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Opm::Mesitylene< Scalar > Class Template Reference Component for Mesitylene. More...
Inheritance diagram for Opm::Mesitylene< Scalar >:
Detailed Descriptiontemplate<class Scalar> class Opm::Mesitylene< Scalar > Component for Mesitylene.
Member Typedef Documentation◆ Scalar
Member Function Documentation◆ acentricFactor()
Returns the acentric factor of the component. ◆ boilingTemperature()
template<class Scalar >
Returns the temperature at mesitylene's boiling point (1 atm). Referenced by Opm::Mesitylene< Scalar >::heatVap(). ◆ criticalPressure()
template<class Scalar >
Returns the critical pressure of mesitylene. Referenced by Opm::Mesitylene< Scalar >::heatVap(), and Opm::Mesitylene< Scalar >::molarLiquidDensity_(). ◆ criticalTemperature()
template<class Scalar >
Returns the critical temperature of mesitylene. Referenced by Opm::Mesitylene< Scalar >::gasViscosity(), Opm::Mesitylene< Scalar >::heatVap(), and Opm::Mesitylene< Scalar >::molarLiquidDensity_(). ◆ criticalVolume()
Returns the critical volume in of the component. ◆ gasDensity()
template<class Scalar >
template<class Evaluation >
The density of pure mesitylene vapor at a given pressure and temperature .
References Opm::IdealGas< Scalar >::density(), and Opm::Mesitylene< Scalar >::molarMass(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::density(). ◆ gasEnthalpy()
template<class Scalar >
template<class Evaluation >
Specific enthalpy of mesitylene vapor . This relation is true on the vapor pressure curve, i.e. as long as there is a liquid phase present.
References Opm::Mesitylene< Scalar >::heatVap(), and Opm::Mesitylene< Scalar >::liquidEnthalpy(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::enthalpy(). ◆ gasHeatCapacity()
Specific isobaric heat capacity of the component [J/kg] as a gas. ◆ gasInternalEnergy()
Specific internal energy of the pure component in gas.
◆ gasIsCompressible()
template<class Scalar >
Returns true iff the gas phase is assumed to be compressible. ◆ gasIsIdeal()
template<class Scalar >
Returns true iff the gas phase is assumed to be ideal. Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::isIdealGas(). ◆ gasThermalConductivity()
Thermal conductivity of the component [W/(m^2 K/m)] as a gas. ◆ gasViscosity() [1/2]
The dynamic viscosity of the pure component at a given pressure in and temperature in .
◆ gasViscosity() [2/2]
template<class Scalar >
template<class Evaluation >
The dynamic viscosity of mesitylene vapor.
References Opm::Mesitylene< Scalar >::criticalTemperature(), Opm::exp(), Opm::max(), Opm::min(), and Opm::pow(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::viscosity(). ◆ heatVap()
template<class Scalar >
template<class Evaluation >
Latent heat of vaporization for mesitylene . source : Reid et al. (fourth edition): Chen method (chap. 7-11, Delta H_v = Delta H_v (T) according to chap. 7-12)
References Opm::Mesitylene< Scalar >::boilingTemperature(), Opm::Mesitylene< Scalar >::criticalPressure(), Opm::Mesitylene< Scalar >::criticalTemperature(), Opm::log(), Opm::max(), Opm::min(), Opm::Mesitylene< Scalar >::molarMass(), Opm::pow(), and Opm::Constants< Scalar >::R. Referenced by Opm::Mesitylene< Scalar >::gasEnthalpy(). ◆ init()
A default routine for initialization, not needed for components and must not be called.
This function throws a warning when called: "No init routine defined - make sure that this is not necessary!" ◆ liquidDensity()
template<class Scalar >
template<class Evaluation >
The density of pure mesitylene at a given pressure and temperature .
References Opm::Mesitylene< Scalar >::molarLiquidDensity_(), and Opm::Mesitylene< Scalar >::molarMass(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::density(). ◆ liquidEnthalpy()
template<class Scalar >
template<class Evaluation >
Specific enthalpy of liquid mesitylene .
References Opm::Mesitylene< Scalar >::liquidHeatCapacity(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::enthalpy(), and Opm::Mesitylene< Scalar >::gasEnthalpy(). ◆ liquidHeatCapacity()
template<class Scalar >
template<class Evaluation >
Specific heat cap of liquid mesitylene . source : Reid et al. (fourth edition): Missenard group contrib. method (chap 5-7, Table 5-11, s. example 5-8)
References Opm::Mesitylene< Scalar >::molarMass(). Referenced by Opm::Mesitylene< Scalar >::liquidEnthalpy(). ◆ liquidInternalEnergy()
Specific internal energy of pure the pure component in liquid.
◆ liquidIsCompressible()
template<class Scalar >
Returns true iff the liquid phase is assumed to be compressible. Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::density(), and Opm::H2OAirMesityleneFluidSystem< Scalar >::isCompressible(). ◆ liquidThermalConductivity()
Thermal conductivity of the component [W/(m^2 K/m)] as a liquid. ◆ liquidViscosity() [1/2]
The dynamic liquid viscosity of the pure component.
◆ liquidViscosity() [2/2]
template<class Scalar >
template<class Evaluation >
The dynamic viscosity of pure mesitylene.
References Opm::exp(), Opm::max(), and Opm::min(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::viscosity(). ◆ molarLiquidDensity_()
template<class Scalar >
template<class Evaluation >
The molar density of pure mesitylene at a given pressure and temperature . source : Reid et al. (fourth edition): Modified Racket technique (chap. 3-11, eq. 3-11.9)
References Opm::Mesitylene< Scalar >::criticalPressure(), Opm::Mesitylene< Scalar >::criticalTemperature(), Opm::max(), Opm::min(), Opm::pow(), and Opm::Constants< Scalar >::R. Referenced by Opm::Mesitylene< Scalar >::liquidDensity(). ◆ molarMass()
template<class Scalar >
The molar mass in of mesitylene. Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::density(), Opm::Mesitylene< Scalar >::gasDensity(), Opm::BinaryCoeff::Air_Mesitylene::gasDiffCoeff(), Opm::BinaryCoeff::H2O_Mesitylene::gasDiffCoeff(), Opm::Mesitylene< Scalar >::heatVap(), Opm::Mesitylene< Scalar >::liquidDensity(), Opm::Mesitylene< Scalar >::liquidHeatCapacity(), Opm::H2OAirMesityleneFluidSystem< Scalar >::molarMass(), and Opm::H2OAirMesityleneFluidSystem< Scalar >::viscosity(). ◆ name()
template<class Scalar >
A human readable name for the mesitylene. Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::componentName(). ◆ triplePressure()
template<class Scalar >
Returns the pressure at mesitylene's triple point. ◆ tripleTemperature()
template<class Scalar >
Returns the temperature at mesitylene's triple point. ◆ vaporPressure()
template<class Scalar >
template<class Evaluation >
The saturation vapor pressure in of pure mesitylene at a given temperature according to Antoine after Betz 1997, see Gmehling et al 1980.
References Opm::pow(). Referenced by Opm::H2OAirMesityleneFluidSystem< Scalar >::fugacityCoefficient(), and Opm::H2OAirMesityleneFluidSystem< Scalar >::viscosity(). Member Data Documentation◆ isTabulated
The documentation for this class was generated from the following file: |
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