liftModel.H
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6 \\/ M anipulation |
7-------------------------------------------------------------------------------
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9 Copyright (C) 2020 OpenCFD Ltd.
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22 for more details.
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24 You should have received a copy of the GNU General Public License
25 along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
26
27Class
28 Foam::liftModel
29
30Description
31
32SourceFiles
33 liftModel.C
34
35\*---------------------------------------------------------------------------*/
36
37#ifndef liftModel_H
38#define liftModel_H
39
40// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
41
42#include "volFields.H"
43#include "dictionary.H"
45
46namespace Foam
47{
48
49// Forward Declarations
50class phasePair;
51
52/*---------------------------------------------------------------------------*\
53 Class liftModel Declaration
54\*---------------------------------------------------------------------------*/
55
56class liftModel
57{
58protected:
59
60 // Protected Data
61
62 //- Phase pair
63 const phasePair& pair_;
64
65
66public:
67
68 //- Runtime type information
69 TypeName("liftModel");
70
71
72 // Declare runtime construction
75 (
76 autoPtr,
79 (
80 const dictionary& dict,
81 const phasePair& pair
82 ),
83 (dict, pair)
84 );
85
86
87 // Static data members
88
89 //- Force dimensions
90 static const dimensionSet dimF;
91
92
93 // Constructors
94
95 //- Construct from a dictionary and a phase pair
97 (
98 const dictionary& dict,
99 const phasePair& pair
100 );
101
102
103 //- Destructor
104 virtual ~liftModel() = default;
105
106
107 // Selectors
110 (
111 const dictionary& dict,
112 const phasePair& pair
113 );
114
115
116 // Member Functions
117
118 //- Return lift coefficient
119 virtual tmp<volScalarField> Cl() const = 0;
120
121 //- Return phase-intensive lift force
122 virtual tmp<volVectorField> Fi() const;
123
124 //- Return lift force
125 virtual tmp<volVectorField> F() const;
126
127 //- Return face lift force
128 virtual tmp<surfaceScalarField> Ff() const;
129};
130
131
132// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
133
134} // End namespace Foam
135
136// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
137
138#endif
139
140// ************************************************************************* //
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
Dimension set for the base types, which can be used to implement rigorous dimension checking for alge...
Definition: dimensionSet.H:109
virtual ~liftModel()=default
Destructor.
virtual tmp< volVectorField > F() const
Return lift force.
virtual tmp< surfaceScalarField > Ff() const
Return face lift force.
Definition: liftModel.C:110
virtual tmp< volVectorField > F() const
Return lift force.
Definition: liftModel.C:104
static autoPtr< liftModel > New(const dictionary &dict, const phasePair &pair)
Definition: liftModel.C:64
const phasePair & pair_
Phase pair.
Definition: liftModel.H:62
virtual tmp< surfaceScalarField > Ff() const
Return face lift force.
TypeName("liftModel")
Runtime type information.
virtual tmp< volVectorField > Fi() const
Return phase-intensive lift force.
declareRunTimeSelectionTable(autoPtr, liftModel, dictionary,(const dictionary &dict, const phasePair &pair),(dict, pair))
liftModel(const dictionary &dict, const phasePair &pair)
Construct from a dictionary and a phase pair.
virtual tmp< volScalarField > Cl() const =0
Return lift coefficient.
virtual tmp< volVectorField > Fi() const
Return phase-intensive lift force.
Definition: liftModel.C:93
static const dimensionSet dimF
Force dimensions.
Definition: liftModel.H:89
static autoPtr< liftModel > New(const dictionary &dict, const phasePair &pair)
Description for mass transfer between a pair of phases. The direction of the mass transfer is from th...
Definition: phasePair.H:56
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