by introducing rational base-classes rather than using the hideous 'switch' statement. Further rationalization of the cell-selection mechanism will be implemented via an appropriate class hierarchy to replace the remaining 'switch' statement. Mesh-motion is currently handled very inefficiently for cellSets and not at all for inter-region coupling. The former will be improved when the cell-selection classes are written and the latter by making the meshToMesh class a MeshObject after it has been corrected for mapFields.
251 lines
6 KiB
C
251 lines
6 KiB
C
/*---------------------------------------------------------------------------*\
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========= |
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\\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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\\ / O peration |
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\\ / A nd | Copyright (C) 2011-2015 OpenFOAM Foundation
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\\/ M anipulation |
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-------------------------------------------------------------------------------
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License
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This file is part of OpenFOAM.
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OpenFOAM is free software: you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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OpenFOAM is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with OpenFOAM. If not, see <http://www.gnu.org/licenses/>.
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\*---------------------------------------------------------------------------*/
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// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
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template<class Type>
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void Foam::fv::optionList::correct
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(
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GeometricField<Type, fvPatchField, volMesh>& fld
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)
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{
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const word& fieldName = fld.name();
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forAll(*this, i)
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{
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option& source = this->operator[](i);
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label fieldI = source.applyToField(fieldName);
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if (fieldI != -1)
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{
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source.setApplied(fieldI);
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if (source.isActive())
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{
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if (debug)
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{
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Info<< "Correcting source " << source.name()
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<< " for field " << fieldName << endl;
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}
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source.correct(fld);
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}
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}
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}
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}
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template<class Type>
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Foam::tmp<Foam::fvMatrix<Type> > Foam::fv::optionList::operator()
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(
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GeometricField<Type, fvPatchField, volMesh>& fld
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)
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{
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return this->operator()(fld, fld.name());
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}
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template<class Type>
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Foam::tmp<Foam::fvMatrix<Type> > Foam::fv::optionList::operator()
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(
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GeometricField<Type, fvPatchField, volMesh>& fld,
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const word& fieldName
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)
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{
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checkApplied();
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const dimensionSet ds = fld.dimensions()/dimTime*dimVolume;
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tmp<fvMatrix<Type> > tmtx(new fvMatrix<Type>(fld, ds));
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fvMatrix<Type>& mtx = tmtx();
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forAll(*this, i)
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{
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option& source = this->operator[](i);
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label fieldI = source.applyToField(fieldName);
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if (fieldI != -1)
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{
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source.setApplied(fieldI);
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if (source.isActive())
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{
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if (debug)
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{
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Info<< "Applying source " << source.name() << " to field "
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<< fieldName << endl;
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}
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source.addSup(mtx, fieldI);
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}
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}
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}
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return tmtx;
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}
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template<class Type>
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Foam::tmp<Foam::fvMatrix<Type> > Foam::fv::optionList::operator()
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(
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const volScalarField& rho,
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GeometricField<Type, fvPatchField, volMesh>& fld
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)
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{
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return this->operator()(rho, fld, fld.name());
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}
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template<class Type>
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Foam::tmp<Foam::fvMatrix<Type> > Foam::fv::optionList::operator()
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(
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const volScalarField& rho,
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GeometricField<Type, fvPatchField, volMesh>& fld,
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const word& fieldName
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)
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{
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checkApplied();
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const dimensionSet ds = rho.dimensions()*fld.dimensions()/dimTime*dimVolume;
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tmp<fvMatrix<Type> > tmtx(new fvMatrix<Type>(fld, ds));
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fvMatrix<Type>& mtx = tmtx();
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forAll(*this, i)
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{
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option& source = this->operator[](i);
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label fieldI = source.applyToField(fieldName);
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if (fieldI != -1)
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{
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source.setApplied(fieldI);
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if (source.isActive())
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{
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if (debug)
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{
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Info<< "Applying source " << source.name() << " to field "
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<< fieldName << endl;
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}
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source.addSup(rho, mtx, fieldI);
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}
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}
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}
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return tmtx;
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}
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template<class Type>
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Foam::tmp<Foam::fvMatrix<Type> > Foam::fv::optionList::operator()
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(
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const volScalarField& alpha,
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const volScalarField& rho,
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GeometricField<Type, fvPatchField, volMesh>& fld
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)
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{
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return this->operator()(alpha, rho, fld, fld.name());
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}
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template<class Type>
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Foam::tmp<Foam::fvMatrix<Type> > Foam::fv::optionList::operator()
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(
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const volScalarField& alpha,
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const volScalarField& rho,
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GeometricField<Type, fvPatchField, volMesh>& fld,
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const word& fieldName
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)
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{
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checkApplied();
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const dimensionSet ds =
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alpha.dimensions()*rho.dimensions()*fld.dimensions()/dimTime*dimVolume;
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tmp<fvMatrix<Type> > tmtx(new fvMatrix<Type>(fld, ds));
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fvMatrix<Type>& mtx = tmtx();
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forAll(*this, i)
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{
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option& source = this->operator[](i);
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label fieldI = source.applyToField(fieldName);
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if (fieldI != -1)
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{
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source.setApplied(fieldI);
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if (source.isActive())
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{
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if (debug)
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{
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Info<< "Applying source " << source.name() << " to field "
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<< fieldName << endl;
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}
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source.addSup(alpha, rho, mtx, fieldI);
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}
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}
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}
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return tmtx;
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}
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template<class Type>
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void Foam::fv::optionList::constrain(fvMatrix<Type>& eqn)
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{
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checkApplied();
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forAll(*this, i)
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{
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option& source = this->operator[](i);
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label fieldI = source.applyToField(eqn.psi().name());
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if (fieldI != -1)
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{
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source.setApplied(fieldI);
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if (source.isActive())
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{
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if (debug)
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{
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Info<< "Applying constraint " << source.name()
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<< " to field " << eqn.psi().name() << endl;
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}
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source.setValue(eqn, fieldI);
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}
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}
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}
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}
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// ************************************************************************* //
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