modelVCLib4DAirToWater_OneRoomRadiator
Air to water heat pump with 4D data based on VCLib
Extends from Modelica.Icons.Example, BaseClasses.PartialOneRoomRadiator.
Information
This example demonstrates how to use the AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData4DDeltaT refrigerant cycle model with dynamic frosting and defrosting models. Please check the associated documentation for further information.
Note, it is important to add the QEva_flow and relHum to the signal bus in order for the frosting models to work properly.
Please check the documentation of AixLib.Fluid.HeatPumps.ModularReversible.Examples.BaseClasses.PartialOneRoomRadiator for further information on the example.
Components
| Type | Name | Default | Description |
|---|---|---|---|
| AixLib.Fluid.HeatPumps.ModularReversible.Modular | heaPum | Large scale water to water heat pump | |
| Modelica.Blocks.Sources.Pulse | TAirSouSte | Air source temperature step for cooling phase | |
| Controls.Defrost.ZhuTimeBasedDefrost | zhuDef | ||
| AixLib.Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus | sigBusHeaPum | Bus with the most relevant information for hp frosting calculation | |
| Modelica.Blocks.Routing.RealPassThrough | reaPasThr | To connect bus signals |
Revisions
-
August 27, 2024 by Fabian Wuellhorst:
First implementation (see issue #1576)