basicSymmetryFvPatchField.C
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27
29#include "symmTransformField.H"
30
31
32// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
33
34template<class Type>
36(
37 const fvPatch& p,
39)
40:
41 transformFvPatchField<Type>(p, iF)
42{}
43
44
45template<class Type>
47(
49 const fvPatch& p,
51 const fvPatchFieldMapper& mapper
52)
53:
54 transformFvPatchField<Type>(ptf, p, iF, mapper)
55{}
56
57
58template<class Type>
60(
61 const fvPatch& p,
63 const dictionary& dict
64)
65:
66 transformFvPatchField<Type>(p, iF, dict)
67{
68 this->evaluate();
69}
70
71
72template<class Type>
74(
76)
77:
78 transformFvPatchField<Type>(ptf)
79{}
80
81
82template<class Type>
84(
87)
88:
89 transformFvPatchField<Type>(ptf, iF)
90{}
91
92
93// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
94
95template<class Type>
98{
99 tmp<vectorField> nHat = this->patch().nf();
100
101 const Field<Type> iF(this->patchInternalField());
102
103 return
104 (transform(I - 2.0*sqr(nHat), iF) - iF)
105 *(this->patch().deltaCoeffs()/2.0);
106}
107
108
109template<class Type>
111{
112 if (!this->updated())
113 {
114 this->updateCoeffs();
115 }
116
117 tmp<vectorField> nHat = this->patch().nf();
118
119 const Field<Type> iF(this->patchInternalField());
120
122 (
123 (iF + transform(I - 2.0*sqr(nHat), iF))/2.0
124 );
125
127}
128
129
130template<class Type>
133{
134 const vectorField nHat(this->patch().nf());
135
136 vectorField diag(nHat.size());
137
138 diag.replace(vector::X, mag(nHat.component(vector::X)));
139 diag.replace(vector::Y, mag(nHat.component(vector::Y)));
140 diag.replace(vector::Z, mag(nHat.component(vector::Z)));
141
142 return transformFieldMask<Type>(pow<vector, pTraits<Type>::rank>(diag));
143}
144
145
146// ************************************************************************* //
Field with dimensions and associated with geometry type GeoMesh which is used to size the field and a...
Generic templated field type.
Definition: Field.H:82
tmp< Field< cmptType > > component(const direction) const
Return a component field of the field.
Definition: Field.C:545
void evaluate()
Evaluate boundary conditions.
void size(const label n)
Older name for setAddressableSize.
Definition: UList.H:114
commsTypes
Types of communications.
Definition: UPstream.H:67
virtual void evaluate(const Pstream::commsTypes commsType=Pstream::commsTypes::blocking)
Evaluate the patch field.
virtual tmp< Field< Type > > snGrad() const
Return gradient at boundary.
virtual tmp< Field< Type > > snGradTransformDiag() const
Return face-gradient transform diagonal.
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
A FieldMapper for finite-volume patch fields.
A finiteVolume patch using a polyPatch and a fvBoundaryMesh.
Definition: fvPatch.H:71
A traits class, which is primarily used for primitives.
Definition: pTraits.H:59
A class for managing temporary objects.
Definition: tmp.H:65
Foam::transformFvPatchField.
volScalarField & p
dimensionSet transform(const dimensionSet &ds)
Return the argument; transformations do not change the dimensions.
Definition: dimensionSet.C:536
dimensionedSymmTensor sqr(const dimensionedVector &dv)
static const Identity< scalar > I
Definition: Identity.H:94
dimensionedScalar pow(const dimensionedScalar &ds, const dimensionedScalar &expt)
dimensioned< typename typeOfMag< Type >::type > mag(const dimensioned< Type > &dt)
void diag(pointPatchField< vector > &, const pointPatchField< tensor > &)
dictionary dict