millimeters (mm).;;
+Which properties has a Damper?;Damper;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Coil?;Coil;operational temperature range: [real, real]. Allowable operational air temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Coil?;Coil;air flow rate range: [real, real]. Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.;;
+Which properties has a Coil?;Coil;nominal sensible capacity: real. Nominal sensible capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Coil?;Coil;nominal latent capacity: real. Nominal latent capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Coil?;Coil;nominal UA: real. Nominal UA value.;;
+Which properties has a Coil?;Coil;placement type: {floor, ceiling, unit, etc.} Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL);CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL);UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.
+Which properties has a Space heater?;Space heater;placement type:{baseboard, towel warmer, suspended, wall, etc.}. Indicates how the space heater is designed to be placed. ;;
+Which properties has a Space heater?;Space heater;temperature classification: {low temperature, high temperature, etc.}. Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.;;
+Which properties has a Space heater?;Space heater;heat transfer dimension: {point, path, surface, etc.}. Indicates how heat is transmitted according to the shape of the space heater.;;
+Which properties has a Space heater?;Space heater;heat transfer medium: {water, steam, etc.}. Enumeration defining the heat transfer medium if applicable.;;
+Which properties has a Space heater?;Space heater;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET;dual-use hydronic/electric heaters shall use ELECTRICITY.;
+Which properties has a Space heater?;Space heater;body mass: real. Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Space heater?;Space heater;thermal mass heat capacity: real. Product of component mass and specific heat.;;
+Which properties has a Space heater?;Space heater;output capacity: real. Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).;;
+Which properties has a Space heater?;Space heater;thermal efficiency: normalised ratio. Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.;;
+Which properties has a Space heater?;Space heater;number of panels: integer. Number of panels.;;
+Which properties has a Space heater?;Space heater;number of sections: integer. Number of vertical sections, measured in the direction of flow.;;
+Which properties has a Compressor?;Compressor;power source: {motor driven, engine driven, gas turbine, etc.} Type of power driving the compressor.;;
+Which properties has a Compressor?;Compressor;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.;;
+Which properties has a Compressor?;Compressor;minimun part load ratio: positive ratio. Minimum part load ratio as a fraction of nominal capacity.;;
+Which properties has a Compressor?;Compressor;maximum part load ratio: positive ratio. Maximum part load ratio as a fraction of nominal capacity.;;
+Which properties has a Compressor?;Compressor;compressor speed: real. Compressor speed. Usually measured in cycles/s.;;
+Which properties has a Compressor?;Compressor;nominal capacity: real. Compressor nameplate capacity. Usually measured in Watts (W, J/s).;;
+Which properties has a Compressor?;Compressor;ideal capacity: real. Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).;;
+Which properties has a Compressor?;Compressor;ideal shaft power: real. Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).;;
+Which properties has a Compressor?;Compressor;has hot gas bypass: boolean. Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.;;
+Which properties has a Compressor?;Compressor;impeller diameter: positive real. Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).;;
+Which properties has a Boiler?;Boiler;pressure rating: real. Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Boiler?;Boiler;operating mode: {fixed, two step modulating, etc.} Identifies the operating mode of the boiler.;;
+Which properties has a Boiler?;Boiler;heat transfer surface area: real. Total heat transfer area of the vessel. Usually measured in square metre (m2).;;
+Which properties has a Boiler?;Boiler;nominal part load ratio: [real, real]. Allowable part load ratio range.;;
+Which properties has a Boiler?;Boiler;water inlet temperature range: [real, real]. Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Boiler?;Boiler;water storage capacity: real. Water storage capacity. Usually measured in cubic metre (m3).;;
+Which properties has a Boiler?;Boiler;is water storage heater: booelan. This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.;;
+Which properties has a Boiler?;Boiler;outlet temperature range: [real, real]. Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).;;
+Which properties has a Boiler?;Boiler;nominal energy consumption: real. Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).;;
+Which properties has a Boiler?;Boiler;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.;;
+Which properties has a Transformer?;Transformer;Primary voltage: real. The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).;;
+Which properties has a Transformer?;Transformer;Secondary voltage: real. The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).;;
+Which properties has a Transformer?;Transformer;Primary current: real. The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).;;
+Which properties has a Transformer?;Transformer;Secondary current: real. The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).;;
+Which properties has a Transformer?;Transformer;Primary frequency: real. The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).;;
+Which properties has a Transformer?;Transformer;Secondary frequency: real. The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).;;
+Which properties has a Transformer?;Transformer;Primary apparent power: real. The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).;;
+Which properties has a Transformer?;Transformer;Secondary apparent power: real. The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).;;
+Which properties has a Transformer?;Transformer;Maximum apparent power: real. Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).;;
+Which properties has a Transformer?;Transformer;Secondary current type: {AC, DC}. A list of the secondary current types that can result from transformer output.;;
+Which properties has a Transformer?;Transformer;Short circuit voltage. complex number. A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.;;
+Which properties has a Transformer?;Transformer;Real impedance ratio: real ratio. The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.;;
+Which properties has a Transformer?;Transformer;Imaginary impedance ratio: real ratio. The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.;;
+Which properties has a Transformer?;Transformer;Transformer vector group: {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.}. List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer);The connectivity is only relevant for three-phase transformers.;
+Which properties has a Transformer?;Transformer;Is neutral primary terminal available: boolean. An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).;;
+Which properties has a Transformer?;Transformer;Is neutral secondary terminal available: boolean. An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).;;
+Which properties has a Flow meter?;Flow meter;read out type: {dial, digital, etc.}. Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.;;
+Which properties has a Flow meter?;Flow meter;remote reading: booelan. Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).;;
+Which properties has a Condenser?;Condenser;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.;;
+Which properties has a Condenser?;Condenser;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).;;
+Which properties has a Condenser?;Condenser;internal surface area: real. Internal surface area. Usually measured in square metre (m2).;;
+Which properties has a Condenser?;Condenser;internal refrigerant volume: real. Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).;;
+Which properties has a Condenser?;Condenser;internal water volume: real. Internal volume of condenser (water side). Usually measured in cubic metre (m3).;;
+Which properties has a Condenser?;Condenser;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).;;
+Which properties has a Condenser?;Condenser;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.;;
+Which properties has a shading device?;shading device;Shading device type: {fixed, movable, overhang, sidefin, etc.]. Specifies the type of shading device.;;
+Which properties has a shading device?;shading device;Is external: boolean. Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.;;
+Which properties has a shading device?;shading device;Mechanical operated: boolean. Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).;;
+Which properties has a shading device?;shading device;Thermal transmittance: real. IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.;;
+Which properties has a shading device?;shading device;Solar transmittance: positive ratio. (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1;;
+Which properties has a shading device?;shading device;Visible light transmittance: positive ratio. Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.;;
+Which properties has a shading device?;shading device;Solar reflectance: positive ratio. (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1;;
+Which properties has a shading device?;shading device;Visible light reflectance: positive ratio. Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.;;
+Which properties has a shading device?;shading device;Roughness: string. A measure of the vertical deviations of the surface.;;
+Which properties has a protective device tripping unit?;protective device tripping unit;Standard: string. the designation of the Standard applicable for the definition of the characteristics of the tripping_unit.;;
+Which properties has a protective device tripping unit?;protective device tripping unit;Limiting terminal size: real. The maximum terminal size capacity of the device. Usually measured in square metre (m2).;;
+Which properties has a Valve?;Valve;valve pattern: {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.}. The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.;;
+Which properties has a Valve?;Valve;valve operation: {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.}. The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.;;
+Which properties has a Valve?;Valve;valve mechanism: {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.}. The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.;;
+Which properties has a Valve?;Valve;size: real. The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).;;
+Which properties has a Valve?;Valve;test pressure: real. The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Valve?;Valve;working pressure: real. The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Valve?;Valve;flow coefficient: real. Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.;;
+Which properties has a Valve?;Valve;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Vibration isolator?;Vibration isolator;vibration transmissibility: positive ratio. the vibration transmissibility percentage.;;
+Which properties has a Vibration isolator?;Vibration isolator;isolator static deflection: real. Static deflection of the vibration isolator. Usually measured in millimeters (mm).;;
+Which properties has a Vibration isolator?;Vibration isolator;isolator compressibility: real ratio. The compressibility of the vibration isolator.;;
+Which properties has a Vibration isolator?;Vibration isolator;height: real. Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).;;
+Which properties has a Vibration isolator?;Vibration isolator;maximum supported weight: real. The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Filter?;Filter;weight: real. Weight of filter. Usually measured in kilograms (kg) or grams (g).;;
+Which properties has a Filter?;Filter;initial resistance: real. Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Filter?;Filter;final resistance: real. Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Filter?;Filter;operation temperature range: [real, real]. Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).;;
+Which properties has a Filter?;Filter;flow rate range: [real, real]. Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.;;
+Which properties has a Filter?;Filter;nominal filter face velocity: real. Filter face velocity. Usually measured in m/s.;;
+Which properties has a Filter?;Filter;nominal media surface velocity: real. Average fluid velocity at the media surface. Usually measured in m/s.;;
+Which properties has a Filter?;Filter;nominal pressure drop: real. Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).;;
+Which properties has a Filter?;Filter;nominal flow rate: real. Nominal fluid flow rate through the filter. Usually measured in m3/s.;;
+Which properties has a Filter?;Filter;nominal particle geometric mean diameter: real. Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).;;
+Which properties has a Filter?;Filter;nominal particle geometric standard deviation: real. Particle geometric standard deviation associated with nominal efficiency. ;;
\ No newline at end of file
diff --git a/SAREF4BLD/requirements/Properties4.csv b/SAREF4BLD/requirements/Properties4.csv
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+Which properties has a tank?;tank;access type: {none, loose cover, manhole, secured cover, secured cover with manhole, etc.}. Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.
+Which properties has a tank?;tank;storage type: {ice, water, rain water, waste water, potable water, fuel, oil, etc.}. Defines the general material category intended to be stored.
+Which properties has a tank?;tank;nominal lenght or diameter: real. The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal width or diameter: real. The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal depth: real. The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal capacity: real. The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).
+Which properties has a tank?;tank;effective capacity: real. The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3
+Which properties has a tank?;tank;operating wight: real. Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).
+Which properties has a tank?;tank;pattern type: {horizontal cylinder, vertical cylinder, rectangular, etc.}. Defines the types of pattern (or shape of a tank that may be specified.
+Which properties has a tank?;tank;end shape type: {concave convex, flat convex, convex convex, concave flat, flat flat, etc.}. Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5
+Which properties has a tank?;tank;first curvature radius: real. FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;second curvature radius: real. SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;number of sections: integer. Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.
+Which properties has a Humidifier?;Humidifier;application: {portable, fixed, etc.}. Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.
+Which properties has a Humidifier?;Humidifier;weight: real. The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Humidifier?;Humidifier;nominal moisture gain: real. Nominal rate of water vapor added into the airstream. Usually measured in kg/s.
+Which properties has a Humidifier?;Humidifier;nominal air flow rate: real. Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.
+Which properties has a Humidifier?;Humidifier;internal control: {on off, stepped, modulating, none, etc.}. Internal modulation control.
+Which properties has a Humidifier?;Humidifier;water requirement: ratio. Make-up water requirement. Usually measured in m3/s.
+Which properties has a Heat exchanger?;Heat exchanger;arrangement: {counter flow, cross flow, parallel flow, multipass, etc.}. Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.
+Which properties has a transport element?;transport element;capacity people: natural. capacity of the transportation element measured in numbers of person.
+Which properties has a transport element?;transport element;capacity weight: real. Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).
+Which properties has a transport element?;transport element;fire exit: boolean. Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.
+Which properties has a Lamp?;Lamp;Contributed luminous flux: real. Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).
+Which properties has a Lamp?;Lamp;Light emitter nominal power: real. Light emitter nominal power. Usually measured in Watts (W, J/s).
+Which properties has a Lamp?;Lamp;Lamp maintenance factor: real. Non recoverable losses of luminous flux of a lamp due to lamp depreciation i.e. the decreasing of light output of a luminaire due to aging and dirt.
+Which properties has a Lamp?;Lamp;Lamp ballast type: {conventional, eletronic, lowloss, etc.} The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).
+Which properties has a Lamp?;Lamp;Lamp compensation type: {capacitive, inductive, etc.} Identifies the form of compensation used for power factor correction and radio suppression.
+Which properties has a Lamp?;Lamp;Color appearance: string. In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.
+Which properties has a Lamp?;Lamp;Spectrum: real-real.The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.
+Which properties has a Lamp?;Lamp;Color tempeature: real. The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).
+Which properties has a Lamp?;Lamp;Color rendering index: integer. The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.
+Which properties has a Electric generator?;Electric generator;Electric generator efficiency: positive ratio. the ratio of output capacity to intake capacity.
+Which properties has a Electric generator?;Electric generator;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+Which properties has a Electric generator?;Electric generator;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+Which properties has a Burner?;Burner;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.
+Which properties has a Engine?;Engine;energy source: {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.}. The source of energy.
+Which properties has a Evaporator?;Evaporator;evaporation medium type: {cold liquid, cold air, etc.}. ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.
+Which properties has a Evaporator?;Evaporator;evaporation coolant: {water, brine, clycol, etc.}. The fluid used for the coolant in the evaporator.
+Which properties has a Evaporator?;Evaporator;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Evaporator?;Evaporator;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;internal surface area: real. Internal surface area. Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;internal refrigerant volume: real. Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).
+Which properties has a Evaporator?;Evaporator;internal water volume: real. Internal volume of evaporator (water side). Usually measured in cubic metre (m3).
+Which properties has a Evaporator?;Evaporator;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+Which properties has an actuator?;Which properties has an actuator;Fail position: {fail open, fail closed}. Specifies the required fail-safe position of the actuator.
+Which properties has an actuator?;Which properties has an actuator;Manual override: boolean. Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.
+Which properties has a Evaporative cooler?;Evaporative cooler;flow arrangement: {counter flow, cross flow, parallel flow, etc.}. CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.
+Which properties has a Evaporative cooler?;Evaporative cooler;heat exchange area: real. Heat exchange area. Usually measured in square metre (m2).
+Which properties has a Evaporative cooler?;Evaporative cooler;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Evaporative cooler?;Evaporative cooler;water requirement: real. Make-up water requirement. Usually measured in m3/s.
+Which properties has a Pump?;Pump;flow rate range: [real, real]. Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.
+Which properties has a Pump?;Pump;flow resistance range: [real, real]. Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Pump?;Pump;connection size: positive real. The connection size of the to and from the pump. Usually measured in millimeters (mm).
+Which properties has a Pump?;Pump;temperature range: [real, real]. Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Pump?;Pump;net positive suction head: real. Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Pump?;Pump;nomminal rotation speed: real. Pump rotational speed under nominal conditions. Usually measured in cycles/s.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;Heat transfer type enum: {sensible, laltent, etc.}. Type of heat transfer between the two air streams.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;has defrost: booelan. has the heat exchanger has defrost function or not.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;operational temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Air to air heat recovery?;Air to air heat recovery;primary air flow rate range: [real, real]. possible range of primary airflow that can be delivered. Usually measured in m3/s.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;secondary air flow rate range: [real, real]. possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Duct silencer?;Duct silencer;hydraulic diameter: real. Hydraulic diameter. Usually measured in millimeters (mm).
+Which properties has a Duct silencer?;Duct silencer;lenght: real. The finished length of the silencer. Usually measured in millimeters (mm).
+Which properties has a Duct silencer?;Duct silencer;weight: real. The weight of the silencer. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Duct silencer?;Duct silencer;air flow rate range: [real, real]. Possible range of airflow that can be delivered. Usually measured in m3/s.
+Which properties has a Duct silencer?;Duct silencer;working pressure range: [real, real]. Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Duct silencer?;Duct silencer;temperature range: [real, real]. Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Duct silencer?;Duct silencer;has exterior insulation: boolean. TRUE if the silencer has exterior insulation. FALSE if it does not.
+Which properties has a Cooled beam?;Cooled beam;is free hanging: boolean. Is it free hanging type (not mounted in a false ceiling)?
+Which properties has a Cooled beam?;Cooled beam;water flow control system type: {none, on off valve, 2 way valve, 3 way valve, etc.} Factory fitted waterflow control system.
+Which properties has a Cooled beam?;Cooled beam;water pressure range: [real, real]. Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Cooled beam?;Cooled beam;nominal cooling capacity: real. Nominal cooling capacity. Usually measured in Watts (W, J/s).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature cooling: real. Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding humidity cooling: normalised ratio. Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature cooling: real. Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature cooling: real. Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal water flow cooling. real. Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.
+Which properties has a Cooled beam?;Cooled beam;nominal heating capacity: real. Nominal heating capacity. Usually measured in Watts (W, J/s).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature heating: real. Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature heating: real. Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature heating: real. Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal water flow heating: real. Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.
+Which properties has a Cooled beam?;Cooled beam;integrated lighting type: {none, direct, indirect, direct and indirect, etc.}. Integrated lighting in cooled beam.
+Which properties has a Cooled beam?;Cooled beam;pipe connection enum: {straight, right, left, top, etc.}. The manner in which the pipe connection is made to the cooled beam.
+Which properties has a Cooled beam?;Cooled beam;finish color: string. Finish color for cooled beam.
+Which properties has a Cooled beam?;Cooled beam;coil lenght: positive real. Length of coil. Usually measured in millimeters (mm).
+Which properties has a Cooled beam?;Cooled beam;coil width: positive real. Width of coil. Usually measured in millimeters (mm
+Which properties has a Outlet?;Outlet;Is pluggable outlet: logical. Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).
+Which properties has a Outlet?;Outlet;Number os sockets: integer. The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.
+Which properties has a Electric motor?;Electric motor;Maximum power output: real. The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+Which properties has a Electric motor?;Electric motor;Electric motor efficiency: positive ratio. The ratio of output capacity to intake capacity.
+Which properties has a Electric motor?;Electric motor;Start current factor: real. IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+Which properties has a Electric motor?;Electric motor;Starting time: real. The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.
+Which properties has a Electric motor?;Electric motor;Te time: real. The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.
+Which properties has a Electric motor?;Electric motor;Locked rotor current. real. Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).
+Which properties has a Electric motor?;Electric motor;Motor enclosure type: {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.} A list of the available types of motor enclosure from which that required may be selected.
+Which properties has a Electric motor?;Electric motor;Frame size: string. Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.
+Which properties has a Electric motor?;Electric motor;Is guarded: boolean. Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).
+Which properties has a Electric motor?;Electric motor;Has part winding: boolean. Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .
+Which properties has a audio visual appliance?;audio visual appliance;Media source: Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).
+Which properties has a audio visual appliance?;audio visual appliance;Audio volume: real. Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.
+Which properties has a Fan?;Fan;motor drive type: {direct drive, belt drive, coupling, etc.}. Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type.
+Which properties has a Fan?;Fan;capacity control type: {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.}. InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.
+Which properties has a Fan?;Fan;operation temperature range: [real, real]. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Fan?;Fan;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.
+Which properties has a Fan?;Fan;nominal total pressure: real. Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Fan?;Fan;nominal static pressure: real. The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Fan?;Fan;nominal rotation speed: real. Nominal fan wheel speed. Usually measured in cycles/s.
+Which properties has a Fan?;Fan;nominal power rate: real. Nominal fan power rate.Usually measured in Watts (W, J/s).
+Which properties has a Fan?;Fan;operational riterial: real. Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.
+Which properties has a Interceptor?;Interceptor;nominal body lenght: real. Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;nominal body width: real. Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;nominal body depth: real. Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;inlet connection size: real. Size of the inlet connection. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;outlet connection size: real. Size of the outlet connection. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;cover lenght: real. The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;cover width: real. The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;ventilating pipe size: real. Size of the ventilating pipe(s). Usually measured in millimeters (mm).
+Which properties has a Chiller?;Chiller;nominal capacity: real. Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).
+Which properties has a Chiller?;Chiller;nominal efficiency: positive ratio. Nominal chiller efficiency under nominal conditions.
+Which properties has a Chiller?;Chiller;nominal condensing temperature: real. Chiller condensing temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Chiller?;Chiller;nominal evaporating temmperature. real. Chiller evaporating temperature.Usually measured in degrees Kelvin (K).
+Which properties has a Chiller?;Chiller;nominal heat rejection rate: real. Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).
+Which properties has a Chiller?;Chiller;nominal power consumption: real. Nominal total power consumption. Usually measured in Watts (W, J/s).
+Which properties has a Cooling tower?;Cooling tower;nominal capcity: real. Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Cooling tower?;Cooling tower;circuit type: {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.}. OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.
+Which properties has a Cooling tower?;Cooling tower;flow arrangement: {counter flow, cross flow, parallel flow, etc.} CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.
+Which properties has a Cooling tower?;Cooling tower;spray type: {spray filled, splash type fill, film type fill, etc.} SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.
+Which properties has a Cooling tower?;Cooling tower;capacity control: {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.}. FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.
+Which properties has a Cooling tower?;Cooling tower;control strategy: {fixed existing water temp, wer bulb temp reset, etc.}. FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.
+Which properties has a Cooling tower?;Cooling tower;number of cells: integer. Number of cells in one cooling tower unit.
+Which properties has a Cooling tower?;Cooling tower;basin reserve volume: real. Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).
+Which properties has a Cooling tower?;Cooling tower;lift elevation difference: real. Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).
+Which properties has a Cooling tower?;Cooling tower;water requirement: real. Make-up water requirements. Usually measured in m3/s.
+Which properties has a Cooling tower?;Cooling tower;operation temperature range: real. Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Cooling tower?;Cooling tower;ambient design dry bulb temperature: real. Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+Which properties has a Cooling tower?;Cooling tower;ambient design wet bulb temperature: real. Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage: real. The nominal voltage of the supply. Usually measured in Volts (V, W/A).
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal lsupply voltage offset: real interval. The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal frequency. real. The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Switching device?;Switching device;Number of gangs: integer. Number of gangs/buttons on this switch.
+Which properties has a Switching device?;Switching device;Switch function: {on off switch, intermediate switch, double throw switch, etc.}. Indicates types of switches which differs in functionality.
+Which properties has a Switching device?;Switching device;Has lock: boolean. Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).
+Which properties has a Switching device?;Switching device;is illuminated: boolean. An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).
+Which properties has a Switching device?;Switching device;Legend: string. A text inscribed or applied to the switch as a legend to indicate purpose or function.
+Which properties has a Switching device?;Switching device;Set point: . Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.
+Which properties has a Tube bundle?;Tube bundle;Number of rows: integer. Number of tube rows in the tube bundle assembly.
+Which properties has a Tube bundle?;Tube bundle;staggered row spacing: real. Staggered tube row spacing. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;in line row spacing:r eal. In-line tube row spacing. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;number of circuits: integer. Number of parallel fluid tube circuits.
+Which properties has a Tube bundle?;Tube bundle;fouling factor: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+Which properties has a Tube bundle?;Tube bundle;thermal conductivity: real. Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+Which properties has a Tube bundle?;Tube bundle;lenght: real. Length of the tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;volumen: real. Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).
+Which properties has a Tube bundle?;Tube bundle;nominal diameter: real. Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;outside diameter: real. Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;inside diameter: real. Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;horizontal spacing: real. Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;vertical spacing: real. Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;has turbulator: boolean. TRUE if the tube has a turbulator, FALSE if it does not.
+Which properties has a Damper?;Damper;operation: {automatic, manual, etc.}. The operational mechanism for the damper operation.
+Which properties has a Damper?;Damper;orientation: {vertical, horizontal, vertical or horizontal, etc.}. The intended orientation for the damper as specified by the manufacturer.
+Which properties has a Damper?;Damper;blade thickness: real. The thickness of the damper blade. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;blade action: {folding curtain, parallel, opposed, single, etc.}. Blade action.
+Which properties has a Damper?;Damper;blade shape: {flat, fabricated airfoil, extruded airfoil, etc.}. Blade shape. Flat means triple V-groove.
+Which properties has a Damper?;Damper;blade edge: {crimped, uncrimped, etc.}. Blade edge.
+Which properties has a Damper?;Damper;number of blades: integer. Number of blades.
+Which properties has a Damper?;Damper;face area: real. Face area open to the airstream. Usually measured in square metre (m2).
+Which properties has a Damper?;Damper;maximum air flow rate: real. Maximum allowable air flow rate. Usually measured in m3/s.
+Which properties has a Damper?;Damper;temperature range: [real, real]. Temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Damper?;Damper;maximum working pressure: real. Maximum working pressure. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Damper?;Damper;temperature rating: real. Temperature rating. Usually measured in degrees Kelvin (K).
+Which properties has a Damper?;Damper;nominal air flow rate: real. Nominal air flow rate. Usually measured in m3/s.
+Which properties has a Damper?;Damper;open pressure drop: real. Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Damper?;Damper;leakage fully closed: real. Leakage when fully closed. Usually measured in m3/s.
+Which properties has a Damper?;Damper;frame type: string. The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).
+Which properties has a Damper?;Damper;frame depth: real. The length (or depth) of the damper frame. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;frame thickness: real. The thickness of the damper frame material. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Coil?;Coil;operational temperature range: [real, real]. Allowable operational air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Coil?;Coil;air flow rate range: [real, real]. Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.
+Which properties has a Coil?;Coil;nominal sensible capacity: real. Nominal sensible capacity. Usually measured in Watts (W, J/s).
+Which properties has a Coil?;Coil;nominal latent capacity: real. Nominal latent capacity. Usually measured in Watts (W, J/s).
+Which properties has a Coil?;Coil;nominal UA: real. Nominal UA value.
+Which properties has a Coil?;Coil;placement type: {floor, ceiling, unit, etc.} Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL), CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL), UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.
+Which properties has a Space heater?;Space heater;placement type:{baseboard, towel warmer, suspended, wall, etc.}. Indicates how the space heater is designed to be placed.
+Which properties has a Space heater?;Space heater;temperature classification: {low temperature, high temperature, etc.}. Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.
+Which properties has a Space heater?;Space heater;heat transfer dimension: {point, path, surface, etc.}. Indicates how heat is transmitted according to the shape of the space heater.
+Which properties has a Space heater?;Space heater;heat transfer medium: {water, steam, etc.}. Enumeration defining the heat transfer medium if applicable.
+Which properties has a Space heater?;Space heater;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET, dual-use hydronic/electric heaters shall use ELECTRICITY.
+Which properties has a Space heater?;Space heater;body mass: real. Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Space heater?;Space heater;thermal mass heat capacity: real. Product of component mass and specific heat.
+Which properties has a Space heater?;Space heater;output capacity: real. Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).
+Which properties has a Space heater?;Space heater;thermal efficiency: normalised ratio. Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.
+Which properties has a Space heater?;Space heater;number of panels: integer. Number of panels.
+Which properties has a Space heater?;Space heater;number of sections: integer. Number of vertical sections, measured in the direction of flow.
+Which properties has a Compressor?;Compressor;power source: {motor driven, engine driven, gas turbine, etc.} Type of power driving the compressor.
+Which properties has a Compressor?;Compressor;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Compressor?;Compressor;minimun part load ratio: positive ratio. Minimum part load ratio as a fraction of nominal capacity.
+Which properties has a Compressor?;Compressor;maximum part load ratio: positive ratio. Maximum part load ratio as a fraction of nominal capacity.
+Which properties has a Compressor?;Compressor;compressor speed: real. Compressor speed. Usually measured in cycles/s.
+Which properties has a Compressor?;Compressor;nominal capacity: real. Compressor nameplate capacity. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;ideal capacity: real. Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;ideal shaft power: real. Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;has hot gas bypass: boolean. Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.
+Which properties has a Compressor?;Compressor;impeller diameter: positive real. Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).
+Which properties has a Boiler?;Boiler;pressure rating: real. Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Boiler?;Boiler;operating mode: {fixed, two step modulating, etc.} Identifies the operating mode of the boiler.
+Which properties has a Boiler?;Boiler;heat transfer surface area: real. Total heat transfer area of the vessel. Usually measured in square metre (m2).
+Which properties has a Boiler?;Boiler;nominal part load ratio: [real, real]. Allowable part load ratio range.
+Which properties has a Boiler?;Boiler;water inlet temperature range: [real, real]. Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Boiler?;Boiler;water storage capacity: real. Water storage capacity. Usually measured in cubic metre (m3).
+Which properties has a Boiler?;Boiler;is water storage heater: booelan. This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.
+Which properties has a Boiler?;Boiler;outlet temperature range: [real, real]. Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).
+Which properties has a Boiler?;Boiler;nominal energy consumption: real. Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).
+Which properties has a Boiler?;Boiler;energy source: {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.}. Enumeration defining the energy source or fuel cumbusted to generate heat.
+Which properties has a Transformer?;Transformer;Primary voltage: real. The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).
+Which properties has a Transformer?;Transformer;Secondary voltage: real. The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).
+Which properties has a Transformer?;Transformer;Primary current: real. The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).
+Which properties has a Transformer?;Transformer;Secondary current: real. The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).
+Which properties has a Transformer?;Transformer;Primary frequency: real. The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Transformer?;Transformer;Secondary frequency: real. The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Transformer?;Transformer;Primary apparent power: real. The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Secondary apparent power: real. The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Maximum apparent power: real. Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Secondary current type: {AC, DC}. A list of the secondary current types that can result from transformer output.
+Which properties has a Transformer?;Transformer;Short circuit voltage. complex number. A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.
+Which properties has a Transformer?;Transformer;Real impedance ratio: real ratio. The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+Which properties has a Transformer?;Transformer;Imaginary impedance ratio: real ratio. The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+Which properties has a Transformer?;Transformer;Transformer vector group: {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.}. List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer). The connectivity is only relevant for three-phase transformers.
+Which properties has a Transformer?;Transformer;Is neutral primary terminal available: boolean. An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).
+Which properties has a Transformer?;Transformer;Is neutral secondary terminal available: boolean. An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).
+Which properties has a Flow meter?;Flow meter;read out type: {dial, digital, etc.}. Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.
+Which properties has a Flow meter?;Flow meter;remote reading: booelan. Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).
+Which properties has a Condenser?;Condenser;refrigerant class: {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}. Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Condenser?;Condenser;external surface area: real. External surface area (both primary and secondary area). Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;internal surface area: real. Internal surface area. Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;internal refrigerant volume: real. Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).
+Which properties has a Condenser?;Condenser;internal water volume: real. Internal volume of condenser (water side). Usually measured in cubic metre (m3).
+Which properties has a Condenser?;Condenser;nominal heat transfer area: real. Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;nominal heat transfer coefficient: real. Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+Which properties has a shading device?;shading device;Shading device type: {fixed, movable, overhang, sidefin, etc.]. Specifies the type of shading device.
+Which properties has a shading device?;shading device;Is external: boolean. Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.
+Which properties has a shading device?;shading device;Mechanical operated: boolean. Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).
+Which properties has a shading device?;shading device;Thermal transmittance: real. IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.
+Which properties has a shading device?;shading device;Solar transmittance: positive ratio. (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+Which properties has a shading device?;shading device;Visible light transmittance: positive ratio. Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.
+Which properties has a shading device?;shading device;Solar reflectance: positive ratio. (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+Which properties has a shading device?;shading device;Visible light reflectance: positive ratio. Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.
+Which properties has a shading device?;shading device;Roughness: string. A measure of the vertical deviations of the surface.
+Which properties has a protective device tripping unit?;protective device tripping unit;Standard: string. the designation of the Standard applicable for the definition of the characteristics of the tripping_unit.
+Which properties has a protective device tripping unit?;protective device tripping unit;Limiting terminal size: real. The maximum terminal size capacity of the device. Usually measured in square metre (m2).
+Which properties has a Valve?;Valve;valve pattern: {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.}. The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.
+Which properties has a Valve?;Valve;valve operation: {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.}. The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.
+Which properties has a Valve?;Valve;valve mechanism: {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.}. The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.
+Which properties has a Valve?;Valve;size: real. The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).
+Which properties has a Valve?;Valve;test pressure: real. The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Valve?;Valve;working pressure: real. The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Valve?;Valve;flow coefficient: real. Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.
+Which properties has a Valve?;Valve;close off rating: real. Close off rating. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Vibration isolator?;Vibration isolator;vibration transmissibility: positive ratio. the vibration transmissibility percentage.
+Which properties has a Vibration isolator?;Vibration isolator;isolator static deflection: real. Static deflection of the vibration isolator. Usually measured in millimeters (mm).
+Which properties has a Vibration isolator?;Vibration isolator;isolator compressibility: real ratio. The compressibility of the vibration isolator.
+Which properties has a Vibration isolator?;Vibration isolator;height: real. Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).
+Which properties has a Vibration isolator?;Vibration isolator;maximum supported weight: real. The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Filter?;Filter;weight: real. Weight of filter. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Filter?;Filter;initial resistance: real. Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;final resistance: real. Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;operation temperature range: [real, real]. Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Filter?;Filter;flow rate range: [real, real]. Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.
+Which properties has a Filter?;Filter;nominal filter face velocity: real. Filter face velocity. Usually measured in m/s.
+Which properties has a Filter?;Filter;nominal media surface velocity: real. Average fluid velocity at the media surface. Usually measured in m/s.
+Which properties has a Filter?;Filter;nominal pressure drop: real. Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;nominal flow rate: real. Nominal fluid flow rate through the filter. Usually measured in m3/s.
+Which properties has a Filter?;Filter;nominal particle geometric mean diameter: real. Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).
+Which properties has a Filter?;Filter;nominal particle geometric standard deviation: real. Particle geometric standard deviation associated with nominal efficiency.
\ No newline at end of file
diff --git a/SAREF4BLD/requirements/Properties5.csv b/SAREF4BLD/requirements/Properties5.csv
new file mode 100644
index 0000000000000000000000000000000000000000..6298ab532a311eb5b8c61ada9290f00d21445a0b
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@@ -0,0 +1,279 @@
+question;class;property;type;description
+Which properties has a tank?;tank;access type; {none, loose cover, manhole, secured cover, secured cover with manhole, etc.};Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.
+Which properties has a tank?;tank;storage type; {ice, water, rain water, waste water, potable water, fuel, oil, etc.};Defines the general material category intended to be stored.
+Which properties has a tank?;tank;nominal lenght or diameter; real; The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal width or diameter; real; The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal depth; real; The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal capacity; real; The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).
+Which properties has a tank?;tank;effective capacity; real; The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3
+Which properties has a tank?;tank;operating wight; real; Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).
+Which properties has a tank?;tank;pattern type; {horizontal cylinder, vertical cylinder, rectangular, etc.};Defines the types of pattern (or shape of a tank that may be specified.
+Which properties has a tank?;tank;end shape type; {concave convex, flat convex, convex convex, concave flat, flat flat, etc.};Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5
+Which properties has a tank?;tank;first curvature radius; real; FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;second curvature radius; real; SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;number of sections;integer; Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.
+Which properties has a Humidifier?;Humidifier;application; {portable, fixed, etc.};Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.
+Which properties has a Humidifier?;Humidifier;weight; real; The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Humidifier?;Humidifier;nominal moisture gain; real; Nominal rate of water vapor added into the airstream. Usually measured in kg/s.
+Which properties has a Humidifier?;Humidifier;nominal air flow rate; real; Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.
+Which properties has a Humidifier?;Humidifier;internal control; {on off, stepped, modulating, none, etc.};Internal modulation control.
+Which properties has a Humidifier?;Humidifier;water requirement; ratio. Make-up water requirement. Usually measured in m3/s.
+Which properties has a Heat exchanger?;Heat exchanger;arrangement; {counter flow, cross flow, parallel flow, multipass, etc.};Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.
+Which properties has a transport element?;transport element;capacity people; natural. capacity of the transportation element measured in numbers of person.
+Which properties has a transport element?;transport element;capacity weight; real; Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).
+Which properties has a transport element?;transport element;fire exit; boolean; Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.
+Which properties has a Lamp?;Lamp;Contributed luminous flux; real; Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).
+Which properties has a Lamp?;Lamp;Light emitter nominal power; real; Light emitter nominal power. Usually measured in Watts (W, J/s).
+Which properties has a Lamp?;Lamp;Lamp maintenance factor; real; Non recoverable losses of luminous flux of a lamp due to lamp depreciation i.e. the decreasing of light output of a luminaire due to aging and dirt.
+Which properties has a Lamp?;Lamp;Lamp ballast type; {conventional, eletronic, lowloss, etc.}; The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).
+Which properties has a Lamp?;Lamp;Lamp compensation type; {capacitive, inductive, etc.}; Identifies the form of compensation used for power factor correction and radio suppression.
+Which properties has a Lamp?;Lamp;Color appearance; string; In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.
+Which properties has a Lamp?;Lamp;Spectrum; [real, real];The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.
+Which properties has a Lamp?;Lamp;Color tempeature; real; The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).
+Which properties has a Lamp?;Lamp;Color rendering index;integer; The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.
+Which properties has a Electric generator?;Electric generator;Electric generator efficiency; positive ratio; the ratio of output capacity to intake capacity.
+Which properties has a Electric generator?;Electric generator;Start current factor; real; IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+Which properties has a Electric generator?;Electric generator;Maximum power output; real; The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+Which properties has a Burner?;Burner;energy source; {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.};Enumeration defining the energy source or fuel cumbusted to generate heat.
+Which properties has a Engine?;Engine;energy source; {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.};The source of energy.
+Which properties has a Evaporator?;Evaporator;evaporation medium type; {cold liquid, cold air, etc.};ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.
+Which properties has a Evaporator?;Evaporator;evaporation coolant; {water, brine, clycol, etc.};The fluid used for the coolant in the evaporator.
+Which properties has a Evaporator?;Evaporator;refrigerant class; {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}; Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Evaporator?;Evaporator;external surface area; real; External surface area (both primary and secondary area). Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;internal surface area; real; Internal surface area. Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;internal refrigerant volume; real; Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).
+Which properties has a Evaporator?;Evaporator;internal water volume; real; Internal volume of evaporator (water side). Usually measured in cubic metre (m3).
+Which properties has a Evaporator?;Evaporator;nominal heat transfer area; real; Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;nominal heat transfer coefficient; real; Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+Which properties has an actuator?;Which properties has an actuator;Fail position; {fail open, fail closed}; Specifies the required fail-safe position of the actuator.
+Which properties has an actuator?;Which properties has an actuator;Manual override; boolean; Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.
+Which properties has a Evaporative cooler?;Evaporative cooler;flow arrangement; {counter flow, cross flow, parallel flow, etc.};CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.
+Which properties has a Evaporative cooler?;Evaporative cooler;heat exchange area; real; Heat exchange area. Usually measured in square metre (m2).
+Which properties has a Evaporative cooler?;Evaporative cooler;operational temperature range; [real, real];Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Evaporative cooler?;Evaporative cooler;water requirement; real; Make-up water requirement. Usually measured in m3/s.
+Which properties has a Pump?;Pump;flow rate range; [real, real];Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.
+Which properties has a Pump?;Pump;flow resistance range; [real, real];Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Pump?;Pump;connection size; positive real; The connection size of the to and from the pump. Usually measured in millimeters (mm).
+Which properties has a Pump?;Pump;temperature range; [real, real];Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Pump?;Pump;net positive suction head; real; Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Pump?;Pump;nomminal rotation speed; real; Pump rotational speed under nominal conditions. Usually measured in cycles/s.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;Heat transfer type enum; {sensible, laltent, etc.};Type of heat transfer between the two air streams.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;has defrost; boolean; has the heat exchanger has defrost function or not.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;operational temperature range; [real, real];Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Air to air heat recovery?;Air to air heat recovery;primary air flow rate range; [real, real];possible range of primary airflow that can be delivered. Usually measured in m3/s.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;secondary air flow rate range; [real, real];possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Duct silencer?;Duct silencer;hydraulic diameter; real; Hydraulic diameter. Usually measured in millimeters (mm).
+Which properties has a Duct silencer?;Duct silencer;lenght; real; The finished length of the silencer. Usually measured in millimeters (mm).
+Which properties has a Duct silencer?;Duct silencer;weight; real; The weight of the silencer. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Duct silencer?;Duct silencer;air flow rate range; [real, real];Possible range of airflow that can be delivered. Usually measured in m3/s.
+Which properties has a Duct silencer?;Duct silencer;working pressure range; [real, real];Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Duct silencer?;Duct silencer;temperature range; [real, real];Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Duct silencer?;Duct silencer;has exterior insulation; boolean; TRUE if the silencer has exterior insulation. FALSE if it does not.
+Which properties has a Cooled beam?;Cooled beam;is free hanging; boolean; Is it free hanging type (not mounted in a false ceiling)?
+Which properties has a Cooled beam?;Cooled beam;water flow control system type; {none, on off valve, 2 way valve, 3 way valve, etc.}; Factory fitted waterflow control system.
+Which properties has a Cooled beam?;Cooled beam;water pressure range; [real, real];Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Cooled beam?;Cooled beam;nominal cooling capacity; real; Nominal cooling capacity. Usually measured in Watts (W, J/s).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature cooling; real; Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding humidity cooling; normalised ratio; Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature cooling; real; Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature cooling; real; Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal water flow cooling; real; Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.
+Which properties has a Cooled beam?;Cooled beam;nominal heating capacity; real; Nominal heating capacity. Usually measured in Watts (W, J/s).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature heating; real; Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature heating; real; Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature heating; real; Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal water flow heating; real; Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.
+Which properties has a Cooled beam?;Cooled beam;integrated lighting type; {none, direct, indirect, direct and indirect, etc.};Integrated lighting in cooled beam.
+Which properties has a Cooled beam?;Cooled beam;pipe connection enum; {straight, right, left, top, etc.};The manner in which the pipe connection is made to the cooled beam.
+Which properties has a Cooled beam?;Cooled beam;finish color; string; Finish color for cooled beam.
+Which properties has a Cooled beam?;Cooled beam;coil lenght; positive real; Length of coil. Usually measured in millimeters (mm).
+Which properties has a Cooled beam?;Cooled beam;coil width; positive real; Width of coil. Usually measured in millimeters (mm
+Which properties has a Outlet?;Outlet;Is pluggable outlet; logical; Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).
+Which properties has a Outlet?;Outlet;Number os sockets;integer; The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.
+Which properties has a Electric motor?;Electric motor;Maximum power output; real; The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+Which properties has a Electric motor?;Electric motor;Electric motor efficiency; positive ratio; The ratio of output capacity to intake capacity.
+Which properties has a Electric motor?;Electric motor;Start current factor; real; IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+Which properties has a Electric motor?;Electric motor;Starting time; real; The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.
+Which properties has a Electric motor?;Electric motor;Te time; real; The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.
+Which properties has a Electric motor?;Electric motor;Locked rotor current; real; Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).
+Which properties has a Electric motor?;Electric motor;Motor enclosure type; {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.}; A list of the available types of motor enclosure from which that required may be selected.
+Which properties has a Electric motor?;Electric motor;Frame size; string; Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.
+Which properties has a Electric motor?;Electric motor;Is guarded; boolean; Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).
+Which properties has a Electric motor?;Electric motor;Has part winding; boolean; Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .
+Which properties has a audio visual appliance?;audio visual appliance;Media source; Class; Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).
+Which properties has a audio visual appliance?;audio visual appliance;Audio volume; real; Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.
+Which properties has a Fan?;Fan;motor drive type; {direct drive, belt drive, coupling, etc.};Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type.
+Which properties has a Fan?;Fan;capacity control type; {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.};InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.
+Which properties has a Fan?;Fan;operation temperature range; [real, real];Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Fan?;Fan;nominal air flow rate; real; Nominal air flow rate. Usually measured in m3/s.
+Which properties has a Fan?;Fan;nominal total pressure; real; Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Fan?;Fan;nominal static pressure; real; The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Fan?;Fan;nominal rotation speed; real; Nominal fan wheel speed. Usually measured in cycles/s.
+Which properties has a Fan?;Fan;nominal power rate; real; Nominal fan power rate.Usually measured in Watts (W, J/s).
+Which properties has a Fan?;Fan;operational riterial; real; Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.
+Which properties has a Interceptor?;Interceptor;nominal body lenght; real; Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;nominal body width; real; Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;nominal body depth; real; Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;inlet connection size; real; Size of the inlet connection. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;outlet connection size; real; Size of the outlet connection. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;cover lenght; real; The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;cover width; real; The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;ventilating pipe size; real; Size of the ventilating pipe(s). Usually measured in millimeters (mm).
+Which properties has a Chiller?;Chiller;nominal capacity; real; Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).
+Which properties has a Chiller?;Chiller;nominal efficiency; positive ratio; Nominal chiller efficiency under nominal conditions.
+Which properties has a Chiller?;Chiller;nominal condensing temperature; real; Chiller condensing temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Chiller?;Chiller;nominal evaporating temmperature; real; Chiller evaporating temperature.Usually measured in degrees Kelvin (K).
+Which properties has a Chiller?;Chiller;nominal heat rejection rate; real; Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).
+Which properties has a Chiller?;Chiller;nominal power consumption; real; Nominal total power consumption. Usually measured in Watts (W, J/s).
+Which properties has a Cooling tower?;Cooling tower;nominal capcity; real; Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Cooling tower?;Cooling tower;circuit type; {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.};OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.
+Which properties has a Cooling tower?;Cooling tower;flow arrangement; {counter flow, cross flow, parallel flow, etc.}; CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.
+Which properties has a Cooling tower?;Cooling tower;spray type; {spray filled, splash type fill, film type fill, etc.} SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.
+Which properties has a Cooling tower?;Cooling tower;capacity control; {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.};FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.
+Which properties has a Cooling tower?;Cooling tower;control strategy; {fixed existing water temp, wer bulb temp reset, etc.};FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.
+Which properties has a Cooling tower?;Cooling tower;number of cells;integer; Number of cells in one cooling tower unit.
+Which properties has a Cooling tower?;Cooling tower;basin reserve volume; real; Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).
+Which properties has a Cooling tower?;Cooling tower;lift elevation difference; real; Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).
+Which properties has a Cooling tower?;Cooling tower;water requirement; real; Make-up water requirements. Usually measured in m3/s.
+Which properties has a Cooling tower?;Cooling tower;operation temperature range; real; Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Cooling tower?;Cooling tower;ambient design dry bulb temperature; real; Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+Which properties has a Cooling tower?;Cooling tower;ambient design wet bulb temperature; real; Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage; real; The nominal voltage of the supply. Usually measured in Volts (V, W/A).
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage offset; [real, real]; The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal frequency; real; The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Switching device?;Switching device;Number of gangs;integer; Number of gangs/buttons on this switch.
+Which properties has a Switching device?;Switching device;Switch function; {on off switch, intermediate switch, double throw switch, etc.};Indicates types of switches which differs in functionality.
+Which properties has a Switching device?;Switching device;Has lock; boolean; Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).
+Which properties has a Switching device?;Switching device;is illuminated; boolean; An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).
+Which properties has a Switching device?;Switching device;Legend; string; A text inscribed or applied to the switch as a legend to indicate purpose or function.
+Which properties has a Switching device?;Switching device;Set point; Resource; Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.
+Which properties has a Tube bundle?;Tube bundle;Number of rows;integer; Number of tube rows in the tube bundle assembly.
+Which properties has a Tube bundle?;Tube bundle;staggered row spacing; real; Staggered tube row spacing. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;in line row spacing; real; In-line tube row spacing. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;number of circuits;integer; Number of parallel fluid tube circuits.
+Which properties has a Tube bundle?;Tube bundle;fouling factor; real; Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+Which properties has a Tube bundle?;Tube bundle;thermal conductivity; real; Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+Which properties has a Tube bundle?;Tube bundle;lenght; real; Length of the tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;volumen; real; Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).
+Which properties has a Tube bundle?;Tube bundle;nominal diameter; real; Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;outside diameter; real; Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;inside diameter; real; Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;horizontal spacing; real; Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;vertical spacing; real; Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;has turbulator; boolean; TRUE if the tube has a turbulator, FALSE if it does not.
+Which properties has a Damper?;Damper;operation; {automatic, manual, etc.};The operational mechanism for the damper operation.
+Which properties has a Damper?;Damper;orientation; {vertical, horizontal, vertical or horizontal, etc.};The intended orientation for the damper as specified by the manufacturer.
+Which properties has a Damper?;Damper;blade thickness; real; The thickness of the damper blade. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;blade action; {folding curtain, parallel, opposed, single, etc.};Blade action.
+Which properties has a Damper?;Damper;blade shape; {flat, fabricated airfoil, extruded airfoil, etc.};Blade shape. Flat means triple V-groove.
+Which properties has a Damper?;Damper;blade edge; {crimped, uncrimped, etc.};Blade edge.
+Which properties has a Damper?;Damper;number of blades;integer; Number of blades.
+Which properties has a Damper?;Damper;face area; real; Face area open to the airstream. Usually measured in square metre (m2).
+Which properties has a Damper?;Damper;maximum air flow rate; real; Maximum allowable air flow rate. Usually measured in m3/s.
+Which properties has a Damper?;Damper;temperature range; [real, real];Temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Damper?;Damper;maximum working pressure; real; Maximum working pressure. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Damper?;Damper;temperature rating; real; Temperature rating. Usually measured in degrees Kelvin (K).
+Which properties has a Damper?;Damper;nominal air flow rate; real; Nominal air flow rate. Usually measured in m3/s.
+Which properties has a Damper?;Damper;open pressure drop; real; Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Damper?;Damper;leakage fully closed; real; Leakage when fully closed. Usually measured in m3/s.
+Which properties has a Damper?;Damper;frame type; string; The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).
+Which properties has a Damper?;Damper;frame depth; real; The length (or depth) of the damper frame. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;frame thickness; real; The thickness of the damper frame material. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;close off rating; real; Close off rating. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Coil?;Coil;operational temperature range; [real, real];Allowable operational air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Coil?;Coil;air flow rate range; [real, real];Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.
+Which properties has a Coil?;Coil;nominal sensible capacity; real; Nominal sensible capacity. Usually measured in Watts (W, J/s).
+Which properties has a Coil?;Coil;nominal latent capacity; real; Nominal latent capacity. Usually measured in Watts (W, J/s).
+Which properties has a Coil?;Coil;nominal UA; real; Nominal UA value.
+Which properties has a Coil?;Coil;placement type; {floor, ceiling, unit, etc.}; Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL), CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL), UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.
+Which properties has a Space heater?;Space heater;placement type; {baseboard, towel warmer, suspended, wall, etc.};Indicates how the space heater is designed to be placed.
+Which properties has a Space heater?;Space heater;temperature classification; {low temperature, high temperature, etc.};Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.
+Which properties has a Space heater?;Space heater;heat transfer dimension; {point, path, surface, etc.};Indicates how heat is transmitted according to the shape of the space heater.
+Which properties has a Space heater?;Space heater;heat transfer medium; {water, steam, etc.};Enumeration defining the heat transfer medium if applicable.
+Which properties has a Space heater?;Space heater;energy source; {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.};Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET, dual-use hydronic/electric heaters shall use ELECTRICITY.
+Which properties has a Space heater?;Space heater;body mass; real; Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Space heater?;Space heater;thermal mass heat capacity; real; Product of component mass and specific heat.
+Which properties has a Space heater?;Space heater;output capacity; real; Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).
+Which properties has a Space heater?;Space heater;thermal efficiency; normalised ratio; Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.
+Which properties has a Space heater?;Space heater;number of panels;integer; Number of panels.
+Which properties has a Space heater?;Space heater;number of sections;integer; Number of vertical sections, measured in the direction of flow.
+Which properties has a Compressor?;Compressor;power source; {motor driven, engine driven, gas turbine, etc.}; Type of power driving the compressor.
+Which properties has a Compressor?;Compressor;refrigerant class; {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.};Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Compressor?;Compressor;minimun part load ratio; positive ratio; Minimum part load ratio as a fraction of nominal capacity.
+Which properties has a Compressor?;Compressor;maximum part load ratio; positive ratio; Maximum part load ratio as a fraction of nominal capacity.
+Which properties has a Compressor?;Compressor;compressor speed; real; Compressor speed. Usually measured in cycles/s.
+Which properties has a Compressor?;Compressor;nominal capacity; real; Compressor nameplate capacity. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;ideal capacity; real; Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;ideal shaft power; real; Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;has hot gas bypass; boolean; Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.
+Which properties has a Compressor?;Compressor;impeller diameter; positive real; Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).
+Which properties has a Boiler?;Boiler;pressure rating; real; Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Boiler?;Boiler;operating mode; {fixed, two step modulating, etc.} Identifies the operating mode of the boiler.
+Which properties has a Boiler?;Boiler;heat transfer surface area; real; Total heat transfer area of the vessel. Usually measured in square metre (m2).
+Which properties has a Boiler?;Boiler;nominal part load ratio; [real, real];Allowable part load ratio range.
+Which properties has a Boiler?;Boiler;water inlet temperature range; [real, real];Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Boiler?;Boiler;water storage capacity; real; Water storage capacity. Usually measured in cubic metre (m3).
+Which properties has a Boiler?;Boiler;is water storage heater; boolean; This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.
+Which properties has a Boiler?;Boiler;outlet temperature range; [real, real];Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).
+Which properties has a Boiler?;Boiler;nominal energy consumption; real; Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).
+Which properties has a Boiler?;Boiler;energy source; {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.};Enumeration defining the energy source or fuel cumbusted to generate heat.
+Which properties has a Transformer?;Transformer;Primary voltage; real; The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).
+Which properties has a Transformer?;Transformer;Secondary voltage; real; The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).
+Which properties has a Transformer?;Transformer;Primary current; real; The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).
+Which properties has a Transformer?;Transformer;Secondary current; real; The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).
+Which properties has a Transformer?;Transformer;Primary frequency; real; The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Transformer?;Transformer;Secondary frequency; real; The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Transformer?;Transformer;Primary apparent power; real; The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Secondary apparent power; real; The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Maximum apparent power; real; Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Secondary current type; {AC, DC}; A list of the secondary current types that can result from transformer output.
+Which properties has a Transformer?;Transformer;Short circuit voltage; complex number; A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.
+Which properties has a Transformer?;Transformer;Real impedance ratio; real ratio. The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+Which properties has a Transformer?;Transformer;Imaginary impedance ratio; real ratio. The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+Which properties has a Transformer?;Transformer;Transformer vector group; {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.};List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer). The connectivity is only relevant for three-phase transformers.
+Which properties has a Transformer?;Transformer;Is neutral primary terminal available; boolean; An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).
+Which properties has a Transformer?;Transformer;Is neutral secondary terminal available; boolean; An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).
+Which properties has a Flow meter?;Flow meter;read out type; {dial, digital, etc.};Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.
+Which properties has a Flow meter?;Flow meter;remote reading; boolean; Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).
+Which properties has a Condenser?;Condenser;refrigerant class; {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.};Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Condenser?;Condenser;external surface area; real; External surface area (both primary and secondary area). Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;internal surface area; real; Internal surface area. Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;internal refrigerant volume; real; Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).
+Which properties has a Condenser?;Condenser;internal water volume; real; Internal volume of condenser (water side). Usually measured in cubic metre (m3).
+Which properties has a Condenser?;Condenser;nominal heat transfer area; real; Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;nominal heat transfer coefficient; real; Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+Which properties has a shading device?;shading device;Shading device type; {fixed, movable, overhang, sidefin, etc.]. Specifies the type of shading device.
+Which properties has a shading device?;shading device;Is external; boolean; Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.
+Which properties has a shading device?;shading device;Mechanical operated; boolean; Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).
+Which properties has a shading device?;shading device;Thermal transmittance; real; IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.
+Which properties has a shading device?;shading device;Solar transmittance; positive ratio; (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+Which properties has a shading device?;shading device;Visible light transmittance; positive ratio; Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.
+Which properties has a shading device?;shading device;Solar reflectance; positive ratio; (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+Which properties has a shading device?;shading device;Visible light reflectance; positive ratio; Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.
+Which properties has a shading device?;shading device;Roughness; string; A measure of the vertical deviations of the surface.
+Which properties has a protective device tripping unit?;protective device tripping unit;Standard; string; the designation of the Standard applicable for the definition of the characteristics of the tripping_unit.
+Which properties has a protective device tripping unit?;protective device tripping unit;Limiting terminal size; real; The maximum terminal size capacity of the device. Usually measured in square metre (m2).
+Which properties has a Valve?;Valve;valve pattern; {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.};The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.
+Which properties has a Valve?;Valve;valve operation; {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.};The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.
+Which properties has a Valve?;Valve;valve mechanism; {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.};The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.
+Which properties has a Valve?;Valve;size; real; The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).
+Which properties has a Valve?;Valve;test pressure; real; The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Valve?;Valve;working pressure; real; The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Valve?;Valve;flow coefficient; real; Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.
+Which properties has a Valve?;Valve;close off rating; real; Close off rating. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Vibration isolator?;Vibration isolator;vibration transmissibility; positive ratio; the vibration transmissibility percentage.
+Which properties has a Vibration isolator?;Vibration isolator;isolator static deflection; real; Static deflection of the vibration isolator. Usually measured in millimeters (mm).
+Which properties has a Vibration isolator?;Vibration isolator;isolator compressibility; real ratio. The compressibility of the vibration isolator.
+Which properties has a Vibration isolator?;Vibration isolator;height; real; Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).
+Which properties has a Vibration isolator?;Vibration isolator;maximum supported weight; real; The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Filter?;Filter;weight; real; Weight of filter. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Filter?;Filter;initial resistance; real; Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;final resistance; real; Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;operation temperature range; [real, real];Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Filter?;Filter;flow rate range; [real, real];Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.
+Which properties has a Filter?;Filter;nominal filter face velocity; real; Filter face velocity. Usually measured in m/s.
+Which properties has a Filter?;Filter;nominal media surface velocity; real; Average fluid velocity at the media surface. Usually measured in m/s.
+Which properties has a Filter?;Filter;nominal pressure drop; real; Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;nominal flow rate; real; Nominal fluid flow rate through the filter. Usually measured in m3/s.
+Which properties has a Filter?;Filter;nominal particle geometric mean diameter; real; Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).
+Which properties has a Filter?;Filter;nominal particle geometric standard deviation; real; Particle geometric standard deviation associated with nominal efficiency.
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diff --git a/SAREF4BLD/requirements/Properties6.csv b/SAREF4BLD/requirements/Properties6.csv
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+question;class;property;type;description
+Which properties has a tank?;tank;access type; {none, loose cover, manhole, secured cover, secured cover with manhole, etc.};Defines the types of access (or cover) to a tank that may be specified. Note that covers are generally specified for rectangular tanks. For cylindrical tanks, access will normally be via a manhole.
+Which properties has a tank?;tank;storage type; {ice, water, rain water, waste water, potable water, fuel, oil, etc.};Defines the general material category intended to be stored.
+Which properties has a tank?;tank;nominal length or diameter; real; The nominal length or, in the case of a vertical cylindrical tank, the nominal diameter of the tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal width or diameter; real; The nominal width or, in the case of a horizontal cylindrical tank, the nominal diameter of the tank. Note: Not required for a vertical cylindrical tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal depth; real; The nominal depth of the tank. Note: Not required for a horizontal cylindrical tank. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;nominal capacity; real; The total nominal or design volumetric capacity of the tank. Usually measured in cubic metre (m3).
+Which properties has a tank?;tank;effective capacity; real; The total effective or actual volumetric capacity of the tank. Usually measured in cubic metre (m3).B3
+Which properties has a tank?;tank;operating wight; real; Operating weight of the tank including all of its contents. Usually measured in kilograms (kg) or grams (g).
+Which properties has a tank?;tank;pattern type; {horizontal cylinder, vertical cylinder, rectangular, etc.};Defines the types of pattern (or shape of a tank that may be specified.
+Which properties has a tank?;tank;end shape type; {concave convex, flat convex, convex convex, concave flat, flat flat, etc.};Defines the types of end shapes that can be used for preformed tanks. The convention for reading these enumerated values is that for a vertical cylinder, the first value is the base and the second is the top for a horizontal cylinder, the order of reading should be left to right. For a speherical tank, the value UNSET should be used.B5
+Which properties has a tank?;tank;first curvature radius; real; FirstCurvatureRadius should be defined as the base or left side radius of curvature value. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;second curvature radius; real; SecondCurvatureRadius should be defined as the top or right side radius of curvature value. Usually measured in millimeters (mm).
+Which properties has a tank?;tank;number of sections;integer; Number of sections used in the construction of the tank. Default is 1. Note: All sections assumed to be the same size.
+Which properties has a Humidifier?;Humidifier;application; {portable, fixed, etc.};Humidifier application. Fixed: Humidifier installed in a ducted flow distribution system. Portable: Humidifier is not installed in a ducted flow distribution system.
+Which properties has a Humidifier?;Humidifier;weight; real; The weight of the humidifier. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Humidifier?;Humidifier;nominal moisture gain; real; Nominal rate of water vapor added into the airstream. Usually measured in kg/s.
+Which properties has a Humidifier?;Humidifier;nominal air flow rate; real; Nominal rate of air flow into which water vapor is added. Usually measured in m3/s.
+Which properties has a Humidifier?;Humidifier;internal control; {on off, stepped, modulating, none, etc.};Internal modulation control.
+Which properties has a Humidifier?;Humidifier;water requirement; ratio; Make-up water requirement. Usually measured in m3/s.
+Which properties has a Heat exchanger?;Heat exchanger;arrangement; {counter flow, cross flow, parallel flow, multipass, etc.};Defines the basic flow arrangements for the heat exchanger: COUNTERFLOW: Counterflow heat exchanger arrangement. CROSSFLOW: Crossflow heat exchanger arrangement. PARALLELFLOW: Parallel flow heat exchanger arrangement. MULTIPASS: Multipass flow heat exchanger arrangement. OTHER: Other type of heat exchanger flow arrangement not defined above.
+Which properties has a transport element?;transport element;capacity people; natural; capacity of the transportation element measured in numbers of person.
+Which properties has a transport element?;transport element;capacity weight; real; Capacity of the transport element measured by weight. Usually measured in kilograms (kg) or grams (g).
+Which properties has a transport element?;transport element;fire exit; boolean; Indication whether this object is designed to serve as an exit in the case of fire (TRUE) or not (FALSE). Here whether the transport element (in case of e.g., a lift) is designed to serve as a fire exit, e.g., for fire escape purposes.
+Which properties has a Lamp?;Lamp;Contributed luminous flux; real; Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior (partial luminous flux for a solid angle). All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens (lm). The luminous flux is given as a nominal value for each lamp. Usually measured in Lumen (lm, Candela Steradian).
+Which properties has a Lamp?;Lamp;Light emitter nominal power; real; Light emitter nominal power. Usually measured in Watts (W, J/s).
+Which properties has a Lamp?;Lamp;Lamp maintenance factor; real; Non recoverable losses of luminous flux of a lamp due to lamp depreciation i.e. the decreasing of light output of a luminaire due to aging and dirt.
+Which properties has a Lamp?;Lamp;Lamp ballast type; {conventional, eletronic, lowloss, etc.}; The type of ballast used to stabilise gas discharge by limiting the current during operation and to deliver the necessary striking voltage for starting. Ballasts are needed to operate Discharge Lamps such as Fluorescent, Compact Fluorescent, High-pressure Mercury, Metal Halide and High-pressure Sodium Lamps. Magnetic ballasts are chokes which limit the current passing through a lamp connected in series on the principle of self-induction. The resultant current and power are decisive for the efficient operation of the lamp. A specially designed ballast is required for every type of lamp to comply with lamp rating in terms of Luminous Flux, Color Appearance and service life. The two types of magnetic ballasts for fluorescent lamps are KVG Conventional (EC-A series) and VVG Low-loss ballasts (EC-B series). Low-loss ballasts have a higher efficiency, which means reduced ballast losses and a lower thermal load. Electronic ballasts are used to run fluorescent lamps at high frequencies (approx. 35 - 40 kHz).
+Which properties has a Lamp?;Lamp;Lamp compensation type; {capacitive, inductive, etc.}; Identifies the form of compensation used for power factor correction and radio suppression.
+Which properties has a Lamp?;Lamp;Color appearance; string; In both the DIN and CIE standards, artificial light sources are classified in terms of their color appearance. To the human eye they all appear to be white the difference can only be detected by direct comparison. Visual performance is not directly affected by differences in color appearance.
+Which properties has a Lamp?;Lamp;Spectrum; [real, real];The spectrum of radiation describes its composition with regard to wavelength. Light, for example, as the portion of electromagnetic radiation that is visible to the human eye, is radiation with wavelengths in the range of approx. 380 to 780 nm (1 nm = 10 m). The corresponding range of colours varies from violet to indigo, blue, green, yellow, orange, and red. These colours form a continuous spectrum, in which the various spectral sectors merge into each other.
+Which properties has a Lamp?;Lamp;Color tempeature; real; The color temperature of any source of radiation is defined as the temperature (in Kelvin) of a black-body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black-body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K (warm white) to 4000K (intermediate) and over 5000K (daylight). Usually measured in degrees Kelvin (K).
+Which properties has a Lamp?;Lamp;Color rendering index;integer; The CRI indicates how well a light source renders eight standard colors compared to perfect reference lamp with the same color temperature. The CRI scale ranges from 1 to 100, with 100 representing perfect rendering properties.
+Which properties has a Electric generator?;Electric generator;Electric generator efficiency; positive ratio; the ratio of output capacity to intake capacity.
+Which properties has a Electric generator?;Electric generator;Start current factor; real; IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+Which properties has a Electric generator?;Electric generator;Maximum power output; real; The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+Which properties has a Burner?;Burner;energy source; {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.};Enumeration defining the energy source or fuel cumbusted to generate heat.
+Which properties has a Engine?;Engine;energy source; {diesel, gasoline, natural gas, propane, biodiesel, sewage gas, hydrogen, bifuel, etc.};The source of energy.
+Which properties has a Evaporator?;Evaporator;evaporation medium type; {cold liquid, cold air, etc.};ColdLiquid: Evaporator is using liquid type of fluid to exchange heat with refrigerant. ColdAir: Evaporator is using air to exchange heat with refrigerant.
+Which properties has a Evaporator?;Evaporator;evaporation coolant; {water, brine, clycol, etc.};The fluid used for the coolant in the evaporator.
+Which properties has a Evaporator?;Evaporator;refrigerant class; {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.}; Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Evaporator?;Evaporator;external surface area; real; External surface area (both primary and secondary area). Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;internal surface area; real; Internal surface area. Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;internal refrigerant volume; real; Internal volume of evaporator (refrigerant side). Usually measured in cubic metre (m3).
+Which properties has a Evaporator?;Evaporator;internal water volume; real; Internal volume of evaporator (water side). Usually measured in cubic metre (m3).
+Which properties has a Evaporator?;Evaporator;nominal heat transfer area; real; Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+Which properties has a Evaporator?;Evaporator;nominal heat transfer coefficient; real; Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+Which properties has an actuator?;actuator;Fail position; {fail open, fail closed}; Specifies the required fail-safe position of the actuator.
+Which properties has an actuator?;actuator;Manual override; boolean; Identifies whether hand-operated operation is provided as an override (= TRUE) or not (= FALSE). Note that this value should be set to FALSE by default in the case of a Hand Operated Actuator.
+Which properties has a Evaporative cooler?;Evaporative cooler;flow arrangement; {counter flow, cross flow, parallel flow, etc.};CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: Air and water flow enter in same directions.
+Which properties has a Evaporative cooler?;Evaporative cooler;heat exchange area; real; Heat exchange area. Usually measured in square metre (m2).
+Which properties has a Evaporative cooler?;Evaporative cooler;operational temperature range; [real, real];Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Evaporative cooler?;Evaporative cooler;water requirement; real; Make-up water requirement. Usually measured in m3/s.
+Which properties has a Pump?;Pump;flow rate range; [real, real];Allowable range of volume of fluid being pumped against the resistance specified. Usually measured in kg/s.
+Which properties has a Pump?;Pump;flow resistance range; [real, real];Allowable range of frictional resistance against which the fluid is being pumped. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Pump?;Pump;connection size; positive real; The connection size of the to and from the pump. Usually measured in millimeters (mm).
+Which properties has a Pump?;Pump;temperature range; [real, real];Allowable operational range of the fluid temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Pump?;Pump;net positive suction head; real; Minimum liquid pressure at the pump inlet to prevent cavitation. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Pump?;Pump;nomminal rotation speed; real; Pump rotational speed under nominal conditions. Usually measured in cycles/s.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;Heat transfer type enum; {sensible, laltent, etc.};Type of heat transfer between the two air streams.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;has defrost; boolean; has the heat exchanger has defrost function or not.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;operational temperature range; [real, real];Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Air to air heat recovery?;Air to air heat recovery;primary air flow rate range; [real, real];possible range of primary airflow that can be delivered. Usually measured in m3/s.
+Which properties has a Air to air heat recovery?;Air to air heat recovery;secondary air flow rate range; [real, real];possible range of secondary airflow that can be delivered. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Duct silencer?;Duct silencer;hydraulic diameter; real; Hydraulic diameter. Usually measured in millimeters (mm).
+Which properties has a Duct silencer?;Duct silencer;length; real; The finished length of the silencer. Usually measured in millimeters (mm).
+Which properties has a Duct silencer?;Duct silencer;weight; real; The weight of the silencer. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Duct silencer?;Duct silencer;air flow rate range; [real, real];Possible range of airflow that can be delivered. Usually measured in m3/s.
+Which properties has a Duct silencer?;Duct silencer;working pressure range; [real, real];Allowable minimum and maximum working pressure (relative to ambient pressure). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Duct silencer?;Duct silencer;temperature range; [real, real];Allowable minimum and maximum temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Duct silencer?;Duct silencer;has exterior insulation; boolean; TRUE if the silencer has exterior insulation. FALSE if it does not.
+Which properties has a Cooled beam?;Cooled beam;is free hanging; boolean; Is it free hanging type (not mounted in a false ceiling)?
+Which properties has a Cooled beam?;Cooled beam;water flow control system type; {none, on off valve, 2 way valve, 3 way valve, etc.}; Factory fitted waterflow control system.
+Which properties has a Cooled beam?;Cooled beam;water pressure range; [real, real];Allowable water circuit working pressure range. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Cooled beam?;Cooled beam;nominal cooling capacity; real; Nominal cooling capacity. Usually measured in Watts (W, J/s).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature cooling; real; Nominal surrounding temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding humidity cooling; normalised ratio; Nominal surrounding humidity (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature cooling; real; Nominal supply water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature cooling; real; Nominal return water temperature (refers to nominal cooling capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal water flow cooling; real; Nominal water flow (refers to nominal cooling capacity). Usually measured in m3/s.
+Which properties has a Cooled beam?;Cooled beam;nominal heating capacity; real; Nominal heating capacity. Usually measured in Watts (W, J/s).
+Which properties has a Cooled beam?;Cooled beam;nominal sorrounding temperature heating; real; Nominal surrounding temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal supply water temperature heating; real; Nominal supply water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal return water temperature heating; real; Nominal return water temperature (refers to nominal heating capacity). Usually measured in degrees Kelvin (K).
+Which properties has a Cooled beam?;Cooled beam;nominal water flow heating; real; Nominal water flow (refers to nominal heating capacity). Usually measured in m3/s.
+Which properties has a Cooled beam?;Cooled beam;integrated lighting type; {none, direct, indirect, direct and indirect, etc.};Integrated lighting in cooled beam.
+Which properties has a Cooled beam?;Cooled beam;pipe connection enum; {straight, right, left, top, etc.};The manner in which the pipe connection is made to the cooled beam.
+Which properties has a Cooled beam?;Cooled beam;finish color; string; Finish color for cooled beam.
+Which properties has a Cooled beam?;Cooled beam;coil length; positive real; Length of coil. Usually measured in millimeters (mm).
+Which properties has a Cooled beam?;Cooled beam;coil width; positive real; Width of coil. Usually measured in millimeters (mm
+Which properties has a Outlet?;Outlet;Is pluggable outlet; logical; Indication of whether the outlet accepts a loose plug connection (= TRUE) or whether it is directly connected (= FALSE) or whether the form of connection has not yet been determined (= UNKNOWN).
+Which properties has a Outlet?;Outlet;Number os sockets;integer; The number of sockets that may be connected. In case of inconsistency, sockets defined on ports take precedence.
+Which properties has a Electric motor?;Electric motor;Maximum power output; real; The maximum output power rating of the engine. Usually measured in Watts (W, J/s).
+Which properties has a Electric motor?;Electric motor;Electric motor efficiency; positive ratio; The ratio of output capacity to intake capacity.
+Which properties has a Electric motor?;Electric motor;Start current factor; real; IEC. Start current factor defines how large the peek starting current will become on the engine. StartCurrentFactor is multiplied to NominalCurrent and we get the start current.
+Which properties has a Electric motor?;Electric motor;Starting time; real; The time (in s) needed for the motor to reach its rated speed with its driven equipment attached, starting from standstill and at the nominal voltage applied at its terminals.
+Which properties has a Electric motor?;Electric motor;Te time; real; The maximum time (in s) at which the motor could run with locked rotor when the motor is used in an EX-environment. The time indicates that a protective device should trip before this time when the starting current of the motor is slowing through the device.
+Which properties has a Electric motor?;Electric motor;Locked rotor current; real; Input current when a motor armature is energized but not rotating. Usually measured in Ampere (A).
+Which properties has a Electric motor?;Electric motor;Motor enclosure type; {open drip proof, totally enclosed air over, totally enclosed fan cooled, totally enclosed non ventilated, etc.}; A list of the available types of motor enclosure from which that required may be selected.
+Which properties has a Electric motor?;Electric motor;Frame size; string; Designation of the frame size according to the named range of frame sizes designated at the place of use or according to a given standard.
+Which properties has a Electric motor?;Electric motor;Is guarded; boolean; Indication of whether the motor enclosure is guarded (= TRUE) or not (= FALSE).
+Which properties has a Electric motor?;Electric motor;Has part winding; boolean; Indication of whether the motor is single speed, i.e. has a single winding (= FALSE) or multi-speed i.e.has part winding (= TRUE) .
+Which properties has a audio visual appliance?;audio visual appliance;Media source; string; Indicates media sources and corresponding names of ports (IfcDistributionPort with FlowDirection=SINK and PredefinedType=AUDIOVISUAL) or aggregated audio/video components (IfcAudioVisualAppliance).
+Which properties has a audio visual appliance?;audio visual appliance;Audio volume; real; Indicates discrete audio volume levels and corresponding sound power offsets, if applicable. Missing values may be interpolated. Measured in watts.
+Which properties has a Fan?;Fan;motor drive type; {direct drive, belt drive, coupling, etc.};Motor drive type: DIRECTDRIVE: Direct drive. BELTDRIVE: Belt drive. COUPLING: Coupling. OTHER: Other type of motor drive. UNKNOWN: Unknown motor drive type.
+Which properties has a Fan?;Fan;capacity control type; {inlet vane, variable speed drive, blade pitch angle, two speed, discharge damper, etc.};InletVane: Control by adjusting inlet vane. VariableSpeedDrive: Control by variable speed drive. BladePitchAngle: Control by adjusting blade pitch angle. TwoSpeed: Control by switch between high and low speed. DischargeDamper: Control by modulating discharge damper.
+Which properties has a Fan?;Fan;operation temperature range; [real, real];Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Fan?;Fan;nominal air flow rate; real; Nominal air flow rate. Usually measured in m3/s.
+Which properties has a Fan?;Fan;nominal total pressure; real; Nominal total pressure rise across the fan. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Fan?;Fan;nominal static pressure; real; The static pressure within the air stream that the fan must overcome to insure designed circulation of air. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Fan?;Fan;nominal rotation speed; real; Nominal fan wheel speed. Usually measured in cycles/s.
+Which properties has a Fan?;Fan;nominal power rate; real; Nominal fan power rate.Usually measured in Watts (W, J/s).
+Which properties has a Fan?;Fan;operational riterial; real; Time of operation at maximum operational ambient air temperature. Measured in seconds (s) or days (d) or other units of time.
+Which properties has a Interceptor?;Interceptor;nominal body length; real; Nominal or quoted length, measured along the x-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;nominal body width; real; Nominal or quoted length, measured along the y-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;nominal body depth; real; Nominal or quoted =length, measured along the z-axis of the local coordinate system of the object, of the body of the object. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;inlet connection size; real; Size of the inlet connection. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;outlet connection size; real; Size of the outlet connection. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;cover length; real; The length measured along the x-axis in the local coordinate system or the radius (in the case of a circular shape in plan) of the cover of the oil interceptor. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;cover width; real; The length measured along the x-axis in the local coordinate system of the cover of the oil interceptor. Usually measured in millimeters (mm).
+Which properties has a Interceptor?;Interceptor;ventilating pipe size; real; Size of the ventilating pipe(s). Usually measured in millimeters (mm).
+Which properties has a Chiller?;Chiller;nominal capacity; real; Nominal cooling capacity of chiller at standardized conditions as defined by the agency having jurisdiction. Usually measured in Watts (W, J/s).
+Which properties has a Chiller?;Chiller;nominal efficiency; positive ratio; Nominal chiller efficiency under nominal conditions.
+Which properties has a Chiller?;Chiller;nominal condensing temperature; real; Chiller condensing temperature. Usually measured in degrees Kelvin (K).
+Which properties has a Chiller?;Chiller;nominal evaporating temmperature; real; Chiller evaporating temperature.Usually measured in degrees Kelvin (K).
+Which properties has a Chiller?;Chiller;nominal heat rejection rate; real; Sum of the refrigeration effect and the heat equivalent of the power input to the compressor. Usually measured in Watts (W, J/s).
+Which properties has a Chiller?;Chiller;nominal power consumption; real; Nominal total power consumption. Usually measured in Watts (W, J/s).
+Which properties has a Cooling tower?;Cooling tower;nominal capcity; real; Nominal cooling tower capacity in terms of heat transfer rate of the cooling tower between air stream and water stream at nominal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Cooling tower?;Cooling tower;circuit type; {open circuit, closed circuit wet, closed circuit dry, closed circuit dry wet, etc.};OpenCircuit: Exposes water directly to the cooling atmosphere. CloseCircuit: The fluid is separated from the atmosphere by a heat exchanger. Wet: The air stream or the heat exchange surface is evaporatively cooled. Dry: No evaporation into the air stream. DryWet: A combination of a dry tower and a wet tower.
+Which properties has a Cooling tower?;Cooling tower;flow arrangement; {counter flow, cross flow, parallel flow, etc.}; CounterFlow: Air and water flow enter in different directions. CrossFlow: Air and water flow are perpendicular. ParallelFlow: air and water flow enter in same directions.
+Which properties has a Cooling tower?;Cooling tower;spray type; {spray filled, splash type fill, film type fill, etc.}; SprayFilled: Water is sprayed into airflow. SplashTypeFill: water cascades over successive rows of splash bars. FilmTypeFill: water flows in a thin layer over closely spaced sheets.
+Which properties has a Cooling tower?;Cooling tower;capacity control; {fan cycling, two-spreed fan, variable speed fan, dampers control, bypass valve control, multiple series pumps, two-speed pump, variable speed pump, etc.};FanCycling: Fan is cycled on and off to control duty. TwoSpeedFan: Fan is switched between low and high speed to control duty. VariableSpeedFan: Fan speed is varied to control duty. DampersControl: Dampers modulate the air flow to control duty. BypassValveControl: Bypass valve modulates the water flow to control duty. MultipleSeriesPumps: Turn on/off multiple series pump to control duty. TwoSpeedPump: Switch between high/low pump speed to control duty. VariableSpeedPump: vary pump speed to control duty.
+Which properties has a Cooling tower?;Cooling tower;control strategy; {fixed existing water temp, wer bulb temp reset, etc.};FixedExitingWaterTemp: The capacity is controlled to maintain a fixed exiting water temperature. WetBulbTempReset: The set-point is reset based on the wet-bulb temperature.
+Which properties has a Cooling tower?;Cooling tower;number of cells;integer; Number of cells in one cooling tower unit.
+Which properties has a Cooling tower?;Cooling tower;basin reserve volume; real; Volume between operating and overflow levels in cooling tower basin. Usually measured in cubic metre (m3).
+Which properties has a Cooling tower?;Cooling tower;lift elevation difference; real; Elevation difference between cooling tower sump and the top of the tower. Usually measured in millimeters (mm).
+Which properties has a Cooling tower?;Cooling tower;water requirement; real; Make-up water requirements. Usually measured in m3/s.
+Which properties has a Cooling tower?;Cooling tower;operation temperature range; real; Allowable operation ambient air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Cooling tower?;Cooling tower;ambient design dry bulb temperature; real; Ambient design dry bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+Which properties has a Cooling tower?;Cooling tower;ambient design wet bulb temperature; real; Ambient design wet bulb temperature used for selecting the cooling tower. Usually measured in degrees Kelvin (K).
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage; real; The nominal voltage of the supply. Usually measured in Volts (V, W/A).
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal supply voltage offset; [real, real]; The maximum and minimum allowed voltage of the supply e.g. boundaries of 380V/440V may be applied for a nominal voltage of 400V.
+Which properties has a Electric flow storage device?;Electric flow storage device;Nominal frequency; real; The nominal frequency of the supply. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Switching device?;Switching device;Number of gangs;integer; Number of gangs/buttons on this switch.
+Which properties has a Switching device?;Switching device;Switch function; {on off switch, intermediate switch, double throw switch, etc.};Indicates types of switches which differs in functionality.
+Which properties has a Switching device?;Switching device;Has lock; boolean; Indication of whether a switching device has a key operated lock (=TRUE) or not (= FALSE).
+Which properties has a Switching device?;Switching device;is illuminated; boolean; An indication of whether there is an illuminated indicator to show that the switch is on (=TRUE) or not (= FALSE).
+Which properties has a Switching device?;Switching device;Legend; string; A text inscribed or applied to the switch as a legend to indicate purpose or function.
+Which properties has a Switching device?;Switching device;Set point; Resource; Indicates the setpoint and label. For toggle switches, there are two positions, 0 for off and 1 for on. For dimmer switches, the values may indicate the fully-off and full-on positions, where missing integer values in between are interpolated. For selector switches, the range indicates the available positions. An IfcTable may be attached (using IfcMetric and IfcPropertyConstraintRelationship) containing columns of the specified header names and types: 'Position' (IfcInteger): The discrete setpoint level. 'Sink' (IfcLabel): The Name of the switched input port (IfcDistributionPort with FlowDirection=SINK). 'Source' (IfcLabel): The Name of the switched output port (IfcDistributionPort with FlowDirection=SOURCE). 'Ratio' (IfcNormalizedRatioMeasure): The ratio of power at the setpoint where 0.0 is off and 1.0 is fully on.
+Which properties has a Tube bundle?;Tube bundle;Number of rows;integer; Number of tube rows in the tube bundle assembly.
+Which properties has a Tube bundle?;Tube bundle;staggered row spacing; real; Staggered tube row spacing. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;in line row spacing; real; In-line tube row spacing. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;number of circuits;integer; Number of parallel fluid tube circuits.
+Which properties has a Tube bundle?;Tube bundle;fouling factor; real; Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+Which properties has a Tube bundle?;Tube bundle;thermal conductivity; real; Fouling factor of the tubes in the tube bundle. Usually measured in m2 Kelvin/Watt.
+Which properties has a Tube bundle?;Tube bundle;length; real; Length of the tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;volumen; real; Total volume of fluid in the tubes and their headers. Usually measured in cubic metre (m3).
+Which properties has a Tube bundle?;Tube bundle;nominal diameter; real; Nominal diameter or width of the tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;outside diameter; real; Actual outside diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;inside diameter; real; Actual inner diameter of the tube in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;horizontal spacing; real; Horizontal spacing between tubes in the tube bundle. Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;vertical spacing; real; Vertical spacing between tubes in the tube bundle.Usually measured in millimeters (mm).
+Which properties has a Tube bundle?;Tube bundle;has turbulator; boolean; TRUE if the tube has a turbulator, FALSE if it does not.
+Which properties has a Damper?;Damper;operation; {automatic, manual, etc.};The operational mechanism for the damper operation.
+Which properties has a Damper?;Damper;orientation; {vertical, horizontal, vertical or horizontal, etc.};The intended orientation for the damper as specified by the manufacturer.
+Which properties has a Damper?;Damper;blade thickness; real; The thickness of the damper blade. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;blade action; {folding curtain, parallel, opposed, single, etc.};Blade action.
+Which properties has a Damper?;Damper;blade shape; {flat, fabricated airfoil, extruded airfoil, etc.};Blade shape. Flat means triple V-groove.
+Which properties has a Damper?;Damper;blade edge; {crimped, uncrimped, etc.};Blade edge.
+Which properties has a Damper?;Damper;number of blades;integer; Number of blades.
+Which properties has a Damper?;Damper;face area; real; Face area open to the airstream. Usually measured in square metre (m2).
+Which properties has a Damper?;Damper;maximum air flow rate; real; Maximum allowable air flow rate. Usually measured in m3/s.
+Which properties has a Damper?;Damper;temperature range; [real, real];Temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Damper?;Damper;maximum working pressure; real; Maximum working pressure. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Damper?;Damper;temperature rating; real; Temperature rating. Usually measured in degrees Kelvin (K).
+Which properties has a Damper?;Damper;nominal air flow rate; real; Nominal air flow rate. Usually measured in m3/s.
+Which properties has a Damper?;Damper;open pressure drop; real; Total pressure drop across damper. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Damper?;Damper;leakage fully closed; real; Leakage when fully closed. Usually measured in m3/s.
+Which properties has a Damper?;Damper;frame type; string; The type of frame used by the damper (e.g., Standard, Single Flange, Single Reversed Flange, Double Flange, etc.).
+Which properties has a Damper?;Damper;frame depth; real; The length (or depth) of the damper frame. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;frame thickness; real; The thickness of the damper frame material. Usually measured in millimeters (mm).
+Which properties has a Damper?;Damper;close off rating; real; Close off rating. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Coil?;Coil;operational temperature range; [real, real];Allowable operational air temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Coil?;Coil;air flow rate range; [real, real];Possible range of airflow that can be delivered. For cases where there is no airflow across the coil (e.g. electric coil in a floor slab), then the value is zero. Usually measured in m3/s.
+Which properties has a Coil?;Coil;nominal sensible capacity; real; Nominal sensible capacity. Usually measured in Watts (W, J/s).
+Which properties has a Coil?;Coil;nominal latent capacity; real; Nominal latent capacity. Usually measured in Watts (W, J/s).
+Which properties has a Coil?;Coil;nominal UA; real; Nominal UA value.
+Which properties has a Coil?;Coil;placement type; {floor, ceiling, unit, etc.}; Indicates the placement of the coil. FLOOR indicates an under floor heater (if coil type is WATERHEATINGCOIL or ELECTRICHEATINGCOIL), CEILING indicates a cooling ceiling (if coil type is WATERCOOLINGCOIL), UNIT indicates that the coil is part of a cooling or heating unit, like cooled beam, etc.
+Which properties has a Space heater?;Space heater;placement type; {baseboard, towel warmer, suspended, wall, etc.};Indicates how the space heater is designed to be placed.
+Which properties has a Space heater?;Space heater;temperature classification; {low temperature, high temperature, etc.};Enumeration defining the temperature classification of the space heater surface temperature. low temperature - surface temperature is relatively low, usually heated by hot water or electricity. high temperature - surface temperature is relatively high, usually heated by gas or steam.
+Which properties has a Space heater?;Space heater;heat transfer dimension; {point, path, surface, etc.};Indicates how heat is transmitted according to the shape of the space heater.
+Which properties has a Space heater?;Space heater;heat transfer medium; {water, steam, etc.};Enumeration defining the heat transfer medium if applicable.
+Which properties has a Space heater?;Space heater;energy source; {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.};Enumeration defining the energy source or fuel combusted to generate heat if applicable. Note: hydronic heaters shall use UNSET, dual-use hydronic/electric heaters shall use ELECTRICITY.
+Which properties has a Space heater?;Space heater;body mass; real; Overall body mass of the heater. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Space heater?;Space heater;thermal mass heat capacity; real; Product of component mass and specific heat.
+Which properties has a Space heater?;Space heater;output capacity; real; Total nominal heat output as listed by the manufacturer. Usually measured in Watts (W, J/s).
+Which properties has a Space heater?;Space heater;thermal efficiency; normalised ratio; Overall Thermal Efficiency is defined as gross energy output of the heat transfer device divided by the energy input.
+Which properties has a Space heater?;Space heater;number of panels;integer; Number of panels.
+Which properties has a Space heater?;Space heater;number of sections;integer; Number of vertical sections, measured in the direction of flow.
+Which properties has a Compressor?;Compressor;power source; {motor driven, engine driven, gas turbine, etc.}; Type of power driving the compressor.
+Which properties has a Compressor?;Compressor;refrigerant class; {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.};Refrigerant class used by the compressor. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Compressor?;Compressor;minimun part load ratio; positive ratio; Minimum part load ratio as a fraction of nominal capacity.
+Which properties has a Compressor?;Compressor;maximum part load ratio; positive ratio; Maximum part load ratio as a fraction of nominal capacity.
+Which properties has a Compressor?;Compressor;compressor speed; real; Compressor speed. Usually measured in cycles/s.
+Which properties has a Compressor?;Compressor;nominal capacity; real; Compressor nameplate capacity. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;ideal capacity; real; Compressor capacity under ideal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;ideal shaft power; real; Compressor shaft power under ideal conditions. Usually measured in Watts (W, J/s).
+Which properties has a Compressor?;Compressor;has hot gas bypass; boolean; Whether or not hot gas bypass is provided for the compressor. TRUE = Yes, FALSE = No.
+Which properties has a Compressor?;Compressor;impeller diameter; positive real; Diameter of compressor impeller - used to scale performance of geometrically similar compressors. Usually measured in millimeters (mm).
+Which properties has a Boiler?;Boiler;pressure rating; real; Nominal pressure rating of the boiler as rated by the agency having jurisdiction. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Boiler?;Boiler;operating mode; {fixed, two step modulating, etc.}; Identifies the operating mode of the boiler.
+Which properties has a Boiler?;Boiler;heat transfer surface area; real; Total heat transfer area of the vessel. Usually measured in square metre (m2).
+Which properties has a Boiler?;Boiler;nominal part load ratio; [real, real];Allowable part load ratio range.
+Which properties has a Boiler?;Boiler;water inlet temperature range; [real, real];Allowable water inlet temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Boiler?;Boiler;water storage capacity; real; Water storage capacity. Usually measured in cubic metre (m3).
+Which properties has a Boiler?;Boiler;is water storage heater; boolean; This is used to identify if the boiler has storage capacity (TRUE). If FALSE, then there is no storage capacity built into the boiler, such as an instantaneous hot water heater.
+Which properties has a Boiler?;Boiler;outlet temperature range; [real, real];Allowable outlet temperature of either the water or the steam. Usually measured in degrees Kelvin (K).
+Which properties has a Boiler?;Boiler;nominal energy consumption; real; Nominal fuel consumption rate required to produce the total boiler heat output. Usually measured in Watts (W, J/s).
+Which properties has a Boiler?;Boiler;energy source; {coal, coal pulverized, elecricity, gas, oil, propaen, wood, wood chip, wood pellet, wood pulverized, etc.};Enumeration defining the energy source or fuel cumbusted to generate heat.
+Which properties has a Transformer?;Transformer;Primary voltage; real; The voltage that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Volts (V, W/A).
+Which properties has a Transformer?;Transformer;Secondary voltage; real; The voltage that has been transformed and is running out of the transformer on the secondary side. Usually measured in Volts (V, W/A).
+Which properties has a Transformer?;Transformer;Primary current; real; The current that is going to be transformed and that runs into the transformer on the primary side. Usually measured in Ampere (A).
+Which properties has a Transformer?;Transformer;Secondary current; real; The current that has been transformed and is running out of the transformer on the secondary side. Usually measured in Ampere (A).
+Which properties has a Transformer?;Transformer;Primary frequency; real; The frequency that is going to be transformed and that runs into the transformer on the primary side. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Transformer?;Transformer;Secondary frequency; real; The frequency that has been transformed and is running out of the transformer on the secondary side. Usually measured in cycles/s or Hertz (Hz).
+Which properties has a Transformer?;Transformer;Primary apparent power; real; The power in VA (volt ampere) that has been transformed and that runs into the transformer on the primary side. Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Secondary apparent power; real; The power in VA (volt ampere) that has been transformed and is running out of the transformer on the secondary side. Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Maximum apparent power; real; Maximum apparent power/capacity in VA (volt ampere). Usually measured in Watts (W, J/s).
+Which properties has a Transformer?;Transformer;Secondary current type; {AC, DC}; A list of the secondary current types that can result from transformer output.
+Which properties has a Transformer?;Transformer;Short circuit voltage; complex number; A complex number that specifies the real and imaginary parts of the short-circuit voltage at rated current of a transformer given in %.
+Which properties has a Transformer?;Transformer;Real impedance ratio; real ratio; The ratio between the real part of the zero sequence impedance and the real part of the positive impedance (i.e. real part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+Which properties has a Transformer?;Transformer;Imaginary impedance ratio; real ratio; The ratio between the imaginary part of the zero sequence impedance and the imaginary part of the positive impedance (i.e. imaginary part of the short-circuit voltage) of the transformer. Used for three-phase transformer which includes a N-conductor.
+Which properties has a Transformer?;Transformer;Transformer vector group; {Dd0, Dd6, Dy5, Dy11, Yd5, Yd11, Dz0, Dz6, Yy0, Yy6, Yz5, Yz11, etc.};List of the possible vector groups for the transformer from which that required may be set. Values in the enumeration list follow a standard international code where the first letter describes how the primary windings are connected, the second letter describes how the secondary windings are connected, and the numbers describe the rotation of voltages and currents from the primary to the secondary side in multiples of 30 degrees. D: means that the windings are delta-connected. Y: means that the windings are star-connected. Z: means that the windings are zig-zag connected (a special start-connected providing low reactance of the transformer). The connectivity is only relevant for three-phase transformers.
+Which properties has a Transformer?;Transformer;Is neutral primary terminal available; boolean; An indication of whether the neutral point of the primary winding is available as a terminal (=TRUE) or not (= FALSE).
+Which properties has a Transformer?;Transformer;Is neutral secondary terminal available; boolean; An indication of whether the neutral point of the secondary winding is available as a terminal (=TRUE) or not (= FALSE).
+Which properties has a Flow meter?;Flow meter;read out type; {dial, digital, etc.};Indication of the form that readout from the meter takes. In the case of a dial read out, this may comprise multiple dials that give a cumulative reading and/or a mechanical odometer.
+Which properties has a Flow meter?;Flow meter;remote reading; boolean; Indicates whether the meter has a connection for remote reading through connection of a communication device (set TRUE) or not (set FALSE).
+Which properties has a Condenser?;Condenser;refrigerant class; {CFC (Chlorofluorocarbons), HCFC (Hydrochlorofluorocarbons), HFC (Hydrofluorocarbons), hydrocarbons, ammonia, CO2, H2O, etc.};Refrigerant class used by the condenser. CFC: Chlorofluorocarbons. HCFC: Hydrochlorofluorocarbons. HFC: Hydrofluorocarbons.
+Which properties has a Condenser?;Condenser;external surface area; real; External surface area (both primary and secondary area). Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;internal surface area; real; Internal surface area. Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;internal refrigerant volume; real; Internal volume of condenser (refrigerant side). Usually measured in cubic metre (m3).
+Which properties has a Condenser?;Condenser;internal water volume; real; Internal volume of condenser (water side). Usually measured in cubic metre (m3).
+Which properties has a Condenser?;Condenser;nominal heat transfer area; real; Nominal heat transfer surface area associated with nominal overall heat transfer coefficient. Usually measured in square metre (m2).
+Which properties has a Condenser?;Condenser;nominal heat transfer coefficient; real; Nominal overall heat transfer coefficient associated with nominal heat transfer area. Usually measured in Watts/m2 Kelvin.
+Which properties has a shading device?;shading device;Shading device type; {fixed, movable, overhang, sidefin, etc.}; Specifies the type of shading device.
+Which properties has a shading device?;shading device;Is external; boolean; Indication whether the element is designed for use in the exterior (TRUE) or not (FALSE). If (TRUE) it is an external element and faces the outside of the building.
+Which properties has a shading device?;shading device;Mechanical operated; boolean; Indication whether the element is operated machanically (TRUE) or not, i.e. manually (FALSE).
+Which properties has a shading device?;shading device;Thermal transmittance; real; IfcThermalTransmittanceMeasure is a measure of the rate at which energy is transmitted through a body. Usually measured in Watts/m2 Kelvin.
+Which properties has a shading device?;shading device;Solar transmittance; positive ratio; (Tsol) The ratio of incident solar radiation that directly passes through a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+Which properties has a shading device?;shading device;Visible light transmittance; positive ratio; Fraction of the visible light that passes the shading system at normal incidence. It is a value without unit.
+Which properties has a shading device?;shading device;Solar reflectance; positive ratio; (Rsol): The ratio of incident solar radiation that is reflected by a shading system (also named _e). Note the following equation Asol + Rsol + Tsol = 1
+Which properties has a shading device?;shading device;Visible light reflectance; positive ratio; Fraction of the visible light that is reflected by the glazing at normal incidence. It is a value without unit.
+Which properties has a shading device?;shading device;Roughness; string; A measure of the vertical deviations of the surface.
+Which properties has a protective device tripping unit?;protective device tripping unit;Standard; string; the designation of the Standard applicable for the definition of the characteristics of the tripping_unit.
+Which properties has a protective device tripping unit?;protective device tripping unit;Limiting terminal size; real; The maximum terminal size capacity of the device. Usually measured in square metre (m2).
+Which properties has a Valve?;Valve;valve pattern; {single port, angled 2 port, straight 2 port, straight 3 port, crossover 4 port, etc.};The configuration of the ports of a valve according to either the linear route taken by a fluid flowing through the valve or by the number of ports where: SINGLEPORT: Valve that has a single entry port from the system that it serves, the exit port being to the surrounding environment. ANGLED_2_PORT: Valve in which the direction of flow is changed through 90 degrees. STRAIGHT_2_PORT: Valve in which the flow is straight through. STRAIGHT_3_PORT: Valve with three separate ports. CROSSOVER_4_PORT: Valve with 4 separate ports.
+Which properties has a Valve?;Valve;valve operation; {drop weight, float, hydraulic, lever, lock shield, motorized, pneumatic, solenoid, spring, thermostatic, wheel, etc.};The method of valve operation where: DROPWEIGHT: A valve that is closed by the action of a weighted lever being released, the weight normally being prevented from dropping by being held by a wire, the closure normally being made by the action of heat on a fusible link in the wire FLOAT: A valve that is opened and closed by the action of a float that rises and falls with water level. The float may be a ball attached to a lever or other mechanism HYDRAULIC: A valve that is opened and closed by hydraulic actuation LEVER: A valve that is opened and closed by the action of a lever rotating the gate within the valve. LOCKSHIELD: A valve that requires the use of a special lockshield key for opening and closing, the operating mechanism being protected by a shroud during normal operation. MOTORIZED: A valve that is opened and closed by the action of an electric motor on an actuator PNEUMATIC: A valve that is opened and closed by pneumatic actuation SOLENOID: A valve that is normally held open by a magnetic field in a coil acting on the gate but that is closed immediately if the electrical current generating the magnetic field is removed. SPRING: A valve that is normally held in position by the pressure of a spring on a plate but that may be caused to open if the pressure of the fluid is sufficient to overcome the spring pressure. THERMOSTATIC: A valve in which the ports are opened or closed to maintain a required predetermined temperature. WHEEL: A valve that is opened and closed by the action of a wheel moving the gate within the valve.
+Which properties has a Valve?;Valve;valve mechanism; {ball, butterfly, configured gate, gland, globe, lubricated plug, needle, parallel slide, plug, wedge gate, etc.};The mechanism by which the valve function is achieved where: BALL: Valve that has a ported ball that can be turned relative to the body seat ports. BUTTERFLY: Valve in which a streamlined disc pivots about a diametric axis. CONFIGUREDGATE: Screwdown valve in which the closing gate is shaped in a configured manner to have a more precise control of pressure and flow change across the valve. GLAND: Valve with a tapered seating, in which a rotatable plug is retained by means of a gland and gland packing. GLOBE: Screwdown valve that has a spherical body. LUBRICATEDPLUG: Plug valve in which a lubricant is injected under pressure between the plug face and the body. NEEDLE: Valve for regulating the flow in or from a pipe, in which a slender cone moves along the axis of flow to close against a fixed conical seat. PARALLELSLIDE: Screwdown valve that has a machined plate that slides in formed grooves to form a seal. PLUG: Valve that has a ported plug that can be turned relative to the body seat ports. WEDGEGATE: Screwdown valve that has a wedge shaped plate fitting into tapered guides to form a seal.
+Which properties has a Valve?;Valve;size; real; The size of the connection to the valve (or to each connection for faucets, mixing valves, etc.). Usually measured in millimeters (mm).
+Which properties has a Valve?;Valve;test pressure; real; The maximum pressure to which the valve has been subjected under test. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Valve?;Valve;working pressure; real; The normally expected maximum working pressure of the valve. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Valve?;Valve;flow coefficient; real; Flow coefficient (the quantity of fluid that passes through a fully open valve at unit pressure drop), typically expressed as the Kv or Cv value for the valve.
+Which properties has a Valve?;Valve;close off rating; real; Close off rating. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Vibration isolator?;Vibration isolator;vibration transmissibility; positive ratio; the vibration transmissibility percentage.
+Which properties has a Vibration isolator?;Vibration isolator;isolator static deflection; real; Static deflection of the vibration isolator. Usually measured in millimeters (mm).
+Which properties has a Vibration isolator?;Vibration isolator;isolator compressibility; real ratio; The compressibility of the vibration isolator.
+Which properties has a Vibration isolator?;Vibration isolator;height; real; Height of the vibration isolator before tha application of load. Usually measured in millimeters (mm).
+Which properties has a Vibration isolator?;Vibration isolator;maximum supported weight; real; The maximum weight that can be carried by the vibration isolator. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Filter?;Filter;weight; real; Weight of filter. Usually measured in kilograms (kg) or grams (g).
+Which properties has a Filter?;Filter;initial resistance; real; Initial new filter fluid resistance (i.e., pressure drop at the maximum air flowrate across the filter when the filter is new per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;final resistance; real; Filter fluid resistance when replacement is required (i.e., Pressure drop at the maximum air flowrate across the filter when the filter needs replacement per ASHRAE Standard 52.1). Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;operation temperature range; [real, real];Allowable operation ambient fluid temperature range. Usually measured in degrees Kelvin (K).
+Which properties has a Filter?;Filter;flow rate range; [real, real];Possible range of fluid flowrate that can be delivered. Usually measured in m3/s.
+Which properties has a Filter?;Filter;nominal filter face velocity; real; Filter face velocity. Usually measured in m/s.
+Which properties has a Filter?;Filter;nominal media surface velocity; real; Average fluid velocity at the media surface. Usually measured in m/s.
+Which properties has a Filter?;Filter;nominal pressure drop; real; Total pressure drop across the filter. Usually measured in Pascals (Pa, N/m2).
+Which properties has a Filter?;Filter;nominal flow rate; real; Nominal fluid flow rate through the filter. Usually measured in m3/s.
+Which properties has a Filter?;Filter;nominal particle geometric mean diameter; real; Particle geometric mean diameter associated with nominal efficiency. Usually measured in millimeters (mm).
+Which properties has a Filter?;Filter;nominal particle geometric standard deviation; real; Particle geometric standard deviation associated with nominal efficiency.
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+ELECTRICACTUATOR A device that electrically actuates a control element.
HANDOPERATEDACTUATOR A device that manually actuates a control element.
HYDRAULICACTUATOR A device that electrically actuates a control element.
PNEUMATICACTUATOR A device that pneumatically actuates a control element.
THERMOSTATICACTUATOR A device that thermostatically actuates a control element.
FIXEDPLATECOUNTERFLOWEXCHANGER Heat exchanger with moving parts and alternate layers of plates, separated and sealed from the exhaust and supply air stream passages with primary air entering at secondary air outlet location and exiting at secondary air inlet location.
FIXEDPLATECROSSFLOWEXCHANGER Heat exchanger with moving parts and alternate layers of plates, separated and sealed from the exhaust and supply air stream passages with secondary air flow in the direction perpendicular to primary air flow.
FIXEDPLATEPARALLELFLOWEXCHANGER Heat exchanger with moving parts and alternate layers of plates, separated and sealed from the exhaust and supply air stream passages with primary air entering at secondary air inlet location and exiting at secondary air outlet location.
ROTARYWHEEL A heat wheel with a revolving cylinder filled with an air-permeable medium having a large internal surface area.
RUNAROUNDCOILLOOP A typical coil energy recovery loop places extended surface, finned tube water coils in the supply and exhaust airstreams of a building.
HEATPIPE A passive energy recovery device with a heat pipe divided into evaporator and condenser sections.
TWINTOWERENTHALPYRECOVERYLOOPS An air-to-liquid, liquid-to-air enthalpy recovery system with a sorbent liquid circulates continuously between supply and exhaust airstreams, alternately contacting both airstreams directly in contactor towers.
THERMOSIPHONSEALEDTUBEHEATEXCHANGERS Sealed systems that consist of an evaporator, a condenser, interconnecting piping, and an intermediate working fluid that is present in both liquid and vapor phases where the evaporator and the condenser are usually at opposite ends of a bundle of straight, individual thermosiphon tubes and the exhaust and supply ducts are adjacent to each other.
THERMOSIPHONCOILTYPEHEATEXCHANGERS Sealed systems that consist of an evaporator, a condenser, interconnecting piping, and an intermediate working fluid that is present in both liquid and vapor phases where the evaporator and condensor coils are installed independently in the ducts and are interconnected by the working fluid piping.
BELL An audible alarm.
BREAKGLASSBUTTON An alarm activation mechanism in which a protective glass has to be broken to enable a button to be pressed.
LIGHT A visual alarm.
MANUALPULLBOX An alarm activation mechanism in which activation is achieved by a pulling action.
SIREN An audible alarm.
WHISTLE An audible alarm.
AMPLIFIER A device that receives an audio signal and amplifies it to play through speakers.
CAMERA A device that records images, either as a still photograph or as moving images known as videos or movies. Note that a camera may operate with light from the visible spectrum or from other parts of the electromagnetic spectrum such as infrared or ultraviolet.
DISPLAY An electronic device that represents information in visual form such as a flat-panel display or television.
MICROPHONE An acoustic-to-electric transducer or sensor that converts sound into an electrical signal. Microphones types in use include electromagnetic induction (dynamic microphones), capacitance change (condenser microphones) or piezoelectric generation to produce the signal from mechanical vibration.
PLAYER A device that plays audio and/or video content directly or to another device, having fixed or removable storage media.
PROJECTOR An apparatus for projecting a picture on a screen. Whether the device is an overhead, slide projector, or a film projector, it is usually referred to as simply a projector.
RECEIVER A device that receives audio and/or video signals, switches sources, and amplifies signals to play through speakers.
SPEAKER A loudspeaker, speaker, or speaker system is an electroacoustical transducer that converts an electrical signal to sound.
SWITCHER A device that receives audio and/or video signals, switches sources, and transmits signals to downstream devices.
TELEPHONE A telecommunications device that is used to transmit and receive sound, and optionally video.
TUNER An electronic receiver that detects, demodulates, and amplifies transmitted signals.
WATER Water boiler.
STEAM Steam boiler.
AIRCOOLED Air cooled chiller.
WATERCOOLED Water cooled chiller.
HEATRECOVERY Heat recovery chiller.
DXCOOLINGCOIL Cooling coil using a refrigerant to cool the air stream directly.
ELECTRICHEATINGCOIL Heating coil using electricity as a heating source.
GASHEATINGCOIL Heating coil using gas as a heating source.
HYDRONICCOIL Cooling or Heating coil that uses a hydronic fluid as a cooling or heating source.
STEAMHEATINGCOIL Heating coil using steam as heating source.
WATERCOOLINGCOIL Cooling coil using chilled water. HYDRONICCOIL supercedes this enumerator.
WATERHEATINGCOIL Heating coil using hot water as a heating source. HYDRONICCOIL supercedes this enumerator.
ANTENNA A transducer designed to transmit or receive electromagnetic waves.
COMPUTER A desktop, laptop, tablet, or other type of computer that can be moved from one place to another and connected to an electrical supply via a plugged outlet.
FAX A machine that has the primary function of transmitting a facsimile copy of printed matter using a telephone line.
GATEWAY A gateway connects multiple network segments with different protocols at all layers (layers 1-7) of the Open Systems Interconnection (OSI) model.
MODEM A modem (from modulator-demodulator) is a device that modulates an analog carrier signal to encode digital information, and also demodulates such a carrier signal to decode the transmitted information.
NETWORKAPPLIANCE A network appliance performs a dedicated function such as firewall protection, content filtering, load balancing, or equipment management.
NETWORKBRIDGE A network bridge connects multiple network segments at the data link layer (layer 2) of the OSI model, and the term layer 2 switch is very often used interchangeably with bridge.
NETWORKHUB A network hub connects multiple network segments at the physical layer (layer 1) of the OSI model.
PRINTER A machine that has the primary function of printing text and/or graphics onto paper or other media.
REPEATER A repeater is an electronic device that receives a signal and retransmits it at a higher level and/or higher power, or onto the other side of an obstruction, so that the signal can cover longer distances without degradation.
ROUTER A router is a networking device whose software and hardware are usually tailored to the tasks of routing and forwarding information. For example, on the Internet, information is directed to various paths by routers.
SCANNER A machine that has the primary function of scanning the content of printed matter and converting it to digital format that can be stored in a computer.
DYNAMIC The pressure of refrigerant vapor is increased by a continuous transfer of angular momentum from a rotating member to the vapor followed by conversion of this momentum into static pressure.
RECIPROCATING Positive-displacement compressor using a piston driven by a connecting rod from a crankshaft.
ROTARY Positive-displacement compressor using a roller or rotor device.
SCROLL Positive-displacement compressor using two inter-fitting, spiral-shaped scroll members.
TROCHOIDAL Positive-displacement compressor using a rolling motion of one circle outside or inside the circumference of a basic circle and produce either epitrochoids or hypotrochoids.
SINGLESTAGE Positive-displacement reciprocating compressor where vapor is compressed in a single stage.
BOOSTER Positive-displacement reciprocating compressor where pressure is increased by a booster.
OPENTYPE Positive-displacement reciprocating compressor where the shaft extends through a seal in the crankcase for an external drive.
HERMETIC Positive-displacement reciprocating compressor where the motor and compressor are contained within the same housing, with the motor shaft integral with the compressor crankshaft and the motor in contact with refrigerant.
SEMIHERMETIC Positive-displacement reciprocating compressor where the hermetic compressors use bolted construction amenable to field repair.
WELDEDSHELLHERMETIC Positive-displacement reciprocating compressor where the motor compressor is mounted inside a steel shell, which, in turn is sealed by welding.
ROLLINGPISTON Positive-displacement rotary compressor using a roller mounted on the eccentric of a shaft with a single vane in the nonrotating cylindrical housing.
ROTARYVANE Positive-displacement rotary compressor using a roller mounted on the eccentric of a shaft with multiple vanes in the nontotating cylindrical housing.
SINGLESCREW Positive-displacement rotary compressor using a single cylindrical main rotor that works with a pair of gate rotors.
TWINSCREW Positive-displacement rotary compressor using two mating helically grooved rotors, male (lobes) and female (flutes) in a stationary housing with inlet and outlet gas ports.
AIRCOOLED A condenser in which heat is transferred to an air-stream.
EVAPORATIVECOOLED A condenser that is cooled evaporatively.
WATERCOOLED Water-cooled condenser with unspecified operation.
WATERCOOLEDBRAZEDPLATE Water-cooled condenser with plates brazed together to form an assembly of separate channels.
WATERCOOLEDSHELLCOIL Water-cooled condenser with cooling water circulated through one or more continuous or assembled coils contained within the shell.
WATERCOOLEDSHELLTUBE Water-cooled condenser with cooling water circulated through one or more tubes contained within the shell.
WATERCOOLEDTUBEINTUBE Water-cooled condenser consisting of one or more assemblies of two tubes, one within the other.
FLOATING Output increases or decreases at a constant or accelerating rate.
PROGRAMMABLE Output is programmable such as Discrete Digital Control (DDC).
PROPORTIONAL Output is proportional to the control error and optionally time integral and derivative.
MULTIPOSITION Output is discrete value, can be one of three or more values.
TWOPOSITION Output can be either on or off.
ACTIVE An active or ventilated cooled beam provides cooling (and heating) but can also function as an air terminal in a ventilation system.
PASSIVE A passive or static cooled beam provides cooling (and heating) to a room or zone.
NATURALDRAFT Air flow is produced naturally.
MECHANICALINDUCEDDRAFT Air flow is produced by a mechanical device, typically one or more fans, located on the air outlet side of the cooling tower.
MECHANICALFORCEDDRAFT Air flow is produced by a mechanical device, typically one or more fans, located on the inlet air side of the cooling tower.
BACKDRAFTDAMPER Damper used for purposes of manually balancing pressure differences. Commonly operated by mechanical adjustment.
BALANCINGDAMPER Backdraft damper used to restrict the movement of air in one direction. Commonly operated by mechanical spring.
BLASTDAMPER Blast damper used to prevent protect occupants and equipment against overpressures resultant of an explosion. Commonly operated by mechanical spring.
CONTROLDAMPER Control damper used to modulate the flow of air by adjusting the position of the blades. Commonly operated by an actuator of a building automation system.
FIREDAMPER Fire damper used to prevent the spread of fire for a specified duration. Commonly operated by fusable link that melts above a certain temperature.
FIRESMOKEDAMPER Combination fire and smoke damper used to preven the spread of fire and smoke. Commonly operated by a fusable link and a smoke detector.
FUMEHOODEXHAUST Fume hood exhaust damper. Commonly operated by actuator.
GRAVITYDAMPER Gravity damper closes from the force of gravity. Commonly operated by gravitational weight.
GRAVITYRELIEFDAMPER Gravity-relief damper used to allow air to move upon a buildup of enough pressure to overcome the gravitational force exerted upon the damper blades. Commonly operated by gravitational weight.
RELIEFDAMPER Relief damper used to allow air to move upon a buildup of a specified pressure differential. Commonly operated by mechanical spring.
SMOKEDAMPER Smoke damper used to prevent the spread of smoke. Commonly operated by a smoke detector of a building automation system.
FLATOVAL Flat-oval shaped duct silencer type.
RECTANGULAR Rectangular shaped duct silencer type.
ROUND Round duct silencer type.
DISHWASHER An appliance that has the primary function of washing dishes.
ELECTRICCOOKER An electrical appliance that has the primary function of cooking food (including oven, hob, grill).
FREESTANDINGELECTRICHEATER An electrical appliance that is used occasionally to provide heat. A freestanding electric heater is a 'plugged' appliance whose load may be removed from an electric circuit.
FREESTANDINGFAN An electrical appliance that is used occasionally to provide ventilation. A freestanding fan is a 'plugged' appliance whose load may be removed from an electric circuit.
FREESTANDINGWATERHEATER A small, local electrical appliance for heating water. A freestanding water heater is a 'plugged' appliance whose load may be removed from an electric circuit.
FREESTANDINGWATERCOOLER A small, local electrical appliance for cooling water. A freestanding water cooler is a 'plugged' appliance whose load may be removed from an electric circuit.
FREEZER An electrical appliance that has the primary function of storing food at temperatures below the freezing point of water.
FRIDGE_FREEZER An electrical appliance that combines the functions of a freezer and a refrigerator through the provision of separate compartments.
HANDDRYER An electrical appliance that has the primary function of drying hands.
KITCHENMACHINE A specialized appliance used in commercial kitchens such as a mixer.
MICROWAVE An electrical appliance that has the primary function of cooking food using microwaves.
PHOTOCOPIER A machine that has the primary function of reproduction of printed matter.
REFRIGERATOR An electrical appliance that has the primary function of storing food at low temperature but above the freezing point of water.
TUMBLEDRYER An electrical appliance that has the primary function of drying clothes.
VENDINGMACHINE An appliance that stores and vends goods including food, drink and goods of various types.
WASHINGMACHINE An appliance that has the primary function of washing clothes.
BATTERY A device for storing energy in chemical form so that it can be released as electrical energy.
CAPACITORBANK A device that stores electrical energy when an external power supply is present using the electrical property of capacitance.
HARMONICFILTER A device that constantly injects currents that precisely correspond to the harmonic components drawn by the load.
INDUCTORBANK
UPS A device that provides a time limited alternative source of power supply in the event of failure of the main supply.
CHP Combined heat and power supply, used not only as a source of electric energy but also as a heating source for the building. It may therefore be not only part of an electrical system but also of a heating system.
ENGINEGENERATOR Electrical generator with a fuel-driven engine, for example a diesel-driven emergency power supply.
STANDALONE Electrical generator which does not include its source of kinetic energy, that is, a motor, engine, or turbine are all modeled separately.
DC A motor using either generated or rectified Direct Current (DC) power.
INDUCTION An alternating current motor in which the primary winding on one member (usually the stator) is connected to the power source and a secondary winding or a squirrel-cage secondary winding on the other member (usually the rotor) carries the induced current. There is no physical electrical connection to the secondary winding, its current is induced.
POLYPHASE A two or three-phase induction motor in which the windings, one for each phase, are evenly divided by the same number of electrical degrees.
RELUCTANCESYNCHRONOUS A synchronous motor with a special rotor design which directly lines the rotor up with the rotating magnetic field of the stator, allowing for no slip under load.
SYNCHRONOUS A motor that operates at a constant speed up to full load. The rotor speed is equal to the speed of the rotating magnetic field of the stator; there is no slip.
TIMECLOCK A control that causes action to occur at set times.
TIMEDELAY A control that causes action to occur following a set duration.
RELAY Electromagnetically operated contactor for making or breaking a control circuit.
EXTERNALCOMBUSTION Combustion is external.
INTERNALCOMBUSTION Combustion is internal.
DIRECTEVAPORATIVERANDOMMEDIAAIRCOOLER Direct evaporative random media air cooler: Cools the air stream by evaporating water dircectly into the air stream using coolers with evaporative pads, usually of aspen wood or plastic fiber/foam.
DIRECTEVAPORATIVERIGIDMEDIAAIRCOOLER Direct evaporative rigid media air cooler: Cools the air stream by evaporating water dircectly into the air stream using coolers with sheets of rigid, corrugated material as the wetted surface.
DIRECTEVAPORATIVESLINGERSPACKAGEDAIRCOOLER Direct evaporative slingers packaged air cooler: Cools the air stream by evaporating water dircectly into the air stream using coolers with a water slinger in an evaporative cooling section and a fan section.
DIRECTEVAPORATIVEPACKAGEDROTARYAIRCOOLER Direct evaporative packaged rotary air cooler: Cools the air stream by evaporating water dircectly into the air stream using coolers that wet and wash the evaporative pad by rotating it through a water bath.
DIRECTEVAPORATIVEAIRWASHER Direct evaporative air washer: Cools the air stream by evaporating water dircectly into the air stream using coolers with spray-type air washer consist of a chamber or casing containing spray nozzles, and tank for collecting spray water, and an eliminator section for removing entrained drops of water from the air.
INDIRECTEVAPORATIVEPACKAGEAIRCOOLER Indirect evaporative package air cooler: Cools the air stream by evaporating water indirectly and without adding moisture into the air stream. On one side of the heat exchanger, the secondary air stream is cooled by evaporation, while on the other side of heat exchanger, the primary air stream (conditioned air to be supplied to the room) is sensibly cooled by the heat exchanger surfaces.
INDIRECTEVAPORATIVEWETCOIL Indirect evaporative wet coil: Cools the air stream by evaporating water indirectly and without adding moisture into the air stream. Water is sprayed directly on the tubes of the heat exchanger where latent cooling takes place and the vaporization of the water on the outside of the heat exchanger tubes allows the simultaneous heat and mass transfer which removes heat from the supply air on the tube side.
INDIRECTEVAPORATIVECOOLINGTOWERORCOILCOOLER Indirect evaporative cooling tower or coil cooler: Cools the air stream by evaporating water indirectly and without adding moisture into the air stream using a combination of a cooling tower or other evaporative water cooler with a water-to-air heat exchanger coil and water circulating pump.
INDIRECTDIRECTCOMBINATION Indirect/Direct combination: Cools the air stream by evaporating water indirectly and without adding moisture into the air stream using a two-stage cooler with a first-stage indirect evaporative cooler and second-stage direct evaporative cooler.
DIRECTEXPANSION Direct-expansion evaporator.
DIRECTEXPANSIONSHELLANDTUBE Direct-expansion evaporator where a refrigerant evaporates inside a series of baffles that channel the fluid throughout the shell side.
DIRECTEXPANSIONTUBEINTUBE Direct-expansion evaporator where a refrigerant evaporates inside one or more pairs of coaxial tubes.
DIRECTEXPANSIONBRAZEDPLATE Direct-expansion evaporator where a refrigerant evaporates inside plates brazed or welded together to make up an assembly of separate channels.
FLOODEDSHELLANDTUBE Evaporator in which refrigerant evaporates outside tubes.
SHELLANDCOIL Evaporator in which refrigerant evaporates inside a simple coiled tube immersed in the fluid to be cooled.
CENTRIFUGALFORWARDCURVED Air flows through the impeller radially using blades that are forward curved.
CENTRIFUGALRADIAL Air flows through the impeller radially using blades that are uncurved or slightly forward curved.
CENTRIFUGALBACKWARDINCLINEDCURVED Air flows through the impeller radially using blades that are backward curved.
CENTRIFUGALAIRFOIL Air flows through the impeller radially using blades that are airfoil shaped.
TUBEAXIAL Air flows through the impeller axially with guide vanes and reduced running blade tip clearance.
VANEAXIAL Air flows through the impeller axially with guide vanes and reduced running blade tip clearance.
PROPELLORAXIAL Air flows through the impeller axially and small hub-to-tip ratio impeller mounted in an orifice plate or inlet ring.
AIRPARTICLEFILTER A filter used to remove particulates from air.
COMPRESSEDAIRFILTER A filter used to remove particulates from compressed air.
ODORFILTER A filter used to remove odors from air.
OILFILTER A filter used to remove particulates from oil.
STRAINER A filter used to remove particulates from a fluid.
WATERFILTER A filter used to remove particulates from water.
BREECHINGINLET Symmetrical pipe fitting that unites two or more inlets into a single pipe. A breeching inlet may be used on either a wet or dry riser. Used by fire services personnel for fast connection of fire appliance hose reels. May also be used for foam.
FIREHYDRANT Device, fitted to a pipe, through which a temporary supply of water may be provided. May also be termed a stand pipe.
HOSEREEL A supporting framework on which a hose may be wound.
SPRINKLER Device for sprinkling water from a pipe under pressure over an area.
SPRINKLERDEFLECTOR Device attached to a sprinkler to deflect the water flow into a spread pattern to cover the required area.
PRESSUREGAUGE A device that reads and displays a pressure value at a point or the pressure difference between two points.
THERMOMETER A device that reads and displays a temperature value at a point.
AMMETER A device that reads and displays the current flow in a circuit.
FREQUENCYMETER A device that reads and displays the electrical frequency of an alternating current circuit.
POWERFACTORMETER A device that reads and displays the power factor of an electrical circuit.
PHASEANGLEMETER A device that reads and displays the phase angle of a phase in a polyphase electrical circuit.
VOLTMETER_PEAK A device that reads and displays the peak voltage in an electrical circuit.
VOLTMETER_RMS A device that reads and displays the RMS (mean) voltage in an electrical circuit.
ENERGYMETER An electric meter or energy meter is a device that measures the amount of electrical energy supplied to or produced by a residence, business or machine.
GASMETER A device that measures the quantity of a gas or fuel.
OILMETER A device that measures the quantity of oil.
WATERMETER A device that measures the quantity of water.
PLATE Plate heat exchanger.
SHELLANDTUBE Shell and Tube heat exchanger.
STEAMINJECTION Water vapor is added into the airstream through direct steam injection.
ADIABATICAIRWASHER Water vapor is added into the airstream through adiabatic evaporation using an air washing element.
ADIABATICPAN Water vapor is added into the airstream through adiabatic evaporation using a pan.
ADIABATICWETTEDELEMENT Water vapor is added into the airstream through adiabatic evaporation using a wetted element.
ADIABATICATOMIZING Water vapor is added into the airstream through adiabatic evaporation using an atomizing element.
ADIABATICULTRASONIC Water vapor is added into the airstream through adiabatic evaporation using an ultrasonic element.
ADIABATICRIGIDMEDIA Water vapor is added into the airstream through adiabatic evaporation using a rigid media.
ADIABATICCOMPRESSEDAIRNOZZLE Water vapor is added into the airstream through adiabatic evaporation using a compressed air nozzle.
ASSISTEDELECTRIC Water vapor is added into the airstream through water heated evaporation using an electric heater.
ASSISTEDNATURALGAS Water vapor is added into the airstream through water heated evaporation using a natural gas heater.
ASSISTEDPROPANE Water vapor is added into the airstream through water heated evaporation using a propane heater.
ASSISTEDBUTANE Water vapor is added into the airstream through water heated evaporation using a butane heater.
ASSISTEDSTEAM Water vapor is added into the airstream through water heated evaporation using a steam heater.
CYCLONIC Removes larger liquid drops or larger solid particles.
GREASE Chamber, on the line of a drain or discharge pipe, that prevents grease passing into a drainage system.
OIL One or more chambers arranged to prevent the ingress of oil to a drain or sewer that retains the oil for later removal.
PETROL Two or more chambers with inlet and outlet pipes arranged to allow petrol/gasoline collected on the surface of water drained into them to evaporate through ventilating pipes.
COMPACTFLUORESCENT A fluorescent lamp having a compact form factor produced by shaping the tube.
FLUORESCENT A typically tubular discharge lamp in which most of the light is emitted by one or several layers of phosphors excited by ultraviolet radiation from the discharge.
HALOGEN An incandescent lamp in which a tungsten filament is sealed into a compact transport envelope filled with an inert gas and a small amount of halogen such as iodine or bromine.
HIGHPRESSUREMERCURY A discharge lamp in which most of the light is emitted by exciting mercury at high pressure.
HIGHPRESSURESODIUM A discharge lamp in which most of the light is emitted by exciting sodium at high pressure.
LED A solid state lamp that uses light-emitting diodes as the source of light.
METALHALIDE A discharge lamp in which most of the light is emitted by exciting a metal halide.
OLED A solid state lamp that uses light-emitting diodes as the source of light whose emissive electroluminescent layer is composed of a film of organic compounds.
TUNGSTENFILAMENT A lamp that emits light by passing an electrical current through a tungsten wire filament in a near vacuum.
AIRSTATION Device that provides purified medical air, composed of an air compressor and air treatment line.
FEEDAIRUNIT Device that feeds air to an oxygen generator, composed of an air compressor, air treatment line, and an air receiver.
OXYGENGENERATOR Device that generates oxygen from air.
OXYGENPLANT Device that combines a feed air unit, oxygen generator, and backup oxygen cylinders.
VACUUMSTATION Device that provides suction, composed of a vacuum pump and bacterial filtration line.
AUDIOVISUALOUTLET An outlet used for an audio or visual device.
COMMUNICATIONSOUTLET An outlet used for connecting communications equipment.
POWEROUTLET An outlet used for connecting electrical devices requiring power.
DATAOUTLET An outlet used for connecting data communications equipment.
TELEPHONEOUTLET An outlet used for connecting telephone communications equipment.
ELECTRONIC A tripping unit activated by electronic action.
ELECTROMAGNETIC A tripping unit activated by electromagnetic action.
RESIDUALCURRENT A tripping unit activated by residual current detection.
THERMAL A tripping unit activated by thermal action.
CIRCUITBREAKER A mechanical switching device capable of making, carrying, and breaking currents under normal circuit conditions and also making, carrying for a specified time and breaking, current under specified abnormal circuit conditions such as those of short circuit.
EARTHLEAKAGECIRCUITBREAKER A device that opens, closes, or isolates a circuit and has short circuit protection but no overload protection. It attempts to break the circuit when there is a leakage of current from phase to earth, by measuring voltage on the earth conductor.
EARTHINGSWITCH A safety device used to open or close a circuit when there is no current. Used to isolate a part of a circuit, a machine, a part of an overhead line or an underground line so that maintenance can be safely conducted.
FUSEDISCONNECTOR A device that will electrically open the circuit after a period of prolonged, abnormal current flow.
RESIDUALCURRENTCIRCUITBREAKER A device that opens, closes, or isolates a circuit and has short circuit and overload protection. It attempts to break the circuit when there is a difference in current between any two phases. May also be referred to as 'Ground Fault Interupter (GFI)' or 'Ground Fault Circuit Interuptor (GFCI)'
RESIDUALCURRENTSWITCH A device that opens, closes or isolates a circuit and has no short circuit or overload protection. May also be identified as a 'ground fault switch'.
VARISTOR A high voltage surge protection device.
CIRCULATOR A Circulator pump is a generic low-pressure, low-capacity pump. It may have a wet rotor and may be driven by a flexible-coupled motor.
ENDSUCTION An End Suction pump, when mounted horizontally, has a single horizontal inlet on the impeller suction side and a vertical discharge. It may have a direct or close-coupled motor.
SPLITCASE A Split Case pump, when mounted horizontally, has an inlet and outlet on each side of the impeller. The impeller can be easily accessed by removing the front of the impeller casing. It may have a direct or close-coupled motor.
SUBMERSIBLEPUMP A pump designed to be immersed in a fluid, typically a collection tank.
SUMPPUMP A pump designed to sit above a collection tank with a suction inlet extending into the tank.
VERTICALINLINE A Vertical Inline pump has the pump and motor close-coupled on the pump casing. The pump depends on the connected, horizontal piping for support, with the suction and discharge along the piping axis.
VERTICALTURBINE A Vertical Turbine pump has a motor mounted vertically on the pump casing for either wet-pit sump mounting or dry-well mounting.
BATH Sanitary appliance for immersion of the human body or parts of it.
BIDET Waste water appliance for washing the excretory organs while sitting astride the bowl.
CISTERN A water storage unit attached to a sanitary terminal that is fitted with a device, operated automatically or by the user, that discharges water to cleanse a water closet (toilet) pan, urinal or slop hopper.
SHOWER Installation or waste water appliance that emits a spray of water to wash the human body.
SINK Waste water appliance for receiving, retaining or disposing of domestic, culinary, laboratory or industrial process liquids.
SANITARYFOUNTAIN A sanitary terminal that provides a low pressure jet of water for a specific purpose.
TOILETPAN Soil appliance for the disposal of excrement.
URINAL Soil appliance that receives urine and directs it to a waste outlet.
WASHHANDBASIN Waste water appliance for washing the upper parts of the body.
WCSEAT [Deprecated] Hinged seat that fits on the top of a water closet (WC) pan.
CO2SENSOR A device that senses or detects carbon dioxide.
CONDUCTANCESENSOR A device that senses or detects electrical conductance.
CONTACTSENSOR A device that senses or detects contact, such as for detecting if a door is closed.
FIRESENSOR A device that senses or detects fire
FLOWSENSOR A device that senses or detects flow in a fluid.
FROSTSENSOR A device that senses or detects frost on a window.
GASSENSOR A device that senses or detects gas concentration (other than CO2)
HEATSENSOR A device that senses or detects heat.
HUMIDITYSENSOR A device that senses or detects humidity.
IDENTIFIERSENSOR A device that reads a tag, such as for gaining access to a door or elevator
IONCONCENTRATIONSENSOR A device that senses or detects ion concentration, such as for water hardness.
LEVELSENSOR A device that senses or detects fill level, such as for a tank.
LIGHTSENSOR A device that senses or detects light.
MOISTURESENSOR A device that senses or detects moisture.
MOVEMENTSENSOR A device that senses or detects movement.
PHSENSOR A device that senses or detects acidity.
PRESSURESENSOR A device that senses or detects pressure.
RADIATIONSENSOR A device that senses or detects pressure.
RADIOACTIVITYSENSOR A device that senses or detects atomic decay.
SMOKESENSOR A device that senses or detects smoke.
SOUNDSENSOR A device that senses or detects sound.
TEMPERATURESENSOR A device that senses or detects temperature.
WINDSENSOR A device that senses or detects airflow speed and direction.
JALOUSIE A blind with adjustable horizontal slats for admitting light and air while excluding direct sun and rain.
SHUTTER A mechanical devices that limits the passage of light. Often used as a a solid or louvered movable cover for a window.
AWNING A rooflike shelter of canvas or other material extending over a doorway, from the top of a window, over a deck, or similar, in order to provide protection, as from the sun.
SOLARCOLLECTOR A device that converts solar radiation into thermal energy (heating water, etc.).
SOLARPANEL A device that converts solar radiation into electric current.
CONVECTOR A heat-distributing unit that operates with gravity-circulated air.
RADIATOR A heat-distributing unit that operates with thermal radiation.
CONTACTOR An electrical device used to control the flow of power in a circuit on or off.
DIMMERSWITCH A dimmer switch has variable positions, and may adjust electrical power or other setting (according to the switched port type).
EMERGENCYSTOP An emergency stop device acts to remove as quickly as possible any danger that may have arisen unexpectedly.
KEYPAD A set of buttons or switches, each potentially applicable to a different device.
MOMENTARYSWITCH A momentary switch has no position, and may trigger some action to occur.
SELECTORSWITCH A selector switch has multiple positions, and may change the source or level of power or other setting (according to the switched port type).
STARTER A starter is a switch which in the closed position controls the application of power to an electrical device.
SWITCHDISCONNECTOR A switch disconnector is a switch which in the open position satisfies the isolating requirements specified for a disconnector.
TOGGLESWITCH A toggle switch has two positions, and may enable or isolate electrical power or other setting (according to the switched port type).
BASIN An arbitrary open tank type.
BREAKPRESSURE An open container that breaks the hydraulic pressure in a distribution system, typically located between the fluid reservoir and the fluid supply points. A typical break pressure tank allows the flow to discharge into the atmosphere, thereby reducing its hydrostatic pressure to zero.
EXPANSION A closed container used in a closed fluid distribution system to mitigate the effects of thermal expansion or water hammer. The tank is typically constructed with a diaphragm dividing the tank into two sections, with fluid on one side of the diaphragm and air on the other. One example application is when connected to the primary circuit of a hot water system to accommodate the increase in volume of the water when it is heated.
FEEDANDEXPANSION An open tank that is used for both storage and thermal expansion. A typical example is a tank used to store make-up water at ambient pressure for supply to a hot water system, simultaneously accommodating increases in volume of the water when heated.
PRESSUREVESSEL A closed container used for storing fluids or gases at a pressure different from the ambient pressure. A pressure vessel is typically rated by an authority having jurisdiction for the operational pressure.
STORAGE An open or closed containter used for storing a fluid at ambient pressure and from which it can be supplied to the fluid distribution system. There are many examples of storage tanks, such as potable water storage tanks, fuel storage tanks, etc.
VESSEL An arbitrary closed tank type.
CURRENT A transformer that changes the current between circuits.
FREQUENCY A transformer that changes the frequency between circuits.
INVERTER A transformer that converts from direct current (DC) to alternating current (AC).
RECTIFIER A transformer that converts from alternating current (AC) to direct current (DC).
VOLTAGE A transformer that changes the voltage between circuits.
FINNED Finned tube bundle type.
ELEVATOR Elevator or lift being a transport device to move people of good vertically.
ESCALATOR Escalator being a transport device to move people. It consists of individual linked steps that move up and down on tracks while keeping the threads horizontal.
MOVINGWALKWAY Moving walkway being a transport device to move people horizontally or on an incline. It is a slow conveyor belt that transports people.
CRANEWAY A crane way system, normally including the crane rails, fasteners and the crane. It is primarily used to move heavy goods in a factory or other industry buildings.
LIFTINGGEAR A device used for lifting or lowering heavy goods. It may be manually operated or electrically or pneumatically driven.
ALARMPANEL A control element at which alarms are annunciated.
CONTROLPANEL A control element at which devices that control or monitor the operation of a site, building or part of a building are located
GASDETECTIONPANEL A control element at which the detection of gas is annunciated.
INDICATORPANEL A control element at which equipment operational status, condition, safety state or other required parameters are indicated.
MIMICPANEL A control element at which information that is available elsewhere is repeated or 'mimicked'.
HUMIDISTAT A control element that senses and regulates the humidity of a system or space so that the humidity is maintained near a desired setpoint.
THERMOSTAT A control element that senses and regulates the temperature of an element, system or space so that the temperature is maintained near a desired setpoint.
WEATHERSTATION A control element that senses multiple climate properties such as temperature, humidity, pressure, wind, and rain.
AIRHANDLER A unitary air handling unit typically containing a fan, economizer, and coils.
AIRCONDITIONINGUNIT A unitary packaged air-conditioning unit typically used in residential or light commercial applications.
DEHUMIDIFIER A unitary packaged dehumidification unit. Note: units supporting multiple modes (dehumidification, cooling, and/or heating) should use AIRCONDITIONINGUNIT.
SPLITSYSTEM A system which separates the compressor from the evaporator, but acts as a unitary component typically within residential or light commercial applications.
ROOFTOPUNIT A packaged assembly that is either field-erected or manufactured atop the roof of a large residential or commercial building and acts as a unitary component.
AIRRELEASE Valve used to release air from a pipe or fitting.
ANTIVACUUM Valve that opens to admit air if the pressure falls below atmospheric pressure.
CHANGEOVER Valve that enables flow to be switched between pipelines (3 or 4 port).
CHECK Valve that permits water to flow in one direction only and is enclosed when there is no flow (2 port).
COMMISSIONING Valve used to facilitate commissioning of a system (2 port).
DIVERTING Valve that enables flow to be diverted from one branch of a pipeline to another (3 port).
DRAWOFFCOCK A valve used to remove fluid from a piping system.
DOUBLECHECK An assembly that incorporates two valves used to prevent backflow.
DOUBLEREGULATING Valve used to facilitate regulation of fluid flow in a system.
FAUCET Faucet valve typically used as a flow discharge.
FLUSHING Valve that flushes a predetermined quantity of water to cleanse a toilet, urinal, etc.
GASCOCK Valve that is used for controlling the flow of gas.
GASTAP Gas tap typically used for venting or discharging gas from a system.
ISOLATING Valve that closes off flow in a pipeline.
MIXING Valve that enables flow from two branches of a pipeline to be mixed together (3 port).
PRESSUREREDUCING Valve that reduces the pressure of a fluid immediately downstream of its position in a pipeline to a preselected value or by a predetermined ratio.
PRESSURERELIEF Spring or weight loaded valve that automatically discharges to a safe place fluid that has built up to excessive pressure in pipes or fittings.
REGULATING Valve used to facilitate regulation of fluid flow in a system.
SAFETYCUTOFF Valve that closes under the action of a safety mechanism such as a drop weight, solenoid etc.
STEAMTRAP Valve that restricts flow of steam while allowing condensate to pass through.
STOPCOCK An isolating valve used on a domestic water service.
COMPRESSION Compression type vibration isolator.
SPRING Spring type vibration isolator.
\ No newline at end of file
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diff --git a/SAREF4ENV/diagrams/ENV_V4_NoPrefixes.pdf b/SAREF4ENV/diagrams/ENV_V4_NoPrefixes.pdf
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