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Functions | |
difft | correctBoundaryConditions () |
tmp< fvScalarMatrix > | tdecEq1 (fvm::div(phi, dec1)==fvm::laplacian(turbulence->nu()/Sc+difft, dec1) - fvm::Sp(decLam1, dec1)+decBeta1 *SP *flux) |
decEq1 | relax () |
tmp< fvScalarMatrix > | tdecEq2 (fvm::div(phi, dec2)==fvm::laplacian(turbulence->nu()/Sc+difft, dec2) - fvm::Sp(decLam2, dec2)+decBeta2 *SP *flux) |
tmp< fvScalarMatrix > | tdecEq3 (fvm::div(phi, dec3)==fvm::laplacian(turbulence->nu()/Sc+difft, dec3) - fvm::Sp(decLam3, dec3)+decBeta3 *SP *flux) |
Variables | |
fvScalarMatrix & | decEq1 = tdecEq1.ref() |
dec1residual = decEq1.solve().initialResidual() | |
fvScalarMatrix & | decEq2 = tdecEq2.ref() |
dec2residual = decEq2.solve().initialResidual() | |
fvScalarMatrix & | decEq3 = tdecEq3.ref() |
dec3residual = decEq3.solve().initialResidual() | |
difft correctBoundaryConditions | ( | ) |
precEq8 relax | ( | ) |
tmp< fvScalarMatrix > tdecEq1 | ( | fvm::div(phi, dec1) | = =fvm::laplacian(turbulence->nu()/Sc+difft, dec1) - fvm::Sp(decLam1, dec1)+decBeta1 *SP *flux | ) |
tmp< fvScalarMatrix > tdecEq2 | ( | fvm::div(phi, dec2) | = =fvm::laplacian(turbulence->nu()/Sc+difft, dec2) - fvm::Sp(decLam2, dec2)+decBeta2 *SP *flux | ) |
tmp< fvScalarMatrix > tdecEq3 | ( | fvm::div(phi, dec3) | = =fvm::laplacian(turbulence->nu()/Sc+difft, dec3) - fvm::Sp(decLam3, dec3)+decBeta3 *SP *flux | ) |
dec1residual = decEq1.solve().initialResidual() |
dec2residual = decEq2.solve().initialResidual() |
dec3residual = decEq3.solve().initialResidual() |