wallLubricationModel.H
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26 
27 Class
28  Foam::wallLubricationModel
29 
30 Description
31 
32 SourceFiles
33  wallLubricationModel.C
34 
35 \*---------------------------------------------------------------------------*/
36 
37 #ifndef wallLubricationModel_H
38 #define wallLubricationModel_H
39 
40 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
41 
42 #include "wallDependentModel.H"
43 #include "volFields.H"
44 #include "dictionary.H"
45 #include "runTimeSelectionTables.H"
46 
47 namespace Foam
48 {
49 
50 // Forward Declarations
51 class phasePair;
52 
53 /*---------------------------------------------------------------------------*\
54  Class wallLubricationModel Declaration
55 \*---------------------------------------------------------------------------*/
56 
58 :
59  public wallDependentModel
60 {
61 protected:
62 
63  // Protected Data
64 
65  //- Phase pair
66  const phasePair& pair_;
67 
68 
69  // Protected Member Functions
70 
71  //- Zero-gradient wall-lubrication force at walls
73 
74 
75 public:
76 
77  //- Runtime type information
78  TypeName("wallLubricationModel");
79 
80 
81  // Declare runtime construction
82 
84  (
85  autoPtr,
87  dictionary,
88  (
89  const dictionary& dict,
90  const phasePair& pair
91  ),
92  (dict, pair)
93  );
94 
95 
96  // Static Data Members
97 
98  //- Coefficient dimensions
99  static const dimensionSet dimF;
100 
101 
102  // Constructors
103 
104  //- Construct from components
106  (
107  const dictionary& dict,
108  const phasePair& pair
109  );
110 
111 
112  //- Destructor
113  virtual ~wallLubricationModel() = default;
114 
115 
116  // Selectors
117 
119  (
120  const dictionary& dict,
121  const phasePair& pair
122  );
123 
124 
125  // Member Functions
126 
127  //- Return phase-intensive wall lubrication force
128  virtual tmp<volVectorField> Fi() const = 0;
129 
130  //- Return wall lubrication force
131  virtual tmp<volVectorField> F() const;
132 
133  //- Return face wall lubrication force
134  virtual tmp<surfaceScalarField> Ff() const;
135 };
136 
137 
138 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
139 
140 } // End namespace Foam
141 
142 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
143 
144 #endif
145 
146 // ************************************************************************* //
dictionary dict
virtual ~wallLubricationModel()=default
Destructor.
A list of keyword definitions, which are a keyword followed by a number of values (eg...
Definition: dictionary.H:129
static autoPtr< wallLubricationModel > New(const dictionary &dict, const phasePair &pair)
virtual tmp< volVectorField > F() const
Return wall lubrication force.
const phasePair & pair_
Phase pair.
declareRunTimeSelectionTable(autoPtr, wallLubricationModel, dictionary,(const dictionary &dict, const phasePair &pair),(dict, pair))
Dimension set for the base types, which can be used to implement rigorous dimension checking for alge...
Definition: dimensionSet.H:105
virtual tmp< surfaceScalarField > Ff() const
Return face wall lubrication force.
virtual tmp< volVectorField > Fi() const =0
Return phase-intensive wall lubrication force.
tmp< volVectorField > zeroGradWalls(tmp< volVectorField >) const
Zero-gradient wall-lubrication force at walls.
static const dimensionSet dimF
Coefficient dimensions.
wallLubricationModel(const dictionary &dict, const phasePair &pair)
Construct from components.
TypeName("wallLubricationModel")
Runtime type information.
Pointer management similar to std::unique_ptr, with some additional methods and type checking...
Definition: HashPtrTable.H:48
Macros to ease declaration of run-time selection tables.
A class for managing temporary objects.
Definition: HashPtrTable.H:50
Description for mass transfer between a pair of phases. The direction of the mass transfer is from th...
Definition: phasePair.H:49
A class which provides on-demand creation and caching of wall distance and wall normal fields for use...
Namespace for OpenFOAM.