GeometricTensorField.C
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24 \*---------------------------------------------------------------------------*/
25 
26 #include "GeometricTensorField.H"
27 #include "tensorFieldField.H"
28 
29 #define TEMPLATE \
30  template \
31  < \
32  class GeoMesh, \
33  template<class> class PrimitiveField \
34  >
35 #define TEMPLATE2 \
36  template \
37  < \
38  class GeoMesh, \
39  template<class> class PrimitiveField1, \
40  template<class> class PrimitiveField2 \
41  >
42 #define TEMPLATE3 \
43  template \
44  < \
45  class GeoMesh, \
46  template<class> class PrimitiveField1, \
47  template<class> class PrimitiveField2, \
48  template<class> class PrimitiveField3 \
49  >
51 
52 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
53 
54 namespace Foam
55 {
56 
57 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
58 
67 UNARY_FUNCTION(scalar, tensor, det, pow3)
72 
75 
76 
77 // * * * * * * * * * * * * * * * global operators * * * * * * * * * * * * * //
78 
81 
84 
85 
86 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
87 
88 } // End namespace Foam
89 
90 // * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
91 
92 #include "undefFieldFunctionsM.H"
93 
94 // ************************************************************************* //
#define BINARY_TYPE_OPERATOR(ReturnType, Type1, Type2, Op, OpName, OpFunc)
Tensor specific part of the implementation of GeometricField.
#define BINARY_OPERATOR(Template, Type, Type1, Type2, op, opFunc)
#define UNARY_OPERATOR(op, opFunc)
#define UNARY_FUNCTION(Template, Type, Type1, func)
Namespace for OpenFOAM.
void skew(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
void divide(LagrangianPatchField< Type > &f, const LagrangianPatchField< Type > &f1, const LagrangianPatchField< scalar > &f2)
SphericalTensor< scalar > sphericalTensor
SphericalTensor of scalars.
dimensionedScalar sign(const dimensionedScalar &ds)
void dev2(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
Tensor< scalar > tensor
Tensor of scalars.
Definition: tensor.H:51
void dev(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
void twoSymm(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
void eigenValues(LagrangianPatchField< vector > &f, const LagrangianPatchField< tensor > &f1)
void T(LagrangianPatchField< Type > &f, const LagrangianPatchField< Type > &f1)
SymmTensor< scalar > symmTensor
SymmTensor of scalars.
Definition: symmTensor.H:48
SphericalTensor< Cmpt > sph(const DiagTensor< Cmpt > &dt)
Return the spherical part of a diagonal tensor.
Definition: DiagTensorI.H:353
void det(LagrangianPatchField< scalar > &f, const LagrangianPatchField< tensor > &f1)
dimensionedSymmTensor cof(const dimensionedSymmTensor &dt)
void symm(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
Vector< scalar > vector
A scalar version of the templated Vector.
Definition: vector.H:49
void hdual(LagrangianPatchField< vector > &f, const LagrangianPatchField< tensor > &f1)
dimensionSet transform(const dimensionSet &)
Definition: dimensionSet.C:501
void pow3(LagrangianPatchField< scalar > &f, const LagrangianPatchField< scalar > &f1)
void eigenVectors(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
void tr(LagrangianPatchField< scalar > &f, const LagrangianPatchField< tensor > &f1)
void inv(LagrangianPatchField< tensor > &f, const LagrangianPatchField< tensor > &f1)
Specialisation of FieldField<T> for tensor.