URhoFluidMulticomponentThermo.H
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23 
24 Class
25  Foam::URhoFluidMulticomponentThermo
26 
27 Description
28  Thermo implementation based on compressibility with additional unburnt
29  thermodynamic state
30 
31 SourceFiles
32  URhoFluidMulticomponentThermo.C
33 
34 \*---------------------------------------------------------------------------*/
35 
36 #ifndef URhoFluidMulticomponentThermo_H
37 #define URhoFluidMulticomponentThermo_H
38 
39 #include "RhoFluidThermo.H"
40 
41 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
42 
43 namespace Foam
44 {
45 
46 /*---------------------------------------------------------------------------*\
47  Class URhoFluidMulticomponentThermo Declaration
48 \*---------------------------------------------------------------------------*/
49 
50 template<class BaseThermo>
52 :
53  public RhoFluidThermo<BaseThermo>
54 {
55 
56 public:
57 
58  // Constructors
59 
60  //- Construct from mesh and phase name
61  URhoFluidMulticomponentThermo(const fvMesh&, const word& phaseName);
62 
63  //- Disallow default bitwise copy construction
65  (
67  ) = delete;
68 
69 
70  //- Destructor
72 
73 
74  // Member Functions
75 
76  //- Return the fuel-oxidant equivalence ratio
77  virtual tmp<volScalarField> Phi() const;
78 
79  //- Reset the mixture to an unburnt state and update EGR
80  virtual void reset
81  (
84  const volScalarField& heb
85  );
86 
87  //- Standard enthalpy of formation [J/kg]
88  virtual tmp<volScalarField> hf() const;
89 
90 
91  // Member Operators
92 
93  //- Disallow default bitwise assignment
94  void operator=
95  (
97  ) = delete;
98 };
99 
100 
101 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
102 
103 } // End namespace Foam
104 
105 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
106 
107 #ifdef NoRepository
109 #endif
110 
111 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
112 
113 #endif
114 
115 // ************************************************************************* //
Generic GeometricField class.
Thermo implementation based on density.
Thermo implementation based on compressibility with additional unburnt thermodynamic state.
URhoFluidMulticomponentThermo(const fvMesh &, const word &phaseName)
Construct from mesh and phase name.
virtual tmp< volScalarField > Phi() const
Return the fuel-oxidant equivalence ratio.
virtual tmp< volScalarField > hf() const
Standard enthalpy of formation [J/kg].
virtual void reset(volScalarField &b, volScalarField &c, const volScalarField &heb)
Reset the mixture to an unburnt state and update EGR.
Mesh data needed to do the Finite Volume discretisation.
Definition: fvMesh.H:98
A class for managing temporary objects.
Definition: tmp.H:55
A class for handling words, derived from string.
Definition: word.H:63
volScalarField & b
Definition: createFields.H:27
const dimensionedScalar c
Speed of light in a vacuum.
Namespace for OpenFOAM.