velocityComponentLaplacianFvMotionSolver.H
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25
26Class
27 Foam::velocityComponentLaplacianFvMotionSolver
28
29Group
30 grpMeshMotionSolvers
31
32Description
33 Mesh motion solver for an fvMesh. Based on solving the cell-centre
34 Laplacian for the given component of the motion velocity.
35
36SourceFiles
37 velocityComponentLaplacianFvMotionSolver.C
38
39\*---------------------------------------------------------------------------*/
40
41#ifndef velocityComponentLaplacianFvMotionSolver_H
42#define velocityComponentLaplacianFvMotionSolver_H
43
45#include "fvMotionSolver.H"
46
47// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
48
49namespace Foam
50{
51
52// Forward class declarations
53class motionInterpolation;
54class motionDiffusivity;
55
56/*---------------------------------------------------------------------------*\
57 Class velocityComponentLaplacianFvMotionSolver Declaration
58\*---------------------------------------------------------------------------*/
61:
63 public fvMotionSolver
64{
65 // Private data
66
67 //- Cell-centre motion field
68 mutable volScalarField cellMotionU_;
69
70 //- Interpolation used to transfer cell displacement to the points
71 autoPtr<motionInterpolation> interpolationPtr_;
72
73 //- Diffusivity used to control the motion
74 autoPtr<motionDiffusivity> diffusivityPtr_;
75
76
77 // Private Member Functions
78
79 //- No copy construct
81 (
83 ) = delete;
84
85 //- No copy assignment
86 void operator=
87 (
89 ) = delete;
90
91
92public:
93
94 //- Runtime type information
95 TypeName("velocityComponentLaplacian");
96
97
98 // Constructors
99
100 //- Construct from polyMesh and IOdictionary
102 (
103 const polyMesh&,
104 const IOdictionary&
105 );
106
107
108 //- Destructor
110
111
112 // Member Functions
113
114 //- Non-const access to the cellMotionU in order to allow changes
115 // to the boundary motion
117 {
118 return cellMotionU_;
119 }
120
121 //- Return point location obtained from the current motion field
122 virtual tmp<pointField> curPoints() const;
123
124 //- Solve for motion
125 virtual void solve();
126
127 //- Update topology
128 virtual void updateMesh(const mapPolyMesh&);
129};
130
131
132// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
133
134} // End namespace Foam
135
136// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
137
138#endif
139
140// ************************************************************************* //
IOdictionary is derived from dictionary and IOobject to give the dictionary automatic IO functionalit...
Definition: IOdictionary.H:57
Pointer management similar to std::unique_ptr, with some additional methods and type checking.
Definition: autoPtr.H:66
Virtual base class for velocity motion solver.
Base class for fvMesh based motionSolvers.
Class containing mesh-to-mesh mapping information after a change in polyMesh topology.
Definition: mapPolyMesh.H:162
Mesh consisting of general polyhedral cells.
Definition: polyMesh.H:81
A class for managing temporary objects.
Definition: tmp.H:65
Mesh motion solver for an fvMesh. Based on solving the cell-centre Laplacian for the given component ...
virtual tmp< pointField > curPoints() const
Return point location obtained from the current motion field.
virtual void updateMesh(const mapPolyMesh &)
Update topology.
volScalarField & cellMotionU()
Non-const access to the cellMotionU in order to allow changes.
TypeName("velocityComponentLaplacian")
Runtime type information.
Namespace for OpenFOAM.
#define TypeName(TypeNameString)
Declare a ClassName() with extra virtual type info.
Definition: typeInfo.H:73