Feature: block coupled updates
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2 changed files with 44 additions and 265 deletions
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@ -30,7 +30,7 @@ License
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template<class Type>
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template<class fieldType>
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void fvBlockMatrix<Type>::insertSolutionVector
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void Foam::fvBlockMatrix<Type>::insertSolutionVector
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(
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const direction dir,
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const Field<fieldType>& xSingle
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@ -59,7 +59,7 @@ void fvBlockMatrix<Type>::insertSolutionVector
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template<class Type>
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template<class matrixType>
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void fvBlockMatrix<Type>::insertDiagSource
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void Foam::fvBlockMatrix<Type>::insertDiagSource
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(
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const direction dir,
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fvMatrix<matrixType>& matrix
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@ -162,7 +162,7 @@ void fvBlockMatrix<Type>::insertDiagSource
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template<class Type>
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template<class matrixType>
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void fvBlockMatrix<Type>::insertUpperLower
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void Foam::fvBlockMatrix<Type>::insertUpperLower
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(
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const direction dir,
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const fvMatrix<matrixType>& matrix
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@ -290,7 +290,7 @@ void fvBlockMatrix<Type>::insertUpperLower
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template<class Type>
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template<class matrixType>
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void fvBlockMatrix<Type>::updateCouplingCoeffs
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void Foam::fvBlockMatrix<Type>::updateCouplingCoeffs
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(
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const direction dir,
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const fvMatrix<matrixType>& matrix
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@ -299,7 +299,9 @@ void fvBlockMatrix<Type>::updateCouplingCoeffs
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const direction nCmpts = pTraits<matrixType>::nComponents;
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direction localDir = dir;
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const GeometricField<matrixType, fvPatchField, volMesh>& psi = matrix.psi();
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const GeometricField<matrixType, fvPatchField, volMesh>& psi =
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matrix.psi();
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forAll(psi.boundaryField(), patchI)
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{
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const fvPatchField<matrixType>& pf = psi.boundaryField()[patchI];
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@ -373,7 +375,7 @@ void fvBlockMatrix<Type>::updateCouplingCoeffs
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template<class Type>
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template<class blockType, class fieldType>
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void fvBlockMatrix<Type>::insertBlock
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void Foam::fvBlockMatrix<Type>::insertBlock
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(
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const direction dirI,
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const direction dirJ,
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@ -471,7 +473,7 @@ void fvBlockMatrix<Type>::insertBlock
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template<class Type>
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template<class blockType, class fieldType>
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void fvBlockMatrix<Type>::insertBoundaryContributions
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void Foam::fvBlockMatrix<Type>::insertBoundaryContributions
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(
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const direction dirI,
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const direction dirJ,
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@ -561,39 +563,30 @@ void fvBlockMatrix<Type>::insertBoundaryContributions
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template<class Type>
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void fvBlockMatrix<Type>::insertCouplingDiagSource
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void Foam::fvBlockMatrix<Type>::insertCouplingDiag
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(
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const direction dirI,
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const direction dirJ,
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const fvScalarMatrix& matrix
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const scalarField& coeffIJ
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)
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{
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// Prepare the diagonal and source
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scalarField diag = matrix.diag();
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scalarField source = matrix.source();
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// Add boundary source contribution
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matrix.addBoundaryDiag(diag, 0);
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matrix.addBoundarySource(source, false);
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// Get reference to block diagonal of the block system
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typename CoeffField<Type>::squareTypeField& blockDiag =
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this->diag().asSquare();
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// Get reference to this source field of the block system
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Field<Type>& b = this->source();
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// Set off-diagonal coefficient
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forAll(diag, cellI)
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forAll(coeffIJ, cellI)
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{
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blockDiag[cellI](dirI, dirJ) += diag[cellI];
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b[cellI](dirI) += source[cellI];
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blockDiag[cellI](dirI, dirJ) += coeffIJ[cellI];
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}
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// Source compensation is done in function updateSourceCoupling()
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// after all coupling terms are added. HJ, 27/Apr/2015
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}
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template<class Type>
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void fvBlockMatrix<Type>::insertCouplingUpperLower
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void Foam::fvBlockMatrix<Type>::insertCouplingUpperLower
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(
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const direction dirI,
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const direction dirJ,
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@ -707,7 +700,7 @@ Foam::fvBlockMatrix<Type>::fvBlockMatrix
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template<class Type>
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template<class fieldType>
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void fvBlockMatrix<Type>::retrieveSolution
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void Foam::fvBlockMatrix<Type>::retrieveSolution
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(
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const direction dir,
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Field<fieldType>& xSingle
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@ -736,7 +729,7 @@ void fvBlockMatrix<Type>::retrieveSolution
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template<class Type>
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template<class matrixType>
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void fvBlockMatrix<Type>::insertEquation
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void Foam::fvBlockMatrix<Type>::insertEquation
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(
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const direction dir,
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fvMatrix<matrixType>& matrix
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@ -751,7 +744,7 @@ void fvBlockMatrix<Type>::insertEquation
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template<class Type>
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template<class blockType, class fieldType>
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void fvBlockMatrix<Type>::insertBlockCoupling
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void Foam::fvBlockMatrix<Type>::insertBlockCoupling
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(
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const direction dirI,
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const direction dirJ,
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@ -765,20 +758,22 @@ void fvBlockMatrix<Type>::insertBlockCoupling
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template<class Type>
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void fvBlockMatrix<Type>::insertEquationCoupling
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void Foam::fvBlockMatrix<Type>::insertEquationCoupling
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(
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const direction dirI,
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const direction dirJ,
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const fvScalarMatrix& matrix
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const scalarField& coeffIJ
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)
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{
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insertCouplingDiagSource(dirI, dirJ, matrix);
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insertCouplingUpperLower(dirI, dirJ, matrix);
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// Multiply coefficients by volume
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scalarField coeffIJVol = coeffIJ*psi_.mesh().V();
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insertCouplingDiag(dirI, dirJ, coeffIJVol);
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}
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template<class Type>
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void fvBlockMatrix<Type>::blockAdd
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void Foam::fvBlockMatrix<Type>::blockAdd
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(
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const direction dir,
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const scalarField& xSingle,
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@ -793,7 +788,7 @@ void fvBlockMatrix<Type>::blockAdd
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template<class Type>
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void fvBlockMatrix<Type>::updateSourceCoupling()
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void Foam::fvBlockMatrix<Type>::updateSourceCoupling()
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{
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// Eliminate off-diagonal block coefficients from the square diagonal
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// With this change, the segregated matrix can be assembled with complete
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@ -827,215 +822,7 @@ void fvBlockMatrix<Type>::updateSourceCoupling()
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template<class Type>
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void fvBlockMatrix<Type>::insertPicardTensor
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(
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const direction UEqnDir,
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const volVectorField& U,
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const surfaceScalarField& phi
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)
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{
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const direction nCmpts = pTraits<vector>::nComponents;
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direction localDirI = UEqnDir;
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direction localDirJ = UEqnDir;
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// Sanity check
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{
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const direction blockMatrixSize = pTraits<Type>::nComponents;
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if (nCmpts > blockMatrixSize)
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{
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FatalErrorIn
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(
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"void fvBlockMatrix<Type>::insertPicardTensor\n"
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"(\n"
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" const direction UEqnDir,\n"
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" const volVectorField& U,\n"
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" const surfaceScalarField& phi\n"
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")"
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) << "Trying to insert Picard tensor term into smaller "
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<< "fvBlockMatrix. Do you have momentum equation?"
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<< abort(FatalError);
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}
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}
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// Get weights for U which makes the implicit flux part
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const fvMesh& mesh = U.mesh();
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tmp<surfaceInterpolationScheme<vector> > tinterpScheme =
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fvc::scheme<vector>(mesh, U.name());
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tmp<surfaceScalarField> tweights = tinterpScheme().weights(U);
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const scalarField& wIn = tweights().internalField();
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// Calculate the Pi tensor. Consider hard coding the interpolation scheme to
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// correspond to the div(U, phi) interpolation scheme for consistency.
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// VV, 21/July/2014.
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const surfaceTensorField pi(mesh.Sf()*fvc::interpolate(U, phi, "(phi,U)"));
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// const surfaceTensorField pi(fvc::interpolate(U, phi, "(phi,U)")*mesh.Sf());
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const tensorField& piIn = pi.internalField();
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BlockLduSystem<vector, vector> piSystem(mesh);
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// Get references to ldu fields of pi block system always as square
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typename CoeffField<vector>::squareTypeField& piDiag =
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piSystem.diag().asSquare();
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typename CoeffField<vector>::squareTypeField& piUpper =
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piSystem.upper().asSquare();
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typename CoeffField<vector>::squareTypeField& piLower =
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piSystem.lower().asSquare();
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vectorField& piSource = piSystem.source();
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piLower = -wIn*piIn;
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piUpper = piLower + piIn;
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piSystem.negSumDiag();
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Info << "Diag coeff: " << piDiag[125] << nl
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<< "Lower coeff: " << piLower[125] << nl
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<< "Upper coeff: " << piUpper[125] << endl;
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// Boundary contributions - treated explicitly because of the problem with
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// inconsistent return type of internalCoeffs. VV, 21/July/2014.
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forAll(U.boundaryField(), patchI)
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{
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const fvPatchVectorField& Ub = U.boundaryField()[patchI];
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const fvPatch& patch = Ub.patch();
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const tensorField& pib = pi.boundaryField()[patchI];
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const fvsPatchScalarField& wb = tweights().boundaryField()[patchI];
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const unallocLabelList& fc = patch.faceCells();
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// const vectorField internalCoeffs(Ub.valueInternalCoeffs(wb));
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// Explicit diag boundary contribution
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// forAll(Ub, faceI)
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// {
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// piSource[fc[faceI]] -= pib[faceI] & Ub[faceI];
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// piSource[fc[faceI]] -= Ub[faceI] & pib[faceI];
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// }
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// Hard coded zeroGradient if patch does not fix value
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if (!U.boundaryField()[patchI].fixesValue())
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{
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forAll(Ub, faceI)
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{
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piDiag[fc[faceI]] += pib[faceI];
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}
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}
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// Coupled patches treated implicitly
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else if (patch.coupled())
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{
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typename CoeffField<vector>::squareTypeField& pipCoupleUpper =
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piSystem.coupleUpper()[patchI].asSquare();
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typename CoeffField<vector>::squareTypeField& pipCoupleLower =
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piSystem.coupleLower()[patchI].asSquare();
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const tensorField pcl = -wb*pib;
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const tensorField pcu = pcl + pib;
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// Coupling contributions
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pipCoupleLower -= pcl;
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pipCoupleUpper -= pcu;
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}
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else
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{
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const vectorField boundaryCoeffs(Ub.valueBoundaryCoeffs(wb));
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// Boundary contribution
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forAll(Ub, faceI)
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{
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piSource[fc[faceI]] -= pib[faceI] & boundaryCoeffs[faceI];
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}
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}
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}
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// Consider chucking the above code into fvm::picardTensor operator.
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// VV, 21/July/2014.
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// Finally add Picard piSystem into this fvBlockMatrix
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typename CoeffField<Type>::squareTypeField& blockDiag =
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this->diag().asSquare();
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typename CoeffField<Type>::squareTypeField& blockUpper =
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this->upper().asSquare();
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typename CoeffField<Type>::squareTypeField& blockLower =
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this->lower().asSquare();
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Field<Type>& blockSource = this->source();
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// Add diagonal, source, lower and upper
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for (direction cmptI = 0; cmptI < nCmpts; cmptI++)
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{
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for (direction cmptJ = 0; cmptJ < nCmpts; cmptJ++)
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{
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forAll(piDiag, cellI)
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{
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blockDiag[cellI](localDirI, localDirJ) +=
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piDiag[cellI](cmptI, cmptJ);
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// blockSource[cellI](localDirI, localDirJ) +=
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// piSource[cellI](cmptI, cmptJ);
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}
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forAll(piUpper, faceI)
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{
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blockUpper[faceI](localDirI, localDirJ) +=
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piUpper[faceI](cmptI, cmptJ);
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blockLower[faceI](localDirI, localDirJ) +=
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piLower[faceI](cmptI, cmptJ);
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}
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localDirJ++;
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}
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forAll(piSource, cellI)
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{
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blockSource[cellI](localDirI) += piSource[cellI](cmptI);
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}
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localDirI++;
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}
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// Reset local direction for coupling contributions
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localDirI = UEqnDir;
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localDirJ = UEqnDir;
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// Add coupling contributions
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forAll(U.boundaryField(), patchI)
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{
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if (U.boundaryField()[patchI].patch().coupled())
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{
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typename CoeffField<Type>::squareTypeField& pcoupleUpper =
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this->coupleUpper()[patchI].asSquare();
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typename CoeffField<Type>::squareTypeField& pcoupleLower =
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this->coupleLower()[patchI].asSquare();
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const typename CoeffField<vector>::squareTypeField& pipcu =
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piSystem.coupleUpper()[patchI].asSquare();
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const typename CoeffField<vector>::squareTypeField& pipcl =
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piSystem.coupleLower()[patchI].asSquare();
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for (direction cmptI = 0; cmptI < nCmpts; cmptI++)
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{
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for (direction cmptJ = 0; cmptJ < nCmpts; cmptJ++)
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{
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forAll(pipcu, faceI)
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{
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pcoupleUpper[faceI](localDirI, localDirJ) +=
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pipcu[faceI](cmptI, cmptJ);
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pcoupleLower[faceI](localDirI, localDirJ) +=
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pipcl[faceI](cmptI, cmptJ);
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}
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}
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}
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// Reset local directions for other patches
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localDirI = UEqnDir;
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localDirJ = UEqnDir;
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}
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}
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}
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template<class Type>
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Foam::BlockSolverPerformance<Type> fvBlockMatrix<Type>::solve
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Foam::BlockSolverPerformance<Type> Foam::fvBlockMatrix<Type>::solve
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(
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const dictionary& solverControls
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)
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@ -1057,7 +844,7 @@ Foam::BlockSolverPerformance<Type> fvBlockMatrix<Type>::solve
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template<class Type>
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Foam::BlockSolverPerformance<Type> fvBlockMatrix<Type>::solve()
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Foam::BlockSolverPerformance<Type> Foam::fvBlockMatrix<Type>::solve()
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{
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return solve(psi_.mesh().solutionDict().solverDict(psi_.name()));
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}
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@ -26,11 +26,12 @@ Class
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Description
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fvBlockMatrix is an extension of fvMatrix for block coupled types. It holds
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general insertion and retrieval tools for block coupling along with specific
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general insertion and retrieval tools for block coupling and specific
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functions for p-U coupling.
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Author
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Vuko Vukcevic, FMENA Zagreb.
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Update by Hrvoje Jasak
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SourceFiles
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fvBlockMatrix.C
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@ -112,14 +113,13 @@ class fvBlockMatrix
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// Insertion functions for fvScalarMatrix into off-diagonal positions
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// (coupling matrices)
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// These two functions are dubious. Reconsider. HJ, 17/July/2014.
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//- Insert coupling matrix diag and source into this fvBlockMatrix
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void insertCouplingDiagSource
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//- Insert coupling matrix diag element into this fvBlockMatrix
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void insertCouplingDiag
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(
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const direction dirI,
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const direction dirJ,
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const fvScalarMatrix& matrix
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const scalarField& coeffIJ
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);
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//- Insert coupling matrix lower and upper into this fvBlockMatrix
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@ -144,8 +144,8 @@ class fvBlockMatrix
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const bool incrementColumnDir
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);
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//- Insert source and coupling coeffs of BlockLduSystem (obtained by
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// implicit grad/div operator) into this fvBlockMatrix
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//- Insert source and coupling coeffs of BlockLduSystem
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// (eg. obtained by implicit grad/div operator)
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template<class blockType, class fieldType>
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void insertBoundaryContributions
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(
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@ -192,7 +192,7 @@ public:
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// Insertion and retrieval public tools
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//- Retrieve part of internal (solved) field from this fvBlockMatrix
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//- Retrieve part of internal field from this fvBlockMatrix
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template<class fieldType>
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void retrieveSolution
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(
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@ -220,12 +220,13 @@ public:
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);
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//- Insert scalar equation coupling into this fvBlockMatrix
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// Not tested: VV, 10/July/2014
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// Source compensation is done in function updateSourceCoupling()
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// after all coupling terms are added. HJ, 27/Apr/2015
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void insertEquationCoupling
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(
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const direction dirI,
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const direction dirJ,
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const fvScalarMatrix& matrix
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const scalarField& coeffIJ
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);
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//- Add field into block field
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@ -237,20 +238,11 @@ public:
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);
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//- Update coupling of block system.
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// Subtracts the block-coefficient coupling as specified by the user
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// from the source, leaving the implicit update given by
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// linearisation
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// Subtracts the block-coefficient coupling as specified by the
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// user from the source, leaving the implicit update given by
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// linearisation
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void updateSourceCoupling();
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//- Insert Picard tensor term that comes from Picard linearisation
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// of convection term in momentum equation. VV, 21/July/2014.
|
||||
void insertPicardTensor
|
||||
(
|
||||
const direction UEqnDir,
|
||||
const volVectorField& U,
|
||||
const surfaceScalarField& phi
|
||||
);
|
||||
|
||||
|
||||
// Solver calls for fvBlockMatrix
|
||||
|
||||
|
|
Reference in a new issue