/*---------------------------------------------------------------------------*\
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License
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Class
Foam::processorCyclicFvPatchField
Group
grpCoupledBoundaryConditions
Description
This boundary condition enables processor communication across cyclic
patches.
Usage
Example of the boundary condition specification:
\verbatim
{
type processor;
}
\endverbatim
See also
Foam::processorFvPatchField
SourceFiles
processorCyclicFvPatchField.C
processorCyclicFvPatchFields.H
processorCyclicFvPatchFields.C
processorCyclicFvPatchFieldsFwd.H
\*---------------------------------------------------------------------------*/
#ifndef Foam_processorCyclicFvPatchField_H
#define Foam_processorCyclicFvPatchField_H
#include "processorCyclicFvPatch.H"
#include "processorFvPatchField.H"
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
namespace Foam
{
/*---------------------------------------------------------------------------*\
Class processorCyclicFvPatchField Declaration
\*---------------------------------------------------------------------------*/
template
class processorCyclicFvPatchField
:
public processorFvPatchField
{
// Private Data
//- Local reference cast into the processor patch
const processorCyclicFvPatch& procPatch_;
public:
//- Runtime type information
TypeName(processorCyclicFvPatch::typeName_());
// Constructors
//- Construct from patch and internal field
processorCyclicFvPatchField
(
const fvPatch&,
const DimensionedField&
);
//- Construct from patch and internal field and patch field
processorCyclicFvPatchField
(
const fvPatch&,
const DimensionedField&,
const Field&
);
//- Construct from patch, internal field and dictionary
processorCyclicFvPatchField
(
const fvPatch&,
const DimensionedField&,
const dictionary&
);
//- Construct by mapping given processorCyclicFvPatchField onto a
// new patch
processorCyclicFvPatchField
(
const processorCyclicFvPatchField&,
const fvPatch&,
const DimensionedField&,
const fvPatchFieldMapper&
);
//- Construct as copy
processorCyclicFvPatchField(const processorCyclicFvPatchField&);
//- Construct as copy setting internal field reference
processorCyclicFvPatchField
(
const processorCyclicFvPatchField&,
const DimensionedField&
);
//- Return a clone
virtual tmp> clone() const
{
return fvPatchField::Clone(*this);
}
//- Clone with an internal field reference
virtual tmp> clone
(
const DimensionedField& iF
) const
{
return fvPatchField::Clone(*this, iF);
}
//- Destructor
virtual ~processorCyclicFvPatchField() = default;
// Member Functions
// Access
//- Does the patch field perform the transformation
virtual bool doTransform() const
{
return (pTraits::rank && !procPatch_.parallel());
}
//- Return face transformation tensor
virtual const tensorField& forwardT() const
{
return procPatch_.forwardT();
}
};
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
} // End namespace Foam
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#ifdef NoRepository
#include "processorCyclicFvPatchField.C"
#endif
// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
#endif
// ************************************************************************* //