52 return Ha(p, T) -
Hf();
94 return kappa_.
value(T);
100 return kappag_.
value(T);
106 return sigma_.
value(T);
scalar Ha(scalar p, scalar T) const
Liquid absolute enthalpy [J/kg].
scalar mug(scalar p, scalar T) const
Vapour viscosity [Pa s].
scalar Cp(scalar p, scalar T) const
Liquid heat capacity [J/kg/K].
scalar B(scalar p, scalar T) const
Second Virial Coefficient [m^3/kg].
virtual scalar value(scalar T) const
Evaluate the function and return the result.
scalar kappag(scalar p, scalar T) const
Vapour thermal conductivity [W/m/K].
virtual scalar value(scalar T) const
Evaluate the function and return the result.
scalar sigma(scalar p, scalar T) const
Surface tension [N/m].
virtual scalar value(scalar T) const
Evaluate the function and return the result.
scalar hl(scalar p, scalar T) const
Heat of vapourisation [J/kg].
scalar Hf() const
Liquid heat of formation [J/kg].
scalar mu(scalar p, scalar T) const
Liquid viscosity [Pa s].
virtual scalar value(scalar T) const
Evaluate the function and return the result.
virtual scalar value(scalar T) const
Evaluate the function and return the result.
scalar D(scalar p, scalar T) const
Vapour diffusivity [m^2/s].
scalar kappa(scalar p, scalar T) const
Liquid thermal conductivity [W/m/K].
void T(FieldField< Field, Type > &f1, const FieldField< Field, Type > &f2)
scalar pv(scalar p, scalar T) const
Vapour pressure [Pa].
virtual scalar value(scalar T) const
Evaluate the function and return the result.
scalar Hs(scalar p, scalar T) const
Liquid sensible enthalpy [J/kg].
scalar value(scalar T) const
Evaluate the function and return the result.
scalar rho(scalar p, scalar T) const
Liquid density [kg/m^3].
scalar Cpg(scalar p, scalar T) const
Ideal gas heat capacity [J/kg/K].