HeatingUnitSeries
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Use
This HeatingUnitSeries component enables multiple heating system models to be connected in series to a single heat supply system. In this setup, the volume flow to each connected heating system is regulated by an external heat controller, while the remaining flow of the heating medium bypasses the system through an internal bypass pipe. As a result, the flow temperature of each connected heating system corresponds to the supply temperature of the heat source.
Parameters and Connectors
▶FlowSupply refers to the flow coming from the supply side. At this point, the heating fluid, including its temperature and volume flow, is transferred into this model. ▶ReturnSupply represents the return flow back to the heating supply. Here, the cooled fluid is directed back to the storage system or heater.
▶FlowSink refers to the flow going to the sink side. At this point, the heating fluid, including its temperature and volume flow, is transferred out of this model.▶ReturnSupply represents the return flow back from the heating sink side. Here, the cooled fluid is coming back from the heating zone.
▶qvRef refers to the reference volume flow of the heat sink, which is typically defined by a heating controller VolumeFlowControllerHeatingSystem. ▶TFlowSink describes the actual flow temperature of the sink. ▶TReturnSink describes the actual return temperature of the sink. Both outputs are required by the heating controller VolumeFlowControllerHeatingSystem.
QlossRate describes the heat loss through the insulation. VValve describes the volume in the valve. The parameters of the fluid are described by cpMed average specific heat capacity and rhoMed average density. TAmbient defines the ambient temperature at the location of the model. If the unit is placed in a heated zone, this corresponds to the temperature of that zone. If it is located outside, it corresponds to the outside temperature. This parameter is required for calculating heat losses.
Examples
This image shows an example of how a HeatingUnitSeries can be integrated.