filmThermoModel.H
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25 
26 Class
27  Foam::regionModels::surfaceFilmModels::filmThermoModel
28 
29 Description
30  Base class for film thermo models
31 
32 SourceFiles
33  filmThermoModel.C
34  filmThermoModelNew.C
35 
36 \*---------------------------------------------------------------------------*/
37 
38 #ifndef filmThermoModel_H
39 #define filmThermoModel_H
40 
41 #include "filmSubModelBase.H"
42 #include "runTimeSelectionTables.H"
43 
44 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
45 
46 namespace Foam
47 {
48 namespace regionModels
49 {
50 namespace surfaceFilmModels
51 {
52 
53 /*---------------------------------------------------------------------------*\
54  Class filmThermoModel Declaration
55 \*---------------------------------------------------------------------------*/
56 
57 class filmThermoModel
58 :
59  public filmSubModelBase
60 {
61 private:
62 
63  // Private Member Functions
64 
65  //- No copy construct
66  filmThermoModel(const filmThermoModel&) = delete;
67 
68  //- No copy assignment
69  void operator=(const filmThermoModel&) = delete;
70 
71 
72 public:
73 
74  //- Runtime type information
75  TypeName("filmThermoModel");
76 
77 
78  // Declare runtime constructor selection table
79 
81  (
82  autoPtr,
84  dictionary,
85  (
87  const dictionary& dict
88  ),
89  (film, dict)
90  );
91 
92  // Constructors
93 
94  //- Construct null
96 
97  //- Construct from type name, dictionary and surface film model
99  (
100  const word& modelType,
102  const dictionary& dict
103  );
104 
105 
106  // Selectors
107 
108  //- Return a reference to the selected phase change model
110  (
112  const dictionary& dict
113  );
114 
115 
116  //- Destructor
117  virtual ~filmThermoModel();
118 
119 
120  // Member Functions
121 
122  //- Return the specie name
123  virtual const word& name() const = 0;
124 
125 
126  // Elemental access
127 
128  //- Return density [kg/m3]
129  virtual scalar rho(const scalar p, const scalar T) const = 0;
130 
131  //- Return dynamic viscosity [Pa.s]
132  virtual scalar mu(const scalar p, const scalar T) const = 0;
133 
134  //- Return surface tension [kg/s2]
135  virtual scalar sigma(const scalar p, const scalar T) const = 0;
136 
137  //- Return specific heat capacity [J/kg/K]
138  virtual scalar Cp(const scalar p, const scalar T) const = 0;
139 
140  //- Return thermal conductivity [W/m/K]
141  virtual scalar kappa(const scalar p, const scalar T) const = 0;
142 
143  //- Return diffusivity [m2/s]
144  virtual scalar D(const scalar p, const scalar T) const = 0;
145 
146  //- Return latent heat [J/kg]
147  virtual scalar hl(const scalar p, const scalar T) const = 0;
148 
149  //- Return vapour pressure [Pa]
150  virtual scalar pv(const scalar p, const scalar T) const = 0;
151 
152  //- Return molecular weight [kg/kmol]
153  virtual scalar W() const = 0;
154 
155  //- Return boiling temperature [K]
156  virtual scalar Tb(const scalar p) const = 0;
157 
158 
159  // Field access
160 
161  //- Return density [kg/m3]
162  virtual tmp<volScalarField> rho() const = 0;
163 
164  //- Return dynamic viscosity [Pa.s]
165  virtual tmp<volScalarField> mu() const = 0;
166 
167  //- Return surface tension [kg/s2]
168  virtual tmp<volScalarField> sigma() const = 0;
169 
170  //- Return specific heat capacity [J/kg/K]
171  virtual tmp<volScalarField> Cp() const = 0;
172 
173  //- Return thermal conductivity [W/m/K]
174  virtual tmp<volScalarField> kappa() const = 0;
175 };
176 
177 
178 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
179 
180 } // End namespace surfaceFilmModels
181 } // End namespace regionModels
182 } // End namespace Foam
183 
184 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
185 
186 #endif
187 
188 // ************************************************************************* //
p
volScalarField & p
Definition: createFieldRefs.H:8
Foam::regionModels::surfaceFilmModels::filmThermoModel::Cp
virtual tmp< volScalarField > Cp() const =0
Return specific heat capacity [J/kg/K].
Foam::word
A class for handling words, derived from Foam::string.
Definition: word.H:65
Foam::regionModels::surfaceFilmModels::filmThermoModel::hl
virtual scalar hl(const scalar p, const scalar T) const =0
Return latent heat [J/kg].
Foam::regionModels::surfaceFilmModels::filmThermoModel::W
virtual scalar W() const =0
Return molecular weight [kg/kmol].
Foam::tmp
A class for managing temporary objects.
Definition: PtrList.H:61
Foam::regionModels::surfaceFilmModels::filmThermoModel::name
virtual const word & name() const =0
Return the specie name.
Foam::regionModels::surfaceFilmModels::filmSubModelBase::film
const surfaceFilmRegionModel & film() const
Return const access to the film surface film model.
Definition: filmSubModelBaseI.H:39
Foam::regionModels::surfaceFilmModels::filmThermoModel::rho
virtual tmp< volScalarField > rho() const =0
Return density [kg/m3].
Foam::regionModels::surfaceFilmModels::filmThermoModel::Tb
virtual scalar Tb(const scalar p) const =0
Return boiling temperature [K].
Foam::regionModels::surfaceFilmModels::filmThermoModel::mu
virtual tmp< volScalarField > mu() const =0
Return dynamic viscosity [Pa.s].
Foam::regionModels::surfaceFilmModels::surfaceFilmRegionModel
Base class for surface film models.
Definition: surfaceFilmRegionModel.H:55
Foam::subModelBase::dict
const dictionary & dict() const
Return const access to the cloud dictionary.
Definition: subModelBase.C:113
Foam::T
void T(FieldField< Field, Type > &f1, const FieldField< Field, Type > &f2)
Definition: FieldFieldFunctions.C:58
Foam::dictionary
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:123
Foam::regionModels::surfaceFilmModels::filmThermoModel::pv
virtual scalar pv(const scalar p, const scalar T) const =0
Return vapour pressure [Pa].
Foam
Namespace for OpenFOAM.
Definition: atmBoundaryLayer.C:33
Foam::regionModels::surfaceFilmModels::filmThermoModel::New
static autoPtr< filmThermoModel > New(surfaceFilmRegionModel &film, const dictionary &dict)
Return a reference to the selected phase change model.
Definition: filmThermoModelNew.C:43
Foam::regionModels::surfaceFilmModels::filmThermoModel::D
virtual scalar D(const scalar p, const scalar T) const =0
Return diffusivity [m2/s].
Foam::subModelBase::modelType
const word & modelType() const
Return const access to the sub-model type.
Definition: subModelBase.C:125
Foam::regionModels::surfaceFilmModels::filmThermoModel::TypeName
TypeName("filmThermoModel")
Runtime type information.
Foam::autoPtr
Pointer management similar to std::unique_ptr, with some additional methods and type checking.
Definition: HashPtrTable.H:53
Foam::regionModels::surfaceFilmModels::filmThermoModel
Base class for film thermo models.
Definition: filmThermoModel.H:56
runTimeSelectionTables.H
Macros to ease declaration of run-time selection tables.
Foam::regionModels::surfaceFilmModels::filmThermoModel::declareRunTimeSelectionTable
declareRunTimeSelectionTable(autoPtr, filmThermoModel, dictionary,(surfaceFilmRegionModel &film, const dictionary &dict),(film, dict))
Foam::regionModels::surfaceFilmModels::filmThermoModel::~filmThermoModel
virtual ~filmThermoModel()
Destructor.
Definition: filmThermoModel.C:68
Foam::regionModels::surfaceFilmModels::filmThermoModel::sigma
virtual tmp< volScalarField > sigma() const =0
Return surface tension [kg/s2].
Foam::regionModels::surfaceFilmModels::filmThermoModel::kappa
virtual tmp< volScalarField > kappa() const =0
Return thermal conductivity [W/m/K].
Foam::regionModels::surfaceFilmModels::filmSubModelBase
Base class for surface film sub-models.
Definition: filmSubModelBase.H:56