FreeFOAM The Cross-Platform CFD Toolkit
hhuMixtureThermo.H
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23 
24 Class
25  Foam::hhuMixtureThermo
26 
27 Description
28  Foam::hhuMixtureThermo
29 
30 SourceFiles
31  hhuMixtureThermo.C
32 
33 \*---------------------------------------------------------------------------*/
34 
35 #ifndef hhuMixtureThermo_H
36 #define hhuMixtureThermo_H
37 
38 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
39 
40 namespace Foam
41 {
42 
43 /*---------------------------------------------------------------------------*\
44  Class hhuMixtureThermo Declaration
45 \*---------------------------------------------------------------------------*/
46 
47 template<class MixtureType>
49 :
50  public hhuCombustionThermo,
51  public MixtureType
52 {
53  // Private member functions
54 
55  void calculate();
56 
57  //- Construct as copy (not implemented)
59 
60 
61 public:
62 
63  //- Runtime type information
64  TypeName("hhuMixtureThermo");
65 
66 
67  // Constructors
68 
69  //- Construct from mesh
70  hhuMixtureThermo(const fvMesh&);
71 
72 
73  //- Destructor
74  virtual ~hhuMixtureThermo();
75 
76 
77  // Member functions
78 
79  //- Return the compostion of the multi-component mixture
81  {
82  return *this;
83  }
84 
85  //- Return the compostion of the multi-component mixture
86  virtual const basicMultiComponentMixture& composition() const
87  {
88  return *this;
89  }
90 
91  //- Update properties
92  virtual void correct();
93 
94  //- Chemical enthalpy [J/kg]
95  virtual tmp<volScalarField> hc() const;
96 
97 
98  // Fields derived from thermodynamic state variables
99 
100  //- Enthalpy for cell-set [J/kg]
101  virtual tmp<scalarField> h
102  (
103  const scalarField& T,
104  const labelList& cells
105  ) const;
106 
107  //- Enthalpy for patch [J/kg]
108  virtual tmp<scalarField> h
109  (
110  const scalarField& T,
111  const label patchi
112  ) const;
113 
114  //- Heat capacity at constant pressure for patch [J/kg/K]
115  virtual tmp<scalarField> Cp
116  (
117  const scalarField& T,
118  const label patchi
119  ) const;
120 
121  //- Heat capacity at constant pressure [J/kg/K]
122  virtual tmp<volScalarField> Cp() const;
123 
124  //- Unburnt gas enthalpy for cell-set [J/kg]
125  virtual tmp<scalarField> hu
126  (
127  const scalarField& T,
128  const labelList& cells
129  ) const;
130 
131  //- Unburnt gas enthalpy for patch [J/kg]
132  virtual tmp<scalarField> hu
133  (
134  const scalarField& T,
135  const label patchi
136  ) const;
137 
138 
139  //- Burnt gas temperature [K]
140  virtual tmp<volScalarField> Tb() const;
141 
142  //- Unburnt gas compressibility [s^2/m^2]
143  virtual tmp<volScalarField> psiu() const;
144 
145  //- Burnt gas compressibility [s^2/m^2]
146  virtual tmp<volScalarField> psib() const;
147 
148 
149  // Access to transport variables
150 
151  //- Dynamic viscosity of unburnt gas [kg/ms]
152  virtual tmp<volScalarField> muu() const;
153 
154  //- Dynamic viscosity of burnt gas [kg/ms]
155  virtual tmp<volScalarField> mub() const;
156 
157 
158  //- Read thermophysicalProperties dictionary
159  virtual bool read();
160 };
161 
162 
163 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
164 
165 } // End namespace Foam
166 
167 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
168 
169 #ifdef NoRepository
170 # include "hhuMixtureThermo.C"
171 #endif
172 
173 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
174 
175 #endif
176 
177 // ************************ vim: set sw=4 sts=4 et: ************************ //