modelMassFlowDependence

Extends from ThermoCycle.Components.HeatFlow.HeatTransfer.ConvectiveHeatTransfer.BaseClasses.PartialConvectiveCorrelation.

Information

The model MassFlowDependance extends the partial model PartialConvectiveCorrelation and use the following equation to compute the heat transfer coefficient:

Parameters

TypeNameDefaultDescription
Integern (from PartialHeatTransfer)1Number of heat transfer segments

Connectors

TypeNameDefaultDescription
Interfaces.HeatTransfer.ThermalPortLthermalPortL (from PartialHeatTransfer)

Components

TypeNameDefaultDescription
Medium.ThermodynamicStateFluidState (from PartialHeatTransfer)Thermodynamic states of flow segments
Modelica.SIunits.HeatFluxq_dot (from PartialHeatTransfer)Heat flux
Modelica.SIunits.TemperatureT_fluid (from PartialHeatTransfer)Medium.temperature(FluidState)Temperature of the fluid for the heat transfer process
Modelica.SIunits.MassFlowRateMdotnom (from PartialConvectiveCorrelation)Nomnial Mass flow rate
Modelica.SIunits.CoefficientOfHeatTransferUnom_l (from PartialConvectiveCorrelation)Nominal heat transfer coefficient liquid side
Modelica.SIunits.CoefficientOfHeatTransferUnom_tp (from PartialConvectiveCorrelation)nominal heat transfer coefficient two phase side
Modelica.SIunits.CoefficientOfHeatTransferUnom_v (from PartialConvectiveCorrelation)nominal heat transfer coefficient vapor side
Modelica.SIunits.MassFlowRateM_dot (from PartialConvectiveCorrelation)Inlet massflow
Realx (from PartialConvectiveCorrelation)Vapor quality
Modelica.SIunits.CoefficientOfHeatTransferUnomNominal heat transfer coefficient- Average of liquid two phase and vapor
Modelica.SIunits.CoefficientOfHeatTransferUHeat transfer coefficient