thermodynamicConstants.C
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27 
28 #include "thermodynamicConstants.H"
30 
31 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
32 
33 namespace Foam
34 {
35 namespace constant
36 {
37 namespace thermodynamic
38 {
39 
40 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
41 
42  // Note: the 1e3 converts from /mol to /kmol for consistency with the
43  // SI choice of kg rather than g for mass.
44  // This is not appropriate for USCS and will be changed to an entry in
45  // the DimensionedConstants dictionary in etc/controlDict
46  const scalar RR = 1e3*physicoChemical::R.value();
47 
48  const scalar Pstd = standard::Pstd.value();
49  const scalar Tstd = standard::Tstd.value();
50 
51 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
52 
53 } // End namespace thermodynamic
54 } // End namespace constant
55 } // End namespace Foam
56 
57 // ************************************************************************* //
Foam::constant::thermodynamic::Tstd
const scalar Tstd
Standard temperature: default in [K].
Definition: thermodynamicConstants.C:49
Foam::constant::thermodynamic::RR
const scalar RR
Universal gas constant: default in [J/(kmol K)].
Definition: thermodynamicConstants.C:46
Foam::constant::standard::Pstd
const dimensionedScalar Pstd
Standard pressure.
Definition: thermodynamicConstants.C:48
Foam::dimensioned::value
const Type & value() const
Return const reference to value.
Definition: dimensionedType.C:364
Foam::constant::standard::Tstd
const dimensionedScalar Tstd
Standard temperature.
Definition: thermodynamicConstants.C:49
Foam::constant::physicoChemical::R
const dimensionedScalar R
Universal gas constant: default SI units: [J/mol/K].
Definition: evaluateNearWall.H:6
Foam::constant::thermodynamic::Pstd
const scalar Pstd
Standard pressure: default in [Pa].
Definition: thermodynamicConstants.C:48
Foam
Namespace for OpenFOAM.
Definition: atmBoundaryLayer.C:32
thermodynamicConstants.H
physicoChemicalConstants.H
constant
constant condensation/saturation model.