Henry.H
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23 
24 Class
25  Foam::interfaceCompositionModels::Henry
26 
27 Description
28  Henry's law for gas solubility in liquid. The concentration of a dissolved
29  species in the liquid is proportional to its partial pressure in the gas. A
30  dimensionless solubility, \f$k\f$, is given for each species. This is the
31  ratio of the concentration of the species in the liquid to the
32  corresponding concentration in the gas; i.e., \f$k =
33  c_{i,liq}/c_{i,gas}\f$. Mixing in the gas is assumed to be ideal.
34 
35 SourceFiles
36  Henry.C
37 
38 \*---------------------------------------------------------------------------*/
39 
40 #ifndef Henry_H
41 #define Henry_H
42 
44 
45 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
46 
47 namespace Foam
48 {
49 namespace interfaceCompositionModels
50 {
51 
52 /*---------------------------------------------------------------------------*\
53  Class Henry Declaration
54 \*---------------------------------------------------------------------------*/
55 
56 class Henry
57 :
59 {
60  // Private Data
61 
62  //- Dimensionless solubility coefficients
63  const scalarList k_;
64 
65  //- The remaining solvent species fraction
66  volScalarField YSolvent_;
67 
68 
69 public:
70 
71  //- Runtime type information
72  TypeName("Henry");
73 
74 
75  // Constructors
76 
77  //- Construct from a dictionary and an interface
78  Henry
79  (
80  const dictionary& dict,
82  );
83 
84 
85  //- Destructor
86  virtual ~Henry();
87 
88 
89  // Member Functions
90 
91  //- Update the composition
92  virtual void update(const volScalarField& Tf);
93 
94  //- The interface species fraction
95  virtual tmp<volScalarField> Yf
96  (
97  const word& speciesName,
98  const volScalarField& Tf
99  ) const;
100 
101  //- The interface species fraction derivative w.r.t. temperature
103  (
104  const word& speciesName,
105  const volScalarField& Tf
106  ) const;
107 };
108 
109 
110 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
111 
112 } // End namespace interfaceCompositionModels
113 } // End namespace Foam
114 
115 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
116 
117 #endif
118 
119 // ************************************************************************* //
Generic GeometricField class.
A list of keyword definitions, which are a keyword followed by any number of values (e....
Definition: dictionary.H:160
Generic base class for interface composition models. These models describe the composition in phase 1...
const sidedPhaseInterface & interface() const
Return the interface.
Henry's law for gas solubility in liquid. The concentration of a dissolved species in the liquid is p...
Definition: Henry.H:58
Henry(const dictionary &dict, const phaseInterface &interface)
Construct from a dictionary and an interface.
Definition: Henry.C:44
virtual ~Henry()
Destructor.
Definition: Henry.C:74
virtual void update(const volScalarField &Tf)
Update the composition.
Definition: Henry.C:80
TypeName("Henry")
Runtime type information.
virtual tmp< volScalarField > Yf(const word &speciesName, const volScalarField &Tf) const
The interface species fraction.
Definition: Henry.C:92
virtual tmp< volScalarField > YfPrime(const word &speciesName, const volScalarField &Tf) const
The interface species fraction derivative w.r.t. temperature.
Definition: Henry.C:114
Class to represent an interface between phases. Derivations can further specify the configuration of ...
A class for managing temporary objects.
Definition: tmp.H:55
A class for handling words, derived from string.
Definition: word.H:62
Namespace for OpenFOAM.
dictionary dict