buoyancyForce.H
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26 
27 Class
28  Foam::fv::buoyancyForce
29 
30 Group
31  grpFvOptionsSources
32 
33 Description
34  Applies buoyancy force sources (i.e. \c Sf) to the momentum
35  equation for incompressible and compressible flows.
36 
37  \f[
38  S_f = \rho \vec{g}
39  \f]
40 
41  where
42  \vartable
43  S_f | Buoyancy force source term
44  \rho | Fluid density
45  \vec{g} | Gravitational acceleration field
46  \endvartable
47 
48  Sources applied to:
49  \verbatim
50  U | Velocity [m/s]
51  \endverbatim
52 
53  Required fields:
54  \verbatim
55  U | Velocity [m/s]
56  \endverbatim
57 
58 Usage
59  Minimal example by using \c constant/fvOptions:
60  \verbatim
61  buoyancyForce1
62  {
63  // Mandatory entries (unmodifiable)
64  type buoyancyForce;
65  fields (U);
66 
67  // Mandatory/Optional (inherited) entries
68  ...
69  }
70  \endverbatim
71 
72  where the entries mean:
73  \table
74  Property | Description | Type | Reqd | Dflt
75  type | Type name: buoyancyEnergy | word | yes | -
76  fields | Name of operand vector field | word | yes | -
77  \endtable
78 
79  The inherited entries are elaborated in:
80  - \link fvOption.H \endlink
81 
82 Note
83  - The entry \c fields accepts only a single vector field name.
84 
85 See also
86  - Foam::fv::buoyancyEnergy
87  - Foam::fv::buoyancyTurbSource
88 
89 SourceFiles
90  buoyancyForce.C
91 
92 \*---------------------------------------------------------------------------*/
93 
94 #ifndef buoyancyForce_H
95 #define buoyancyForce_H
96 
97 #include "fvOption.H"
99 
100 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
101 
102 namespace Foam
103 {
104 namespace fv
105 {
106 
107 /*---------------------------------------------------------------------------*\
108  Class buoyancyForce Declaration
109 \*---------------------------------------------------------------------------*/
110 
111 class buoyancyForce
112 :
113  public fv::option
114 {
115  // Private Data
116 
118 
119 
120 public:
121 
122  //- Runtime type information
123  TypeName("buoyancyForce");
124 
125 
126  // Constructors
127 
128  //- Construct from explicit source name and mesh
130  (
131  const word& sourceName,
132  const word& modelType,
133  const dictionary& dict,
134  const fvMesh& mesh
135  );
136 
137  //- No copy construct
138  buoyancyForce(const buoyancyForce&) = delete;
139 
140  //- No copy assignment
141  void operator=(const buoyancyForce&) = delete;
142 
143 
144  //- Destructor
145  virtual ~buoyancyForce() = default;
146 
147 
148  // Member Functions
149 
150  //- Add explicit contribution to momentum equation
151  virtual void addSup
152  (
153  fvMatrix<vector>& eqn,
154  const label fieldi
155  );
156 
157  //- Add explicit contribution to compressible momentum equation
158  virtual void addSup
159  (
160  const volScalarField& rho,
161  fvMatrix<vector>& eqn,
162  const label fieldi
163  );
164 
165 
166  //- Read source dictionary
167  virtual bool read(const dictionary& dict);
168 };
169 
170 
171 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
172 
173 } // End namespace fv
174 } // End namespace Foam
175 
176 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
177 
178 #endif
179 
180 // ************************************************************************* //
Foam::fv::buoyancyForce::operator=
void operator=(const buoyancyForce &)=delete
No copy assignment.
Foam::word
A class for handling words, derived from Foam::string.
Definition: word.H:65
Foam::fv::buoyancyForce::TypeName
TypeName("buoyancyForce")
Runtime type information.
Foam::fv::buoyancyForce
Applies buoyancy force sources (i.e. Sf) to the momentum equation for incompressible and compressible...
Definition: buoyancyForce.H:140
rho
rho
Definition: readInitialConditions.H:88
Foam::UniformDimensionedField< vector >
Foam::fv::option
Base abstract class for handling finite volume options (i.e. fvOption).
Definition: fvOption.H:126
Foam::uniformDimensionedVectorField
UniformDimensionedField< vector > uniformDimensionedVectorField
Definition: uniformDimensionedFields.H:50
dict
dictionary dict
Definition: searchingEngine.H:14
Foam::dictionary
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:123
Foam::fvMesh
Mesh data needed to do the Finite Volume discretisation.
Definition: fvMesh.H:85
Foam
Namespace for OpenFOAM.
Definition: atmBoundaryLayer.C:33
Foam::fv::buoyancyForce::read
virtual bool read(const dictionary &dict)
Read source dictionary.
Definition: buoyancyForce.C:94
Foam::fv::buoyancyForce::buoyancyForce
buoyancyForce(const word &sourceName, const word &modelType, const dictionary &dict, const fvMesh &mesh)
Construct from explicit source name and mesh.
Definition: buoyancyForce.C:49
Foam::fv::buoyancyForce::addSup
virtual void addSup(fvMatrix< vector > &eqn, const label fieldi)
Add explicit contribution to momentum equation.
Definition: buoyancyForce.C:74
fv
labelList fv(nPoints)
uniformDimensionedFields.H
Foam::fv::option::mesh
const fvMesh & mesh() const noexcept
Return const access to the mesh database.
Definition: fvOptionI.H:37
fvOption.H
Foam::fv::buoyancyForce::~buoyancyForce
virtual ~buoyancyForce()=default
Destructor.
Foam::fvMatrix
A special matrix type and solver, designed for finite volume solutions of scalar equations....
Definition: fvPatchField.H:68
Foam::GeometricField< scalar, fvPatchField, volMesh >