Package with moist air model that decouples pressure and temperature and that has no liquid water
This is a medium model that is identical to Buildings.Obsolete.Media.GasesConstantDensity.MoistAir, but in this model, the air must not be saturated. If the air is saturated, use the medium model Buildings.Obsolete.Media.GasesConstantDensity.MoistAir instead of this one.
This medium model has been added to allow an explicit computation of
the function
T_phX so that it is once differentiable in h
with a continuous derivative. This allows obtaining an analytic
expression for the Jacobian, and therefore simplifies the computation
of initial conditions that can be numerically challenging for
thermo-fluid systems.
This new formulation often leads to smaller systems of nonlinear equations
because it allows to invert the function T_phX analytically.
Extends from Modelica.Media.Interfaces.PartialCondensingGases (Base class for mixtures of condensing and non-condensing gases).
| Name | Description |
|---|---|
| Water=1 | Index of water (in substanceNames, massFractions X, etc.) |
| Air=2 | Index of air (in substanceNames, massFractions X, etc.) |
| k_mair=steam.MM/dryair.MM | ratio of molar weights |
| dryair=Buildings.Obsolete.Media.PerfectGases.Common.SingleGasData.Air | |
| steam=Buildings.Obsolete.Media.PerfectGases.Common.SingleGasData.H2O | |
| pStp=101325 | Pressure for which dStp is defined |
| dStp=1.2 | Fluid density at pressure pStp |
| ThermodynamicState record for moist air | |
| Steam water mass fraction of saturation boundary in kg_water/kg_moistair | |
| Thermodynamic state as function of p, T and composition X | |
| Thermodynamic state as function of p, h and composition X | |
| Thermodynamic state as function of d, T and composition X | |
| Gas constant (computation neglects liquid fraction) | |
| Saturation curve valid for 273.16 <= T <= 373.16. Outside of these limits a (less accurate) result is returned | |
| Saturation curve valid for 273.16 <= T <= 373.16. Outside of these limits a (less accurate) result is returned | |
| Saturation curve valid for 223.16 <= T <= 273.16. Outside of these limits a (less accurate) result is returned | |
| Saturation curve valid for 223.16 <= T <= 373.16 (and slightly outside with less accuracy) | |
| Gas pressure | |
| Gas temperature | |
| Gas density | |
| Specific entropy (liquid part neglected, mixing entropy included) | |
| Enthalpy of vaporization of water | |
| Specific heat capacity of water (liquid only) which is constant | |
| Enthalpy of liquid (per unit mass of liquid) which is linear in the temperature | |
| Temperature derivative of enthalpy of liquid per unit mass of liquid | |
| Enthalpy of steam per unit mass of steam | |
| Derivative of enthalpy of steam per unit mass of steam | |
| Enthalpy of gas mixture per unit mass of gas mixture | |
| Enthalpy of dry air per unit mass of dry air | |
| Derivative of enthalpy of dry air per unit mass of dry air | |
| Specific heat capacity of gas mixture at constant pressure | |
| Specific heat capacity of gas mixture at constant volume | |
| dynamic viscosity of dry air | |
| Thermal conductivity of dry air as a polynomial in the temperature | |
| Specific enthalpy | |
| Specific internal energy | |
| Specific Gibbs energy | |
| Specific Helmholtz energy | |
| Compute specific enthalpy from pressure, temperature and mass fraction | |
| Compute temperature from specific enthalpy and mass fraction | |
| Enthalpy of non-condensing gas per unit mass | |
| Derivative of enthalpy of non-condensing gas per unit mass | |
| Inherited | |
| fluidConstants | Constant data for the fluid |
| Return mass fractions X from mole fractions | |
| Return mole fractions from mass fractions X | |
| ThermoStates | Enumeration type for independent variables |
| mediumName="unusablePartialMedium" | Name of the medium |
| substanceNames={mediumName} | Names of the mixture substances. Set substanceNames={mediumName} if only one substance. |
| extraPropertiesNames=fill("", 0) | Names of the additional (extra) transported properties. Set extraPropertiesNames=fill("",0) if unused |
| singleState | = true, if u and d are not a function of pressure |
| reducedX=true | = true if medium contains the equation sum(X) = 1.0; set reducedX=true if only one substance (see docu for details) |
| fixedX=false | = true if medium contains the equation X = reference_X |
| reference_p=101325 | Reference pressure of Medium: default 1 atmosphere |
| reference_T=298.15 | Reference temperature of Medium: default 25 deg Celsius |
| reference_X=fill(1/nX, nX) | Default mass fractions of medium |
| p_default=101325 | Default value for pressure of medium (for initialization) |
| T_default=Modelica.SIunits.Conversions.from_degC(20) | Default value for temperature of medium (for initialization) |
| h_default=specificEnthalpy_pTX(p_default, T_default, X_default) | Default value for specific enthalpy of medium (for initialization) |
| X_default=reference_X | Default value for mass fractions of medium (for initialization) |
| nS=size(substanceNames, 1) | Number of substances |
| nX=nS | Number of mass fractions |
| nXi=if fixedX then 0 else if reducedX then nS - 1 else nS | Number of structurally independent mass fractions (see docu for details) |
| nC=size(extraPropertiesNames, 1) | Number of extra (outside of standard mass-balance) transported properties |
| C_nominal=1.0e-6*ones(nC) | Default for the nominal values for the extra properties |
| Critical, triple, molecular and other standard data of fluid | |
| Return thermodynamic state as function of p, s and composition X or Xi | |
| Return thermodynamic state so that it smoothly approximates: if x > 0 then state_a else state_b | |
| Return the Prandtl number | |
| Alias for deprecated name | |
| Alias for deprecated name | |
| Return isentropic exponent | |
| Return isentropic enthalpy | |
| Return velocity of sound | |
| Return overall the isobaric expansion coefficient beta | |
| Alias for isobaricExpansionCoefficient for user convenience | |
| Return overall the isothermal compressibility factor | |
| Alias of isothermalCompressibility for user convenience | |
| Return density derivative w.r.t. pressure at const specific enthalpy | |
| Return density derivative w.r.t. specific enthalpy at constant pressure | |
| Return density derivative w.r.t. pressure at const temperature | |
| Return density derivative w.r.t. temperature at constant pressure | |
| Return density derivative w.r.t. mass fraction | |
| Return the molar mass of the medium | |
| Return specific enthalpy from p, T, and X or Xi | |
| Return specific enthalpy from p, T, and X or Xi | |
| Return density from p, T, and X or Xi | |
| Return temperature from p, h, and X or Xi | |
| Return density from p, h, and X or Xi | |
| Return temperature from p,s, and X or Xi | |
| Return density from p, s, and X or Xi | |
| Return specific enthalpy from p, s, and X or Xi | |
| MassFlowRate | Type for mass flow rate with medium specific attributes |
| AbsolutePressure | Type for absolute pressure with medium specific attributes |
| Density | Type for density with medium specific attributes |
| DynamicViscosity | Type for dynamic viscosity with medium specific attributes |
| EnthalpyFlowRate | Type for enthalpy flow rate with medium specific attributes |
| MassFraction | Type for mass fraction with medium specific attributes |
| MoleFraction | Type for mole fraction with medium specific attributes |
| MolarMass | Type for molar mass with medium specific attributes |
| MolarVolume | Type for molar volume with medium specific attributes |
| IsentropicExponent | Type for isentropic exponent with medium specific attributes |
| SpecificEnergy | Type for specific energy with medium specific attributes |
| SpecificInternalEnergy | Type for specific internal energy with medium specific attributes |
| SpecificEnthalpy | Type for specific enthalpy with medium specific attributes |
| SpecificEntropy | Type for specific entropy with medium specific attributes |
| SpecificHeatCapacity | Type for specific heat capacity with medium specific attributes |
| SurfaceTension | Type for surface tension with medium specific attributes |
| Temperature | Type for temperature with medium specific attributes |
| ThermalConductivity | Type for thermal conductivity with medium specific attributes |
| PrandtlNumber | Type for Prandtl number with medium specific attributes |
| VelocityOfSound | Type for velocity of sound with medium specific attributes |
| ExtraProperty | Type for unspecified, mass-specific property transported by flow |
| CumulativeExtraProperty | Type for conserved integral of unspecified, mass specific property |
| ExtraPropertyFlowRate | Type for flow rate of unspecified, mass-specific property |
| IsobaricExpansionCoefficient | Type for isobaric expansion coefficient with medium specific attributes |
| DipoleMoment | Type for dipole moment with medium specific attributes |
| DerDensityByPressure | Type for partial derivative of density with respect to pressure with medium specific attributes |
| DerDensityByEnthalpy | Type for partial derivative of density with respect to enthalpy with medium specific attributes |
| DerEnthalpyByPressure | Type for partial derivative of enthalpy with respect to pressure with medium specific attributes |
| DerDensityByTemperature | Type for partial derivative of density with respect to temperature with medium specific attributes |
| DerTemperatureByPressure | Type for partial derivative of temperature with respect to pressure with medium specific attributes |
| Saturation properties of two phase medium | |
| Validity limits for fluid model | |
| FixedPhase | Phase of the fluid: 1 for 1-phase, 2 for two-phase, 0 for not known, e.g., interactive use |
| The most basic version of a record used in several degrees of detail | |
| The ideal gas version of a record used in several degrees of detail | |
| The two phase fluid version of a record used in several degrees of detail | |
constant Integer Water=1 "Index of water (in substanceNames, massFractions X, etc.)";
constant Integer Air=2 "Index of air (in substanceNames, massFractions X, etc.)";
constant Real k_mair = steam.MM/dryair.MM "ratio of molar weights";
constant Buildings.Obsolete.Media.PerfectGases.Common.DataRecord dryair=
Buildings.Obsolete.Media.PerfectGases.Common.SingleGasData.Air;
constant Buildings.Obsolete.Media.PerfectGases.Common.DataRecord steam=
Buildings.Obsolete.Media.PerfectGases.Common.SingleGasData.H2O;
constant AbsolutePressure pStp = 101325 "Pressure for which dStp is defined";
constant Density dStp = 1.2 "Fluid density at pressure pStp";
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.ThermodynamicStateThermodynamicState record for moist air
Extends from (Thermodynamic state variables).
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.BasePropertiesExtends from (Base properties (p, d, T, h, u, R, MM and, if applicable, X and Xi) of a medium).
| Type | Name | Default | Description |
|---|---|---|---|
| Boolean | standardOrderComponents | true | If true, and reducedX = true, the last element of X will be computed from the other ones |
| Advanced | |||
| Boolean | preferredMediumStates | false | = true if StateSelect.prefer shall be used for the independent property variables of the medium |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.XsaturationSteam water mass fraction of saturation boundary in kg_water/kg_moistair
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| MassFraction | X_sat | Steam mass fraction of sat. boundary [kg/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.setState_pTXThermodynamic state as function of p, T and composition X
Extends from Buildings.Obsolete.Media.PerfectGases.MoistAir.setState_pTX (Thermodynamic state as function of p, T and composition X).
| Type | Name | Default | Description |
|---|---|---|---|
| AbsolutePressure | p | Pressure [Pa] | |
| Temperature | T | Temperature [K] | |
| MassFraction | X[:] | reference_X | Mass fractions [kg/kg] |
| Type | Name | Description |
|---|---|---|
| ThermodynamicState | state | Thermodynamic state |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.setState_phXThermodynamic state as function of p, h and composition X
T_phX provided by this package as opposed to the
implementation provided by its parent package.
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| AbsolutePressure | p | Pressure [Pa] | |
| SpecificEnthalpy | h | Specific enthalpy [J/kg] | |
| MassFraction | X[:] | Mass fractions [kg/kg] |
| Type | Name | Description |
|---|---|---|
| ThermodynamicState | state |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.setState_dTXThermodynamic state as function of d, T and composition X
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Density | d | density [kg/m3] | |
| Temperature | T | Temperature [K] | |
| MassFraction | X[:] | reference_X | Mass fractions [kg/kg] |
| Type | Name | Description |
|---|---|---|
| ThermodynamicState | state | Thermodynamic state |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.gasConstantGas constant (computation neglects liquid fraction)
Extends from Buildings.Obsolete.Media.PerfectGases.MoistAir.gasConstant (Gas constant (computation neglects liquid fraction)).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state |
| Type | Name | Description |
|---|---|---|
| SpecificHeatCapacity | R | Mixture gas constant [J/(kg.K)] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.saturationPressureLiquidSaturation curve valid for 273.16 <= T <= 373.16. Outside of these limits a (less accurate) result is returned
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | Tsat | saturation temperature [K] |
| Type | Name | Description |
|---|---|---|
| AbsolutePressure | psat | saturation pressure [Pa] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.saturationPressureLiquid_derSaturation curve valid for 273.16 <= T <= 373.16. Outside of these limits a (less accurate) result is returned
saturationPressureLiquid.
Extends from Buildings.Obsolete.Media.PerfectGases.MoistAir.saturationPressureLiquid_der (Time derivative of saturationPressureLiquid).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | Tsat | Saturation temperature [K] | |
| Real | dTsat | Saturation temperature derivative [K/s] |
| Type | Name | Description |
|---|---|---|
| Real | psat_der | Saturation pressure [Pa/s] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.sublimationPressureIceSaturation curve valid for 223.16 <= T <= 273.16. Outside of these limits a (less accurate) result is returned
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | Tsat | Sublimation temperature [K] |
| Type | Name | Description |
|---|---|---|
| AbsolutePressure | psat | Sublimation pressure [Pa] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.saturationPressureSaturation curve valid for 223.16 <= T <= 373.16 (and slightly outside with less accuracy)
Extends from (Return saturation pressure of condensing fluid).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | Tsat | Saturation temperature [K] |
| Type | Name | Description |
|---|---|---|
| AbsolutePressure | psat | Saturation pressure [Pa] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.pressureGas pressure
Extends from Buildings.Obsolete.Media.PerfectGases.MoistAir.pressure (Gas pressure).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| AbsolutePressure | p | Pressure [Pa] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.temperatureGas temperature
Extends from Buildings.Obsolete.Media.PerfectGases.MoistAir.temperature (Gas temperature).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| Temperature | T | Temperature [K] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.densityGas density
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state |
| Type | Name | Description |
|---|---|---|
| Density | d | Density [kg/m3] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificEntropySpecific entropy (liquid part neglected, mixing entropy included)
Extends from Buildings.Obsolete.Media.PerfectGases.MoistAir.specificEntropy (Specific entropy (liquid part neglected, mixing entropy included)).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificEntropy | s | Specific entropy [J/(kg.K)] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.enthalpyOfVaporizationEnthalpy of vaporization of water
Extends from (Return vaporization enthalpy of condensing fluid).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | Temperature [K] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | r0 | Vaporization enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.HeatCapacityOfWaterSpecific heat capacity of water (liquid only) which is constant
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | [K] |
| Type | Name | Description |
|---|---|---|
| SpecificHeatCapacity | cp_fl | [J/(kg.K)] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.enthalpyOfLiquidEnthalpy of liquid (per unit mass of liquid) which is linear in the temperature
Extends from (Return liquid enthalpy of condensing fluid).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | Temperature [K] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | Liquid enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.der_enthalpyOfLiquidTemperature derivative of enthalpy of liquid per unit mass of liquid
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] | |
| Real | der_T | temperature derivative |
| Type | Name | Description |
|---|---|---|
| Real | der_h | derivative of liquid enthalpy |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.enthalpyOfCondensingGasEnthalpy of steam per unit mass of steam
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | steam enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.der_enthalpyOfCondensingGasDerivative of enthalpy of steam per unit mass of steam
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] | |
| Real | der_T | temperature derivative |
| Type | Name | Description |
|---|---|---|
| Real | der_h | derivative of steam enthalpy |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.enthalpyOfGasEnthalpy of gas mixture per unit mass of gas mixture
Extends from (Return enthalpy of non-condensing gas mixture).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | Temperature [K] | |
| MassFraction | X[:] | Vector of mass fractions [kg/kg] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | Specific enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.enthalpyOfDryAirEnthalpy of dry air per unit mass of dry air
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | dry air enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.der_enthalpyOfDryAirDerivative of enthalpy of dry air per unit mass of dry air
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] | |
| Real | der_T | temperature derivative |
| Type | Name | Description |
|---|---|---|
| Real | der_h | derivative of dry air enthalpy |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificHeatCapacityCpSpecific heat capacity of gas mixture at constant pressure
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificHeatCapacity | cp | Specific heat capacity at constant pressure [J/(kg.K)] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificHeatCapacityCvSpecific heat capacity of gas mixture at constant volume
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificHeatCapacity | cv | Specific heat capacity at constant volume [J/(kg.K)] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.dynamicViscositydynamic viscosity of dry air
Extends from (Return dynamic viscosity).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| DynamicViscosity | eta | Dynamic viscosity [Pa.s] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.thermalConductivityThermal conductivity of dry air as a polynomial in the temperature
Extends from (Return thermal conductivity).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| ThermalConductivity | lambda | Thermal conductivity [W/(m.K)] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificEnthalpySpecific enthalpy
Extends from (Return specific enthalpy).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | Specific enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificInternalEnergySpecific internal energy
Extends from Modelica.Icons.Function (Icon for functions), (Return specific internal energy).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificEnergy | u | Specific internal energy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificGibbsEnergySpecific Gibbs energy
Extends from Modelica.Icons.Function (Icon for functions), (Return specific Gibbs energy).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificEnergy | g | Specific Gibbs energy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.specificHelmholtzEnergySpecific Helmholtz energy
Extends from Modelica.Icons.Function (Icon for functions), (Return specific Helmholtz energy).
| Type | Name | Default | Description |
|---|---|---|---|
| ThermodynamicState | state | Thermodynamic state record |
| Type | Name | Description |
|---|---|---|
| SpecificEnergy | f | Specific Helmholtz energy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.h_pTXCompute specific enthalpy from pressure, temperature and mass fraction
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Pressure | p | Pressure [Pa] | |
| Temperature | T | Temperature [K] | |
| MassFraction | X[nX] | Mass fractions of moist air [1] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | Specific enthalpy at p, T, X [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.T_phXCompute temperature from specific enthalpy and mass fraction
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| AbsolutePressure | p | Pressure [Pa] | |
| SpecificEnthalpy | h | specific enthalpy [J/kg] | |
| MassFraction | X[:] | mass fractions of composition [kg/kg] |
| Type | Name | Description |
|---|---|---|
| Temperature | T | temperature [K] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.enthalpyOfNonCondensingGasEnthalpy of non-condensing gas per unit mass
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] |
| Type | Name | Description |
|---|---|---|
| SpecificEnthalpy | h | enthalpy [J/kg] |
Buildings.Obsolete.Media.GasesConstantDensity.MoistAirUnsaturated.der_enthalpyOfNonCondensingGasDerivative of enthalpy of non-condensing gas per unit mass
Extends from Modelica.Icons.Function (Icon for functions).
| Type | Name | Default | Description |
|---|---|---|---|
| Temperature | T | temperature [K] | |
| Real | der_T | temperature derivative |
| Type | Name | Description |
|---|---|---|
| Real | der_h | derivative of steam enthalpy |