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RooftopPackagedHeatPump.idf
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!=================================================================================================================================================
! RooftopPackagedHeatPump.idf
!
! This dataset includes performance curves for the object types Coil:Cooling:DX:SingleSpeed, Coil:Cooling:DX:TwoStageWithHumidityControlMode and
! Coil:Heating:DX:SingleSpeed required to model rooftop packaged heatpumps in EnergyPlus.
!
! ARI standard rating conditions for Reference Capacity (air flow rate around 400 cfm/Ton)
! Cooling: 95F (35C) OAT, 67F (19.44C) EWBT
! Heating: 47F (8.33C) OAT, 70F (21.11C) EDBT
!
! OAT - Outdoor air dry-bulb temperature
! EWBT - Entering air wet-bulb temeprature
! EDBT - Entering air dry-bulb temeprature
!
! In the objects Coil:Cooling:DX:SingleSpeed, Coil:Cooling:DX:TwoStageWithHumidityControlMode and Coil:Heating:DX:SingleSpeed below,
! input fields 'Availability Schedule Name', 'Air Inlet Node Name' and 'Air Outlet Node Name' need to be defined by the user. Also, the
! 'Part Load Fraction' as a function of 'Part Load Ratio' curves (PLFFPLR) are derived by using the following correlation
! described in InputOutput reference: PLF = 0.85 + 0.15(PLR)
!
! NOTE: If the rated air flow rates at ARI conditions were different from what are given at extended cooling/heating performance data, then the flow rate
! for which extended performance data is published is taken as the rated air flow rate.
! Whenever the manufacturer's data was found to be inconsistent/insufficient to generate the curve fits, appropriate judgements were made to fill
! the missing information. Curve fitting tool that comes with EnergyPlus installation (CurveFitTool.xlsm) is used to generate these curves.
! Also, these curve fits are good for use within the minimum and maximum limits of the independent variables specified in the curves.
! The extrapolation of these curves can produce undesirable results. Users will have to use these curve-fits per their own discretion.
!
!----------------------------------------------------------------------------------------------------------------------------
!
!----------------------------------------------------------------------------------------------------------------------------
! Compressor Nominal Reference Reference Reference Reference Refrig
! Name Type Capacity Cooling Capacity COP Heating Capacity COP Type
! (tons) (W) (Cooling) (W) (Heating)
!----------------------------------------------------------------------------------------------------------------------------
! JCI J05XP Scroll 5 17789.3 3.8 16857.4 3.2 R-410A
! JCI J10XP Scroll 10 35578.7 3.8 31044.91 3.2 R-410A
! Carrier 50TFQ006 Hermetic 5 17789.3 3.34 14888.07 2.92 R-22
! Carrier 50HJQ012 Scroll 10 34992.6 3.41 31476.2 3.54 R-22
! Carrier 50EZ060 Scroll 5 17716.3 4.05 17303.11 4.5 R-410A
! Lennox LHA120H Scroll 10 36340.7 3.8 32559.84 3.69 R-22
! Lennox LHA240H Scroll 20 67171.6 3.5 61977.83 3.6 R-22
! Lennox THA060S2 Scroll 5 18903 4.1 16443.2 4.2 R-22
! Lennox THA120S Scroll 10 36340.7 3.7 32483.84 3.53 R-22
! Lennox KHA060S4 Scroll 5 18023.8 3.85 16684.2 4.1 R-410A
! Lennox KHA120S4 Scroll 10 36340.68 3.9 32563.43 3.68 R-410A
! Lennox KHA240S4 Scroll 20 66966.5 3.7 61025.4 3.78 R-410A
!----------------------------------------------------------------------------------------------------------------------------
!
!----------------------------------------------------------------------------------------------------------------------------
!==================================================EXAMPLE====================================================================
! Below is an example of how to input data to model rooftop packaged heatpumps in EnergyPlus. A 5 ton rooftop packaged heatpump
! with R-410A refrigerant is shown in here. Further information regarding the object "AirLoopHVAC:UnitaryHeatPump:AirToAir" can be
! found in InputOutput Reference. Information for supply fan, and supplementel heating coil needs to be specified by the user for
! their specific case. Following the example, only the curve fits of DX cooling and heating coils are provided.
! The objects and syntax in this dataset comply with EnergyPlus, Version 8.4.0 and above, unless otherwise noted.
! Version,
! 9.0; !- Version Identifier
AirLoopHVAC:UnitaryHeatPump:AirToAir,
RooftopPackagedHeatpumpExample, !- Name
HVACAvailSched, !- Availability Schedule Name
Air Loop Inlet Node, !- Air Inlet Node Name
Air Loop Outlet Node, !- Air Outlet Node Name
0.944, !- Cooling Supply Air Flow Rate {m3/s}
0.944, !- Heating Supply Air Flow Rate {m3/s}
0, !- No Load Supply Air Flow Rate {m3/s}
ZoneName, !- Controlling Zone or Thermostat Location
Fan:OnOff, !- Supply Air Fan Object Type
SupplyFan, !- Supply Air Fan Name
Coil:Heating:DX:SingleSpeed, !- Heating Coil Object Type
JCI J05XP Heating, !- Heating Coil Name
Coil:Cooling:DX:SingleSpeed, !- Cooling Coil Object Type
JCI J05XP Cooling, !- Cooling Coil Name
Coil:Heating:Fuel, !- Supplemental Heating Coil Object Type
Supp Heating Coil, !- Supplemental Heating Coil Name
50, !- Maximum Supply Air Temperature from Supplemental Heater {C}
21, !- Maximum Outdoor Dry-Bulb Temperature for Supplemental Heater Operation {C}
BlowThrough; !- Fan Placement
! Manufacturer = JCI, Model Line = Series 5 (Heat pump -- J05XP)
! Reference point (Cooling) = 95F (35C) OAT, 67F (19.44C) EWBT
! Reference Capacity (Cooling) = 17789.3 W
! Reference point (Heating) = 47F (8.33C) OAT, 70F (21.11C) EDBT
! Reference Capacity (Heating) = 16857.4 W
! Compressor Type = Scroll
! Refrigerant = R-410A
Coil:Cooling:DX:SingleSpeed,
JCI J05XP Cooling, !- Name
CoolingCoilAvailSched, !- Availability Schedule Name
17789.3, !- Gross Rated Total Cooling Capacity {W}
0.73, !- Gross Rated Sensible Heat Ratio
3.8, !- Gross Rated Cooling COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Evaporator Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
JCI J05XP Cooling CapFTemp, !- Total Cooling Capacity Function of Temperature Curve Name
JCI J05XP Cooling CapFFF,!- Total Cooling Capacity Function of Flow Fraction Curve Name
JCI J05XP Cooling EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
JCI J05XP Cooling EIRFFF,!- Energy Input Ratio Function of Flow Fraction Curve Name
JCI J05XP Cooling PLFFPLR; !- Part Load Fraction Correlation Curve Name
! Cooling Capacity Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J05XP Cooling CAPFTemp, !- Name
1.2677486847, !- Coefficient1 Constant
-0.0212987715, !- Coefficient2 x
0.0016851965, !- Coefficient3 x**2
-0.0051869146, !- Coefficient4 y
0.0000249729, !- Coefficient5 y**2
-0.0004993062, !- Coefficient6 x*y
13.89, !- Minimum Value of x
25, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.7265, !- Minimum Curve Output
1.3674, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J05XP Cooling EIRFTemp, !- Name
-0.0244858231, !- Coefficient1 Constant
0.0546088991, !- Coefficient2 x
-0.0013068298, !- Coefficient3 x**2
0.0081197574, !- Coefficient4 y
0.0005905554, !- Coefficient5 y**2
-0.0007673769, !- Coefficient6 x*y
13.89, !- Minimum Value of x
25, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.6068, !- Minimum Curve Output
1.9036, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Cooling Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J05XP Cooling CAPFFF,!- Name
0.7230407155, !- Coefficient1 Constant
0.4200517769, !- Coefficient2 x
-0.1430924924, !- Coefficient3 x**2
0.625, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9275, !- Minimum Curve Output
1.0198, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J05XP Cooling EIRFFF,!- Name
1.3099053414, !- Coefficient1 Constant
-0.4816501891, !- Coefficient2 x
0.1717448477, !- Coefficient3 x**2
0.625, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9806, !- Minimum Curve Output
1.0782, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
JCI J05XP Cooling PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
Coil:Heating:DX:SingleSpeed,
JCI J05XP Heating, !- Name
HeatingCoilAvailSched, !- Availability Schedule Name
16857.4, !- Gross Rated Heating Capacity {W}
3.2, !- Gross Rated Heating COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Supply Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
JCI J05XP Heating CapFTemp, !- Heating Capacity Function of Temperature Curve Name
JCI J05XP Heating CapFFF,!- Heating Capacity Function of Flow Fraction Curve Name
JCI J05XP Heating EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
JCI J05XP Heating EIRFFF,!- Energy Input Ratio Function of Flow Fraction Curve Name
JCI J05XP Heating PLFFPLR, !- Part Load Fraction Correlation Curve Name
, !- Defrost Energy Input Ratio Function of Temperature Curve Name
, !- Minimum Outdoor Dry-Bulb Temperature for Compressor Operation {C}
, !- Outdoor Dry-Bulb Temperature to Turn On Compressor {C}
, !- Maximum Outdoor Dry-Bulb Temperature for Defrost Operation {C}
, !- Crankcase Heater Capacity {W}
, !- Maximum Outdoor Dry-Bulb Temperature for Crankcase Heater Operation {C}
, !- Defrost Strategy
, !- Defrost Control
, !- Defrost Time Period Fraction
; !- Resistive Defrost Heater Capacity {W}
! Heating Capacity Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J05XP Heating CAPFTemp, !- Name
0.8772069061, !- Coefficient1 Constant
-0.00399089, !- Coefficient2 x
0.0000821453, !- Coefficient3 x**2
0.0204534912, !- Coefficient4 y
-0.0000003623, !- Coefficient5 y**2
0.0000000806, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-23.33, !- Minimum Value of y
15.56, !- Maximum Value of y
0.3512, !- Minimum Curve Output
1.1579, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J05XP Heating EIRFTemp, !- Name
0.392000059, !- Coefficient1 Constant
0.0464608433, !- Coefficient2 x
-0.0004837286, !- Coefficient3 x**2
-0.007005982, !- Coefficient4 y
0.0010916981, !- Coefficient5 y**2
-0.0009929269, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-23.33, !- Minimum Value of y
15.56, !- Maximum Value of y
0.7539, !- Minimum Curve Output
2.7557, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Heating Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J05XP Heating CAPFFF,!- Name
0.7510431154, !- Coefficient1 Constant
0.3240611961, !- Coefficient2 x
-0.0751043115, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9518, !- Minimum Curve Output
1.0388, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J05XP Heating EIRFFF,!- Name
1.102501344, !- Coefficient1 Constant
-0.1819810978, !- Coefficient2 x
0.0794797538, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9992, !- Minimum Curve Output
1.0107, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
JCI J05XP Heating PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
!====================================================EXAMPLE ENDS=========================================================
!----------------------------------------------------------------------------------------------------------------------------------------
! Manufacturer = JCI, Model Line = Series 10 (Heat pump -- J10XP)
! Reference point (Cooling) = 95F (35C) OAT, 67F (19.44C) EWBT
! Reference Capacity (Cooling) = 35578.7 W
! Reference point (Heating) = 47F (8.33C) OAT, 70F (21.11C) EDBT
! Reference Capacity (Heating) = 31044.9051 W
! Compressor Type = Scroll
! Refrigerant = R-410A
Coil:Cooling:DX:SingleSpeed,
JCI J10XP Cooling, !- Name
CoolingCoilAvailSched, !- Availability Schedule Name
17789.3, !- Gross Rated Total Cooling Capacity {W}
0.73, !- Gross Rated Sensible Heat Ratio
3.8, !- Gross Rated Cooling COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Evaporator Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
JCI J10XP Cooling CapFTemp, !- Total Cooling Capacity Function of Temperature Curve Name
JCI J10XP Cooling CapFFF,!- Total Cooling Capacity Function of Flow Fraction Curve Name
JCI J10XP Cooling EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
JCI J10XP Cooling EIRFFF,!- Energy Input Ratio Function of Flow Fraction Curve Name
JCI J10XP Cooling PLFFPLR; !- Part Load Fraction Correlation Curve Name
! Cooling Capacity Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J10XP Cooling CAPFTemp, !- Name
1.3587782644, !- Coefficient1 Constant
-0.0293676065, !- Coefficient2 x
0.0016140268, !- Coefficient3 x**2
-0.0045082608, !- Coefficient4 y
-0.0000733937, !- Coefficient5 y**2
-0.0002208294, !- Coefficient6 x*y
13.89, !- Minimum Value of x
25, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.6886, !- Minimum Curve Output
1.3344, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J10XP Cooling EIRFTemp, !- Name
-0.1355655442, !- Coefficient1 Constant
0.0735278965, !- Coefficient2 x
-0.0015240393, !- Coefficient3 x**2
0.0005175925, !- Coefficient4 y
0.0008293829, !- Coefficient5 y**2
-0.0011050307, !- Coefficient6 x*y
13.89, !- Minimum Value of x
25, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.5764, !- Minimum Curve Output
2.0426, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Cooling Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J10XP Cooling CAPFFF,!- Name
0.5876206167, !- Coefficient1 Constant
0.6063073664, !- Coefficient2 x
-0.1939279831, !- Coefficient3 x**2
0.625, !- Minimum Value of x
1.25, !- Maximum Value of x
0.888, !- Minimum Curve Output
1.0371, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J10XP Cooling EIRFFF,!- Name
1.4204535096, !- Coefficient1 Constant
-0.6181635177, !- Coefficient2 x
0.1977100081, !- Coefficient3 x**2
0.625, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9643, !- Minimum Curve Output
1.1138, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
JCI J10XP Cooling PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
Coil:Heating:DX:SingleSpeed,
JCI J10XP Heating, !- Name
HeatingCoilAvailSched, !- Availability Schedule Name
16857.4, !- Gross Rated Heating Capacity {W}
3.2, !- Gross Rated Heating COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Supply Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
JCI J10XP Heating CapFTemp, !- Heating Capacity Function of Temperature Curve Name
JCI J10XP Heating CapFFF,!- Heating Capacity Function of Flow Fraction Curve Name
JCI J10XP Heating EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
JCI J10XP Heating EIRFFF,!- Energy Input Ratio Function of Flow Fraction Curve Name
JCI J10XP Heating PLFFPLR, !- Part Load Fraction Correlation Curve Name
, !- Defrost Energy Input Ratio Function of Temperature Curve Name
, !- Minimum Outdoor Dry-Bulb Temperature for Compressor Operation {C}
, !- Outdoor Dry-Bulb Temperature to Turn On Compressor {C}
, !- Maximum Outdoor Dry-Bulb Temperature for Defrost Operation {C}
, !- Crankcase Heater Capacity {W}
, !- Maximum Outdoor Dry-Bulb Temperature for Crankcase Heater Operation {C}
, !- Defrost Strategy
, !- Defrost Control
, !- Defrost Time Period Fraction
; !- Resistive Defrost Heater Capacity {W}
! Heating Capacity Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J10XP Heating CAPFTemp, !- Name
0.8356641862, !- Coefficient1 Constant
0.000533039, !- Coefficient2 x
-0.000128972, !- Coefficient3 x**2
0.0252655211, !- Coefficient4 y
0.0000003899, !- Coefficient5 y**2
-0.000000058, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-23.33, !- Minimum Value of y
15.56, !- Maximum Value of y
0.169, !- Minimum Curve Output
1.215, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
JCI J10XP Heating EIRFTemp, !- Name
0.7939784606, !- Coefficient1 Constant
-0.0319847331, !- Coefficient2 x
0.0020135529, !- Coefficient3 x**2
0.0235929371, !- Coefficient4 y
0.0034869871, !- Coefficient5 y**2
-0.0036919217, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-23.33, !- Minimum Value of y
15.56, !- Maximum Value of y
0.7176, !- Minimum Curve Output
5.9413, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Heating Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J10XP Heating CAPFFF,!- Name
-0.1432077788, !- Coefficient1 Constant
2.1604833381, !- Coefficient2 x
-1.0172755593, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9049, !- Minimum Curve Output
1, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
JCI J10XP Heating EIRFFF,!- Name
2.4239231707, !- Coefficient1 Constant
-2.4508074211, !- Coefficient2 x
1.0268842504, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9649, !- Minimum Curve Output
1.1634, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
JCI J10XP Heating PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
!----------------------------------------------------------------------------------------------------------------------------------------
! Manufacturer = Carrier, Model Line = TFQ (Heat pump -- 50TFQ006)
! Reference point (Cooling) = 95F (35C) OAT, 67F (19.44C) EWBT
! Reference Capacity (Cooling) = 17789.3 W
! Reference point (Heating) = 47F (8.33C) OAT, 70F (21.11C) EDBT
! Reference Capacity (Heating) = 14888.069 W
! Compressor Type = Hermetic
! Refrigerant = R-22
Coil:Cooling:DX:SingleSpeed,
Carrier 50TFQ006 Cooling,!- Name
CoolingCoilAvailSched, !- Availability Schedule Name
17789.3, !- Gross Rated Total Cooling Capacity {W}
0.69, !- Gross Rated Sensible Heat Ratio
3.34, !- Gross Rated Cooling COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Evaporator Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
Carrier 50TFQ006 Cooling CapFTemp, !- Total Cooling Capacity Function of Temperature Curve Name
Carrier 50TFQ006 Cooling CapFFF, !- Total Cooling Capacity Function of Flow Fraction Curve Name
Carrier 50TFQ006 Cooling EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
Carrier 50TFQ006 Cooling EIRFFF, !- Energy Input Ratio Function of Flow Fraction Curve Name
Carrier 50TFQ006 Cooling PLFFPLR; !- Part Load Fraction Correlation Curve Name
! Cooling Capacity Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50TFQ006 Cooling CAPFTemp, !- Name
0.5120508213, !- Coefficient1 Constant
0.0431651147, !- Coefficient2 x
-0.0004807631, !- Coefficient3 x**2
-0.0033004769, !- Coefficient4 y
-0.0000686804, !- Coefficient5 y**2
0.0000441517, !- Coefficient6 x*y
16.67, !- Minimum Value of x
22.22, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.7917, !- Minimum Curve Output
1.1256, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50TFQ006 Cooling EIRFTemp, !- Name
0.631381483, !- Coefficient1 Constant
-0.0111455288, !- Coefficient2 x
0.0005325338, !- Coefficient3 x**2
0.0130247068, !- Coefficient4 y
0.0004093783, !- Coefficient5 y**2
-0.0008424879, !- Coefficient6 x*y
16.67, !- Minimum Value of x
22.22, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.7469, !- Minimum Curve Output
1.6334, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Cooling Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50TFQ Cooling CAPFFF, !- Name
0.6883942766, !- Coefficient1 Constant
0.4642289348, !- Coefficient2 x
-0.1526232114, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9507, !- Minimum Curve Output
1.0302, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50TFQ Cooling EIRFFF, !- Name
1.225879713, !- Coefficient1 Constant
-0.3521105489, !- Coefficient2 x
0.1262308359, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.983, !- Minimum Curve Output
1.0328, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
Carrier 50TFQ006 Cooling PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
Coil:Heating:DX:SingleSpeed,
Carrier 50TFQ006 Heating,!- Name
HeatingCoilAvailSched, !- Availability Schedule Name
14888.069, !- Gross Rated Heating Capacity {W}
2.92, !- Gross Rated Heating COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Supply Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
Carrier 50TFQ006 Heating CapFTemp, !- Heating Capacity Function of Temperature Curve Name
Carrier 50TFQ006 Heating CapFFF, !- Heating Capacity Function of Flow Fraction Curve Name
Carrier 50TFQ006 Heating EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
Carrier 50TFQ006 Heating EIRFFF, !- Energy Input Ratio Function of Flow Fraction Curve Name
Carrier 50TFQ006 Heating PLFFPLR, !- Part Load Fraction Correlation Curve Name
, !- Defrost Energy Input Ratio Function of Temperature Curve Name
, !- Minimum Outdoor Dry-Bulb Temperature for Compressor Operation {C}
, !- Outdoor Dry-Bulb Temperature to Turn On Compressor {C}
, !- Maximum Outdoor Dry-Bulb Temperature for Defrost Operation {C}
, !- Crankcase Heater Capacity {W}
, !- Maximum Outdoor Dry-Bulb Temperature for Crankcase Heater Operation {C}
, !- Defrost Strategy
, !- Defrost Control
, !- Defrost Time Period Fraction
; !- Resistive Defrost Heater Capacity {W}
! Heating Capacity Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50TFQ006 Heating CAPFTemp, !- Name
0.8422242976, !- Coefficient1 Constant
-0.0022456353, !- Coefficient2 x
0.0000042519, !- Coefficient3 x**2
0.0235890493, !- Coefficient4 y
0.0001897141, !- Coefficient5 y**2
-0.0000367281, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-17.78, !- Minimum Value of y
15.56, !- Maximum Value of y
0.4429, !- Minimum Curve Output
1.2362, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50TFQ006 Heating EIRFTemp, !- Name
0.7759454142, !- Coefficient1 Constant
0.0138731058, !- Coefficient2 x
0.000178397, !- Coefficient3 x**2
-0.0124920283, !- Coefficient4 y
0.0005441089, !- Coefficient5 y**2
-0.0004661905, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-17.78, !- Minimum Value of y
15.56, !- Maximum Value of y
0.7835, !- Minimum Curve Output
1.9114, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Heating Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50TFQ006 Heating CAPFFF, !- Name
0.9488192861, !- Coefficient1 Constant
0.0669286259, !- Coefficient2 x
-0.015747912, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9902, !- Minimum Curve Output
1.0079, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50TFQ006 Heating EIRFFF, !- Name
1.5141058504, !- Coefficient1 Constant
-0.7896670856, !- Coefficient2 x
0.2755612352, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9576, !- Minimum Curve Output
1.0769, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
Carrier 50TFQ006 Heating PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
!----------------------------------------------------------------------------------------------------------------------------------------
! Manufacturer = Carrier, Model Line = HJQ (Heat pump -- 50HJQ012)
! Reference point (Cooling) = 95F (35C) OAT, 67F (19.44C) EWBT
! Reference Capacity (Cooling) = 34992.558 W
! Reference point (Heating) = 47F (8.33C) OAT, 70F (21.11C) EDBT
! Reference Capacity (Heating) = 31476.156 W
! Compressor Type = Scroll
! Refrigerant = R-22
Coil:Cooling:DX:SingleSpeed,
Carrier 50HJQ012 Cooling,!- Name
CoolingCoilAvailSched, !- Availability Schedule Name
34992.558, !- Gross Rated Total Cooling Capacity {W}
0.75, !- Gross Rated Sensible Heat Ratio
3.41, !- Gross Rated Cooling COP {W/W}
1.888, !- Rated Air Flow Rate {m3/s}
, !- Rated Evaporator Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
Carrier 50HJQ012 Cooling CapFTemp, !- Total Cooling Capacity Function of Temperature Curve Name
Carrier 50HJQ012 Cooling CapFFF, !- Total Cooling Capacity Function of Flow Fraction Curve Name
Carrier 50HJQ012 Cooling EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
Carrier 50HJQ012 Cooling EIRFFF, !- Energy Input Ratio Function of Flow Fraction Curve Name
Carrier 50HJQ012 Cooling PLFFPLR; !- Part Load Fraction Correlation Curve Name
! Cooling Capacity Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50HJQ012 Cooling CAPFTemp, !- Name
0.9016695435, !- Coefficient1 Constant
-0.0100984925, !- Coefficient2 x
0.0011939698, !- Coefficient3 x**2
-0.0022167983, !- Coefficient4 y
-0.0001007897, !- Coefficient5 y**2
0.0000651256, !- Coefficient6 x*y
16.67, !- Minimum Value of x
22.22, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.7437, !- Minimum Curve Output
1.1826, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50HJQ012 Cooling EIRFTemp, !- Name
0.3420143985, !- Coefficient1 Constant
0.0183309439, !- Coefficient2 x
0.0000395191, !- Coefficient3 x**2
0.0203634277, !- Coefficient4 y
0.0005375361, !- Coefficient5 y**2
-0.0015936873, !- Coefficient6 x*y
16.67, !- Minimum Value of x
22.22, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.7064, !- Minimum Curve Output
1.7769, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Cooling Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50HJQ012 Cooling CAPFFF, !- Name
0.7185929648, !- Coefficient1 Constant
0.4422110553, !- Coefficient2 x
-0.1608040201, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9598, !- Minimum Curve Output
1.0201, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50HJQ012 Cooling EIRFFF, !- Name
1.2131941137, !- Coefficient1 Constant
-0.3390327807, !- Coefficient2 x
0.125838667, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.986, !- Minimum Curve Output
1.0297, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
Carrier 50HJQ012 Cooling PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
Coil:Heating:DX:SingleSpeed,
Carrier 50HJQ012 Heating,!- Name
HeatingCoilAvailSched, !- Availability Schedule Name
31476.156, !- Gross Rated Heating Capacity {W}
3.54, !- Gross Rated Heating COP {W/W}
1.888, !- Rated Air Flow Rate {m3/s}
, !- Rated Supply Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
Carrier 50HJQ012 Heating CapFTemp, !- Heating Capacity Function of Temperature Curve Name
Carrier 50HJQ012 Heating CapFFF, !- Heating Capacity Function of Flow Fraction Curve Name
Carrier 50HJQ012 Heating EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
Carrier 50HJQ012 Heating EIRFFF, !- Energy Input Ratio Function of Flow Fraction Curve Name
Carrier 50HJQ012 Heating PLFFPLR, !- Part Load Fraction Correlation Curve Name
, !- Defrost Energy Input Ratio Function of Temperature Curve Name
, !- Minimum Outdoor Dry-Bulb Temperature for Compressor Operation {C}
, !- Outdoor Dry-Bulb Temperature to Turn On Compressor {C}
, !- Maximum Outdoor Dry-Bulb Temperature for Defrost Operation {C}
, !- Crankcase Heater Capacity {W}
, !- Maximum Outdoor Dry-Bulb Temperature for Crankcase Heater Operation {C}
, !- Defrost Strategy
, !- Defrost Control
, !- Defrost Time Period Fraction
; !- Resistive Defrost Heater Capacity {W}
! Heating Capacity Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50HJQ012 Heating CAPFTemp, !- Name
0.8315833373, !- Coefficient1 Constant
-0.0005884494, !- Coefficient2 x
-0.0000522898, !- Coefficient3 x**2
0.0237989677, !- Coefficient4 y
0.0000626989, !- Coefficient5 y**2
0.0000083281, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-17.78, !- Minimum Value of y
15.56, !- Maximum Value of y
0.2821, !- Minimum Curve Output
1.2104, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering dry-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50HJQ012 Heating EIRFTemp, !- Name
0.8120699062, !- Coefficient1 Constant
0.006056182, !- Coefficient2 x
0.0004384377, !- Coefficient3 x**2
-0.0153158908, !- Coefficient4 y
0.0012912017, !- Coefficient5 y**2
-0.0008045447, !- Coefficient6 x*y
12.78, !- Minimum Value of x
26.67, !- Maximum Value of x
-17.78, !- Minimum Value of y
15.56, !- Maximum Value of y
0.7827, !- Minimum Curve Output
2.926, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! Heating Capacity Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50HJQ012 Heating CAPFFF, !- Name
0.9273753122, !- Coefficient1 Constant
0.05027863, !- Coefficient2 x
0.0223460578, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9777, !- Minimum Curve Output
1.0251, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! EIR Function of Flow Fraction Curve
! x = Flow Fraction
Curve:Quadratic,
Carrier 50HJQ012 Heating EIRFFF, !- Name
1.0243032687, !- Coefficient1 Constant
-0.1374417005, !- Coefficient2 x
0.1131384318, !- Coefficient3 x**2
0.75, !- Minimum Value of x
1.25, !- Maximum Value of x
0.9849, !- Minimum Curve Output
1.0293, !- Maximum Curve Output
Dimensionless, !- Input Unit Type for X
Dimensionless; !- Output Unit Type
! Part Load Fraction Function of Part Load Ratio Curve
! (Generic curve used and not derived from manufacturer's data)
! x = Part Load Ratio
Curve:Quadratic,
Carrier 50HJQ012 Heating PLFFPLR, !- Name
0.85, !- Coefficient1 Constant
0.15, !- Coefficient2 x
0.0, !- Coefficient3 x**2
0.0, !- Minimum Value of x
1.0; !- Maximum Value of x
!----------------------------------------------------------------------------------------------------------------------------------------
! Manufacturer = Carrier, Model Line = EZ (Heat pump -- 50EZ060)
! Reference point (Cooling) = 95F (35C) OAT, 67F (19.44C) EWBT
! Reference Capacity (Cooling) = 17716.3372 W
! Reference point (Heating) = 47F (8.33C) OAT, 70F (21.11C) EDBT
! Reference Capacity (Heating) = 17303.1085 W
! Compressor Type = Scroll
! Refrigerant = R-410 A
Coil:Cooling:DX:SingleSpeed,
Carrier 50EZ060 Cooling, !- Name
CoolingCoilAvailSched, !- Availability Schedule Name
17716.3372, !- Gross Rated Total Cooling Capacity {W}
0.75, !- Gross Rated Sensible Heat Ratio
4.05, !- Gross Rated Cooling COP {W/W}
0.944, !- Rated Air Flow Rate {m3/s}
, !- Rated Evaporator Fan Power Per Volume Flow Rate {W/(m3/s)}
DXCoilAirInletNode, !- Air Inlet Node Name
DXCoilAirOutletNode, !- Air Outlet Node Name
Carrier 50EZ060 Cooling CapFTemp, !- Total Cooling Capacity Function of Temperature Curve Name
Carrier 50EZ060 Cooling CapFFF, !- Total Cooling Capacity Function of Flow Fraction Curve Name
Carrier 50EZ060 Cooling EIRFTemp, !- Energy Input Ratio Function of Temperature Curve Name
Carrier 50EZ060 Cooling EIRFFF, !- Energy Input Ratio Function of Flow Fraction Curve Name
Carrier 50EZ060 Cooling PLFFPLR; !- Part Load Fraction Correlation Curve Name
! Cooling Capacity Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp
Curve:Biquadratic,
Carrier 50EZ060 Cooling CAPFTemp, !- Name
1.5925938003, !- Coefficient1 Constant
-0.0627877976, !- Coefficient2 x
0.0027564091, !- Coefficient3 x**2
0.0000704, !- Coefficient4 y
-0.0000564877, !- Coefficient5 y**2
-0.0005100941, !- Coefficient6 x*y
13.89, !- Minimum Value of x
22.22, !- Maximum Value of x
23.89, !- Minimum Value of y
51.67, !- Maximum Value of y
0.7064, !- Minimum Curve Output
1.2447, !- Maximum Curve Output
Temperature, !- Input Unit Type for X
Temperature, !- Input Unit Type for Y
Dimensionless; !- Output Unit Type
! EIR Function of Temperature Curve
! x = Entering Wet-bulb Temp and y = Outdoor Dry-bulb Temp