Base class for liquid, linear compressibility water models
Extends from Media.Interfaces.PartialLinearFluid (Generic pure liquid model with constant cp, compressibility and thermal expansion coefficients).
| Name | Description |
|---|---|
| state=Modelica.Media.Water.StandardWater.setState_pT(reference_p, reference_T) | |
| Inherited | |
| cp_const=Modelica.Media.Water.StandardWater.specificHeatCapacityCp(state) | Specific heat capacity at constant pressure |
| beta_const=Modelica.Media.Water.StandardWater.isobaricExpansionCoefficient(state) | Thermal expansion coefficient at constant pressure |
| kappa_const=Modelica.Media.Water.StandardWater.isothermalCompressibility(state) | Isothermal compressibility |
| MM_const=Modelica.Media.Water.StandardWater.molarMass(state) | Molar mass |
| reference_d=Modelica.Media.Water.StandardWater.density(state) | Density in reference conditions |
| reference_h=Modelica.Media.Water.StandardWater.specificEnthalpy(state) | Specific enthalpy in reference conditions |
| reference_s=Modelica.Media.Water.StandardWater.specificEntropy(state) | Specific entropy in reference conditions |
| constantJacobian=true | If true, entries in thermodynamic Jacobian are constant, taken at reference conditions |
| A selection of variables that uniquely defines the thermodynamic state | |
| Base properties of medium | |
| Set the thermodynamic state record from p and T (X not needed) | |
| Set the thermodynamic state record from p and h (X not needed) | |
| Set the thermodynamic state record from p and s (X not needed) | |
| Set the thermodynamic state record from d and T (X not needed) | |
| Return thermodynamic state so that it smoothly approximates: if x > 0 then state_a else state_b | |
| Return the pressure from the thermodynamic state | |
| Return the temperature from the thermodynamic state | |
| Return the density from the thermodynamic state | |
| Return the specific enthalpy from the thermodynamic state | |
| Return the specific entropy from the thermodynamic state | |
| Return the specific internal energy from the thermodynamic state | |
| Return specific Gibbs energy from the thermodynamic state | |
| Return specific Helmholtz energy from the thermodynamic state | |
| Return velocity of sound from the thermodynamic state | |
| Return isentropic exponent from the thermodynamic state | |
| Return isentropic enthalpy | |
| Return specific heat capacity at constant volume | |
| Return specific heat capacity at constant volume from the thermodynamic state | |
| Return the isothermal compressibility kappa | |
| Return the isobaric expansion coefficient | |
| 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 | |
| Returns the partial derivative of density with respect to mass fractions at constant pressure and temperature | |
| Return molar mass | |
| Return temperature from pressure and specific enthalpy | |
| Return temperature from pressure and specific entropy | |
| Return thermodynamic state from p and T | |
| Return thermodynamic state from p and h | |
| Return thermodynamic state from p and s | |
| Return thermodynamic state from d and T | |
| Return density from p and h | |
| Return temperature from p and h | |
| Return pressure from d and T | |
| Return specific enthalpy from d and T | |
| Return specific enthalpy from p and s | |
| Return temperature from p and s | |
| Return density from p and s | |
| Return specific enthalpy from p and T | |
| Return density from p and T | |
| ThermoStates=Modelica.Media.Interfaces.Choices.IndependentVariables.pTX | 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=false | = 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=true | = 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) |
| C_default=fill(0, nC) | Default value for trace substances 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 dynamic viscosity | |
| Return thermal conductivity | |
| Return the Prandtl number | |
| Alias for deprecated name | |
| Alias for deprecated name | |
| Alias for isobaricExpansionCoefficient for user convenience | |
| Alias of isothermalCompressibility for user convenience | |
| 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 | |
| Type for mass flow rate with medium specific attributes | |
| Type for absolute pressure with medium specific attributes | |
| Type for density with medium specific attributes | |
| Type for dynamic viscosity with medium specific attributes | |
| Type for enthalpy flow rate with medium specific attributes | |
| Type for mass fraction with medium specific attributes | |
| Type for mole fraction with medium specific attributes | |
| Type for molar mass with medium specific attributes | |
| Type for molar volume with medium specific attributes | |
| Type for isentropic exponent with medium specific attributes | |
| Type for specific energy with medium specific attributes | |
| Type for specific internal energy with medium specific attributes | |
| Type for specific enthalpy with medium specific attributes | |
| Type for specific entropy with medium specific attributes | |
| Type for specific heat capacity with medium specific attributes | |
| Type for surface tension with medium specific attributes | |
| Type for temperature with medium specific attributes | |
| Type for thermal conductivity with medium specific attributes | |
| Type for Prandtl number with medium specific attributes | |
| Type for velocity of sound with medium specific attributes | |
| Type for unspecified, mass-specific property transported by flow | |
| Type for conserved integral of unspecified, mass specific property | |
| Type for flow rate of unspecified, mass-specific property | |
| Type for isobaric expansion coefficient with medium specific attributes | |
| Type for dipole moment with medium specific attributes | |
| Type for partial derivative of density with respect to pressure with medium specific attributes | |
| Type for partial derivative of density with respect to enthalpy with medium specific attributes | |
| Type for partial derivative of enthalpy with respect to pressure with medium specific attributes | |
| Type for partial derivative of density with respect to temperature with medium specific attributes | |
| 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 | |
| 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 | |