Wrapper class providing run-time selection of thermophysicalProperties for the templated thermodynamics packages. More...
Public Member Functions | |
| thermophysicalPropertiesSelector (const word &name) | |
| Construct from name. More... | |
| thermophysicalPropertiesSelector (const dictionary &dict) | |
| Construct from dictionary. More... | |
| const ThermophysicalProperties & | properties () const |
| Return reference to the selected physical properties class. More... | |
| scalar | W () const |
| Molecular weight [kg/kmol]. More... | |
| scalar | limit (const scalar T) const |
| Limit the temperature to be in the range Tlow_ to Thigh_. More... | |
| scalar | rho (scalar p, scalar T) const |
| Liquid density [kg/m^3]. More... | |
| scalar | psi (scalar p, scalar T) const |
| Liquid compressibility rho/p [s^2/m^2]. More... | |
| scalar | CpMCv (scalar p, scalar T) const |
| Return (Cp - Cv) [J/(kg K]. More... | |
| scalar | Cp (const scalar p, const scalar T) const |
| Heat capacity at constant pressure [J/(kg K)]. More... | |
| scalar | Ha (const scalar p, const scalar T) const |
| Absolute Enthalpy [J/kg]. More... | |
| scalar | Hs (const scalar p, const scalar T) const |
| Sensible enthalpy [J/kg]. More... | |
| scalar | Hc () const |
| Chemical enthalpy [J/kg]. More... | |
| scalar | S (const scalar p, const scalar T) const |
| scalar | mu (scalar p, scalar T) const |
| Liquid viscosity [Pa s]. More... | |
| scalar | kappa (scalar p, scalar T) const |
| Liquid thermal conductivity [W/(m K)]. More... | |
| scalar | alphah (const scalar p, const scalar T) const |
| Liquid thermal diffusivity of enthalpy [kg/ms]. More... | |
Static Public Attributes | |
| static const bool | incompressible |
| Is the equation of state is incompressible i.e. rho != f(p) More... | |
| static const bool | isochoric |
| Is the equation of state is isochoric i.e. rho = const. More... | |
Wrapper class providing run-time selection of thermophysicalProperties for the templated thermodynamics packages.
Definition at line 51 of file thermophysicalPropertiesSelector.H.
| thermophysicalPropertiesSelector | ( | const word & | name | ) |
Construct from name.
Definition at line 33 of file thermophysicalPropertiesSelector.C.
| thermophysicalPropertiesSelector | ( | const dictionary & | dict | ) |
Construct from dictionary.
Definition at line 44 of file thermophysicalPropertiesSelector.C.
References UILList< LListBase, T >::first(), dictionary::isDict(), Foam::name(), Foam::New(), and dictionary::subDict().

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Return reference to the selected physical properties class.
Definition at line 31 of file thermophysicalPropertiesSelectorI.H.
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Molecular weight [kg/kmol].
Definition at line 38 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::limit().

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Limit the temperature to be in the range Tlow_ to Thigh_.
Definition at line 47 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::rho().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::W().


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Liquid density [kg/m^3].
Definition at line 58 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::psi().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::limit().


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Liquid compressibility rho/p [s^2/m^2].
Note: currently it is assumed the liquid is incompressible
Definition at line 70 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::CpMCv().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::rho().


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Return (Cp - Cv) [J/(kg K].
Note: currently it is assumed the liquid is incompressible so CpMCv 0
Definition at line 82 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::Cp().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::psi().


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Heat capacity at constant pressure [J/(kg K)].
Definition at line 94 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::Ha().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::CpMCv().


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Absolute Enthalpy [J/kg].
Definition at line 106 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::Hs().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::Cp().


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Sensible enthalpy [J/kg].
Definition at line 118 of file thermophysicalPropertiesSelectorI.H.
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::Ha().

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Chemical enthalpy [J/kg].
Definition at line 129 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::S().

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Definition at line 138 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::mu().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::Hc().


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Liquid viscosity [Pa s].
Definition at line 150 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::kappa().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::S().


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Liquid thermal conductivity [W/(m K)].
Definition at line 162 of file thermophysicalPropertiesSelectorI.H.
References thermophysicalPropertiesSelector< ThermophysicalProperties >::alphah().
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::mu().


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Liquid thermal diffusivity of enthalpy [kg/ms].
Definition at line 174 of file thermophysicalPropertiesSelectorI.H.
Referenced by thermophysicalPropertiesSelector< ThermophysicalProperties >::kappa().

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Is the equation of state is incompressible i.e. rho != f(p)
Definition at line 72 of file thermophysicalPropertiesSelector.H.
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Is the equation of state is isochoric i.e. rho = const.
Definition at line 76 of file thermophysicalPropertiesSelector.H.
1.8.13