.Buildings.Fluid.Chillers.Data.ElectricReformulatedEIR.ReformEIRChiller_York_YT_563kW_10_61COP_Vanes

Information

Performance data for chiller model. This data corresponds to the following EnergyPlus model:
Chiller:Electric:ReformulatedEIR,
    ReformEIRChiller York YT 563kW/10.61COP/Vanes,  !- Name
    562600,                  !- Reference Capacity {W}
    10.61,                   !- Reference COP {W/W}
    6.11,                    !- Reference Leaving Chilled Water Temperature {C}
    18.89,                   !- Reference Leaving Condenser Water Temperature {C}
    0.01514,                 !- Reference Chilled Water Flow Rate {m3/s}
    0.0241,                  !- Reference Condenser Water Flow Rate {m3/s}
    ReformEIRChiller York YT 563kW/10.61COP/Vanes CAPFT,  !- Cooling Capacity Function of Temperature Curve Name
    ReformEIRChiller York YT 563kW/10.61COP/Vanes EIRFT,  !- Electric Input to Cooling Output Ratio Function of Temperature Curve Name
    ReformEIRChiller York YT 563kW/10.61COP/Vanes EIRFPLR,  !- Electric Input to Cooling Output Ratio Function of Part Load Ratio Curve Name
    0.09,                    !- Minimum Part Load Ratio
    1.02,                    !- Maximum Part Load Ratio
    1.0,                     !- Optimum Part Load Ratio
    0.09,                    !- Minimum Unloading Ratio
    Chilled Water Side Inlet Node,  !- Chilled Water Inlet Node Name
    Chilled Water Side Outlet Node,  !- Chilled Water Outlet Node Name
    Condenser Side Inlet Node,  !- Condenser Inlet Node Name
    Condenser Side Outlet Node,  !- Condenser Outlet Node Name
    1.0,                     !- Compressor Motor Efficiency
    2.0,                     !- Leaving Chilled Water Lower Temperature Limit {C}
    ConstantFlow,            !- Chiller Flow Mode Type
    0.0;                     !- Design Heat Recovery Water Flow Rate {m3/s}

Definition

record ReformEIRChiller_York_YT_563kW_10_61COP_Vanes = Buildings.Fluid.Chillers.Data.ElectricReformulatedEIR.Generic(QEva_flow_nominal = -562600, COP_nominal = 10.61, PLRMin = 0.09, PLRMinUnl = 0.09, PLRMax = 1.02, mEva_flow_nominal = 1000*0.01514, mCon_flow_nominal = 1000*0.0241, TEvaLvg_nominal = 273.15 + 6.11, TConLvg_nominal = 273.15 + 18.89, TEvaLvgMin = 273.15 + 6.11, TEvaLvgMax = 273.15 + 12.78, TConLvgMin = 273.15 + 18.47, TConLvgMax = 273.15 + 33.52, capFunT = {-2.841837E-01, -1.006253E-01, -3.157589E-03, 1.221758E-01, -3.003466E-03, 6.704017E-03}, EIRFunT = {-5.308783E-01, -8.364102E-02, -4.054970E-03, 1.347115E-01, -1.805617E-03, 3.054789E-03}, EIRFunPLR = {4.931998E+00, -2.128161E-01, 3.520769E-04, -8.586753E+00, 1.375722E+01, 1.940510E-01, 0.000000E+00, -8.859038E+00, 0.000000E+00, 0.000000E+00}, etaMotor = 1.0);

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