heatTransferModel.H
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26
27Class
28 Foam::multiphaseEuler::heatTransferModel
29
30Description
31
32SourceFiles
33 heatTransferModel.C
34 newHeatTransferModel.C
35
36\*---------------------------------------------------------------------------*/
37
38#ifndef Foam_multiphaseEuler_heatTransferModel_H
39#define Foam_multiphaseEuler_heatTransferModel_H
40
41// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
42
43#include "dictionary.H"
44#include "phaseModel.H"
46
47namespace Foam
48{
49namespace multiphaseEuler
50{
51
52/*---------------------------------------------------------------------------*\
53 Class heatTransferModel Declaration
54\*---------------------------------------------------------------------------*/
57{
58protected:
59
60 // Protected Data
65 const phaseModel& phase2_;
66
67
68public:
69
70 //- Runtime type information
71 TypeName("heatTransferModel");
72
73
74 // Declare runtime construction
77 (
78 autoPtr,
81 (
82 const dictionary& dict,
84 const phaseModel& phase1,
85 const phaseModel& phase2
86 ),
88 );
89
90
91 // Constructors
92
94 (
95 const dictionary& dict,
97 const phaseModel& phase1,
98 const phaseModel& phase2
99 );
100
101
102 //- Destructor
103 virtual ~heatTransferModel() = default;
104
105
106 // Selectors
107
109 (
110 const dictionary& dict,
111 const volScalarField& alpha1,
112 const phaseModel& phase1,
113 const phaseModel& phase2
114 );
115
116
117 // Member Functions
118
119 //- The heat-transfer function K used in the enthalpy eq.
120 // ddt(alpha1*rho1*ha) + ... = ... alpha1*alpha2*K*(Ta - Tb)
121 // ddt(alpha2*rho2*hb) + ... = ... alpha1*alpha2*K*(Tb - Ta)
122 // ********************************** NB! *****************************
123 // for numerical reasons alpha1 and alpha2 has been
124 // extracted from the heat-transfer function K,
125 // so you MUST divide K by alpha1*alpha2 when implementing the
126 // heat-transfer function
127 // ********************************** NB! *****************************
128 virtual tmp<volScalarField> K(const volScalarField& Ur) const = 0;
129};
130
131
132// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
133
134} // End namespace multiphaseEuler
135} // End namespace Foam
136
137// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
138
139#endif
140
141// ************************************************************************* //
CGAL::Exact_predicates_exact_constructions_kernel K
const volScalarField & alpha1
phaseModel & phase1
phaseModel & phase2
Pointer management similar to std::unique_ptr, with some additional methods and type checking.
Definition: autoPtr.H:66
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
declareRunTimeSelectionTable(autoPtr, heatTransferModel, dictionary,(const dictionary &dict, const volScalarField &alpha1, const phaseModel &phase1, const phaseModel &phase2),(dict, alpha1, phase1, phase2))
virtual ~heatTransferModel()=default
Destructor.
TypeName("heatTransferModel")
Runtime type information.
static autoPtr< heatTransferModel > New(const dictionary &dict, const volScalarField &alpha1, const phaseModel &phase1, const phaseModel &phase2)
Single incompressible phase derived from the phase-fraction. Used as part of the multiPhaseMixture fo...
Definition: phaseModel.H:61
A class for managing temporary objects.
Definition: tmp.H:65
Namespace for OpenFOAM.
Macros to ease declaration of run-time selection tables.
#define declareRunTimeSelectionTable(ptrWrapper, baseType, argNames, argList, parList)
Declare a run-time selection (variables and adder classes)
dictionary dict
#define TypeName(TypeNameString)
Declare a ClassName() with extra virtual type info.
Definition: typeInfo.H:73