modelRefrigerantR410aScrollCompressor

Static heat pump boundaries of a scroll-compressor using R410a

Extends from BaseModelStaticHeatPump (Base model to test compressors using static heat pump boundaries), Modelica.Icons.Example (Icon for runnable examples).

Information

This model specifies the base model BaseModelStaticHeatPump. Therefore, a fictious data set is used.

Parameters

TypeNameDefaultDescription
General › Compressors
IntegernCom (from BaseModelStaticHeatPump)1Numer of compressors in parallel
General › Evaporator
Modelica.Units.SI.TemperatureDifferencedTPinEva (from BaseModelStaticHeatPump)5Pinch temperature at evaporator's outlet
Modelica.Units.SI.TemperatureDifferencedTSupHea (from BaseModelStaticHeatPump)1Superheating of working fluid
General › Condenser
Modelica.Units.SI.TemperatureDifferencedTPinCon (from BaseModelStaticHeatPump)2.5Pinch temperature at evaporator's outlet
Modelica.Units.SI.TemperatureDifferencedTSubCool (from BaseModelStaticHeatPump)8Supercooling of working fluid
Modelica.Units.SI.DensitydSec (from BaseModelStaticHeatPump)1000Constant density of secondary fluid
Modelica.Units.SI.SpecificHeatCapacitycpSec (from BaseModelStaticHeatPump)4.1813e3Constant specific heat capacity of secondary fluid
Modelica.Units.SI.VolumeFlowRateV_flowSec (from BaseModelStaticHeatPump)(0.776 + 0.781 + 0.44)/3/3600Constant volume flow of secondary fluid

Connectors

TypeNameDefaultDescription
Controls.Interfaces.ModularHeatPumpControlBusdataBus (from BaseModelStaticHeatPump)Connector that contains all control signals

Components

TypeNameDefaultDescription
Modelica.Blocks.Sources.CombiTimeTableinpDat (from BaseModelStaticHeatPump)Static boundaries of compressor model
Modelica.Blocks.Sources.RealExpressioninpRotSpe (from BaseModelStaticHeatPump)Expressions describing rotational speed
Modelica.Blocks.Sources.RealExpressioninpAmbTemp (from BaseModelStaticHeatPump)Expressions describing ambient temperature
Modelica.Blocks.Sources.RealExpressioninpHeaCap (from BaseModelStaticHeatPump)Expressions describing heat capacity
Modelica.Blocks.Sources.RealExpressioninpTRetFlo (from BaseModelStaticHeatPump)Expressions describing return flow temperature at heat capacity
Modelica.Thermal.HeatTransfer.Sources.PrescribedTemperatureambTemp (from BaseModelStaticHeatPump)Source that prescribes boundary ambient temperature
Modelica.Thermal.HeatTransfer.Components.ThermalCollectorthrCol (from BaseModelStaticHeatPump)Model to split the ambient temperature
StaticEvaporatoreva (from BaseModelStaticHeatPump)Model that describes a simple static evaporator
Modelica.Blocks.Routing.ReplicatorrepMea (from BaseModelStaticHeatPump)Replicating the current value of the manipulated variables
ModularCompressors.ModularCompressorsSensorsmodCom (from BaseModelStaticHeatPump)Model that describes modular compressors in parallel
StaticCondensercon (from BaseModelStaticHeatPump)Model that describes a simple static condenser
Modelica.Blocks.Interaction.Show.RealValueCOP (from BaseModelStaticHeatPump)Real value describing current COP
Modelica.Blocks.Interaction.Show.RealValuedCOPRel (from BaseModelStaticHeatPump)Realative difference of current COP
Modelica.Blocks.Interaction.Show.RealValuePEle (from BaseModelStaticHeatPump)Real value describing current power consumption
Modelica.Blocks.Interaction.Show.RealValuedPEleRel (from BaseModelStaticHeatPump)Real difference of current power consumption
RealinpTime (from BaseModelStaticHeatPump)timeSimulation time

Revisions

  • December 16, 2017, by Mirko Engelpracht:
    First implementation (see issue 467).