modelPartialSolutionWithHeatPort

Chemical solution as homogenous mixture of the substances
Diagram of PartialSolutionWithHeatPort

Extends from Interfaces.PartialSolution (Base chemical solution as homogenous mixture of the substances (only pressure and electric potential are not defined)).

Information

amountOfSolution = ∑ amountOfSubstances

mass = ∑ massOfSubstances

volume = ∑ volumeOfSubstances

freeGibbsEnergy = ∑ freeGibbsEnergiesOfSubstances

To calculate the sum of extensive substance's properties is misused the Modelica "flow" prefix even there are not real physical flows.

Parameters

TypeNameDefaultDescription
Environment relationships
BooleanElectricGround (from PartialSolution)trueIs electric potential equal to zero?
BooleanConstantTemperaturetrueIs temperature constant (if not useThermalPort)?
Initialization
Modelica.Units.SI.Temperaturetemperature_startsystem.T_ambientInitial temperature of the solution
Conditional inputs
BooleanuseThermalPortfalseIs thermal port pressent?

Connectors

TypeNameDefaultDescription
Modelica.Thermal.HeatTransfer.Interfaces.HeatPort_aheatPort

Components

TypeNameDefaultDescription
Modelica.Fluid.Systemsystem (from PartialSolution)System wide properties
Modelica.Units.SI.Temperaturetemperature (from PartialSolution)Temperature
Modelica.Units.SI.Pressurepressure (from PartialSolution)Pressure
Modelica.Units.SI.Volumevolume (from PartialSolution)Current volume of the solution
Modelica.Units.SI.Massmass (from PartialSolution)Current mass of the solution
Totaltotal (from PartialSolution)

Revisions

2018 by Marek Matejak, Charles University, Prague, Czech Republic