modelDHCPipe

Simple example of DHCPipe and its four different modes

Extends from Modelica.Icons.Example.

Information

Basic test of model AixLib.Fluid.DistrictHeatingCooling.Pipes.DHCPipe. This test includes an inlet temperature step under a constant mass flow rate. All four possible applications of the DHC pipe model are shown as examples.

  • November 12, 2020, by Michael Mans:
    First implementation

Components

TypeNameDefaultDescription
Modelica.Blocks.Sources.PulseTinRamp pressure signal
Sources.Boundary_pTsinPressure boundary condition
AixLib.Fluid.DistrictHeatingCooling.Pipes.DHCPipepipPipe
Modelica.Thermal.HeatTransfer.Sources.FixedTemperaturebouBoundary temperature
AixLib.Fluid.Sources.MassFlowSource_TsouFlow source
AixLib.Fluid.Sensors.TemperatureTwoPortsenTemOutTemperature sensor
AixLib.Fluid.Sensors.TemperatureTwoPortsenTemInTemperature sensor
Modelica.Blocks.Sources.PulseTin1Ramp pressure signal
Sources.Boundary_pTsin1Pressure boundary condition
AixLib.Fluid.DistrictHeatingCooling.Pipes.DHCPipepip1Pipe
Sources.MassFlowSource_Tsou1Flow source
Sensors.TemperatureTwoPortsenTemOut1Temperature sensor
Sensors.TemperatureTwoPortsenTemIn1Temperature sensor
Modelica.Blocks.Sources.PulseTin2Ramp pressure signal
Sources.Boundary_pTsin2Pressure boundary condition
AixLib.Fluid.DistrictHeatingCooling.Pipes.DHCPipepip2Pipe
Sources.MassFlowSource_Tsou2Flow source
Sensors.TemperatureTwoPortsenTemOut2Temperature sensor
Sensors.TemperatureTwoPortsenTemIn2Temperature sensor
Modelica.Blocks.Sources.PulseTin3Ramp pressure signal
Sources.Boundary_pTsin3Pressure boundary condition
AixLib.Fluid.DistrictHeatingCooling.Pipes.DHCPipepip3Pipe
Sources.MassFlowSource_Tsou3Flow source
Sensors.TemperatureTwoPortsenTemOut3Temperature sensor
Sensors.TemperatureTwoPortsenTemIn3Temperature sensor

Contents

NameDescription
MediumMedium in the pipe