modelFlueGas

Ideal gas flue gas model

Extends from Modelica.Icons.Example (Icon for runnable examples).

Information

An example for using ideal gas properties and how to compute isentropic enthalpy changes. The function that is implemented is approximate, but usually very good: the second medium record medium2 is given to compare the approximation.

Parameters

TypeNameDefaultDescription
Medium.MolarMassMMxMedium.data.MMMolar masses of flue gas

Components

TypeNameDefaultDescription
Medium.ThermodynamicStatestate
Medium.BasePropertiesmedium2
Medium.SpecificHeatCapacitycpMedium.specificHeatCapacityCp(state)
Medium.SpecificHeatCapacitycvMedium.specificHeatCapacityCv(state)
Medium.IsentropicExponentgammaMedium.isentropicExponent(state)
Medium.SpecificEntropysMedium.specificEntropy(state)
Medium.SpecificEntropys2Medium.specificEntropy(medium2.state)
Medium.VelocityOfSoundaMedium.velocityOfSound(state)
RealbetaMedium.isobaricExpansionCoefficient(state)
Realgamma2Medium.isothermalCompressibility(medium2.state)
Medium.SpecificEnthalpyh_isMedium.isentropicEnthalpyApproximation(2.0e5, medium2.state)
Medium.MolarMassMM1/sum(state.X[j]/MMx[j] for j in 1:4)molar mass
RealdddXMedium.density_derX(medium2.state)

Contents

NameDescription
MediumMedium model