uniformInletOutletEnergyTemperatureFvScalarFieldSource.H
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23 
24 Class
25  Foam::uniformInletOutletEnergyTemperatureFvScalarFieldSource
26 
27 Description
28  This source condition is applied to the temperature field, but provides a
29  uniform fixed energy into the energy equation when the source is positive,
30  and the internal value when it is negative (i.e., a sink)
31 
32 Usage
33  \table
34  Property | Description | Required | Default value
35  uniformInletHe | uniform inlet energy value | yes |
36  \endtable
37 
38  Example of the boundary condition specification:
39  \verbatim
40  <sourceName>
41  {
42  type uniformInletOutletEnergyTemperature;
43  uniformInletHe 3700000;
44  }
45  \endverbatim
46 
47 SourceFiles
48  uniformInletOutletEnergyTemperatureFvScalarFieldSource.C
49 
50 \*---------------------------------------------------------------------------*/
51 
52 #ifndef uniformInletOutletEnergyTemperatureFvScalarFieldSource_H
53 #define uniformInletOutletEnergyTemperatureFvScalarFieldSource_H
54 
56 #include "Function1.H"
57 
58 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
59 
60 namespace Foam
61 {
62 
63 /*---------------------------------------------------------------------------*\
64  Class uniformInletOutletEnergyTemperatureFvScalarFieldSource Declaration
65 \*---------------------------------------------------------------------------*/
66 
67 class uniformInletOutletEnergyTemperatureFvScalarFieldSource
68 :
69  public energyCalculatedTemperatureFvScalarFieldSource
70 {
71 private:
72 
73  // Private Data
74 
75  //- Uniform value
76  autoPtr<Function1<scalar>> uniformInletHe_;
77 
78 
79 public:
80 
81  //- Runtime type information
82  TypeName("uniformInletOutletEnergyTemperature");
83 
84 
85  // Constructors
86 
87  //- Construct from internal field and dictionary
89  (
92  );
93 
94  //- Copy constructor setting internal field reference
96  (
99  );
100 
101  //- Construct and return a clone setting internal field reference
103  (
105  ) const
106  {
108  (
110  (
111  *this,
112  iF
113  )
114  );
115  }
116 
117 
118  //- Destructor
120 
121 
122  // Member Functions
123 
124  //- Return the source energy value
126  (
127  const fvSource& model,
129  ) const;
130 
131  //- Return the source energy value
133  (
134  const fvSource& model,
135  const scalarField& source,
136  const labelUList& cells
137  ) const;
138 
139  //- Return the internal coefficient
141  (
142  const fvSource& model,
144  ) const;
145 
146  //- Return the internal coefficient
148  (
149  const fvSource& model,
150  const scalarField& source,
151  const labelUList& cells
152  ) const;
153 
154  //- Write
155  virtual void write(Ostream&) const;
156 };
157 
158 
159 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
160 
161 } // End namespace Foam
162 
163 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
164 
165 #endif
166 
167 // ************************************************************************* //
Field with dimensions and associated with geometry type GeoMesh which is used to size the field and a...
An Ostream is an abstract base class for all output systems (streams, files, token lists,...
Definition: Ostream.H:57
An auto-pointer similar to the STL auto_ptr but with automatic casting to a reference to the type and...
Definition: autoPtr.H:51
A list of keywords followed by any number of values (e.g. words and numbers) or sub-dictionaries.
Definition: dictionary.H:162
Base class for finite volume sources.
Definition: fvSource.H:52
A class for managing temporary objects.
Definition: tmp.H:55
This source condition is applied to the temperature field, but provides a uniform fixed energy into t...
virtual tmp< DimensionedField< scalar, volMesh > > sourceHeValue(const fvSource &model, const DimensionedField< scalar, volMesh > &source) const
Return the source energy value.
virtual autoPtr< fvScalarFieldSource > clone(const DimensionedField< scalar, volMesh > &iF) const
Construct and return a clone setting internal field reference.
uniformInletOutletEnergyTemperatureFvScalarFieldSource(const DimensionedField< scalar, volMesh > &, const dictionary &dict)
Construct from internal field and dictionary.
virtual tmp< DimensionedField< scalar, volMesh > > internalCoeff(const fvSource &model, const DimensionedField< scalar, volMesh > &source) const
Return the internal coefficient.
TypeName("uniformInletOutletEnergyTemperature")
Runtime type information.
const cellShapeList & cells
Namespace for OpenFOAM.
dictionary dict