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STYLE: minor typo in comments
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@ -271,7 +271,7 @@ void PDRkEpsilon::correct()
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volScalarField G("RASModel::G", mut_*(tgradU() && dev(twoSymm(tgradU()))));
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volScalarField G("RASModel::G", mut_*(tgradU() && dev(twoSymm(tgradU()))));
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tgradU.clear();
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tgradU.clear();
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Add the blockage generation term so that it is included consistently
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// Add the blockage generation term so that it is included consistently
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@ -341,7 +341,7 @@ void LRR::correct()
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -379,7 +379,7 @@ void LaunderGibsonRSTM::correct()
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -309,7 +309,7 @@ void RNGkEpsilon::correct()
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volScalarField R =
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volScalarField R =
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((eta*(-eta/eta0_ + scalar(1)))/(beta_*eta3 + scalar(1)));
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((eta*(-eta/eta0_ + scalar(1)))/(beta_*eta3 + scalar(1)));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -282,7 +282,7 @@ void kEpsilon::correct()
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volScalarField G("RASModel::G", mut_*(tgradU() && dev(twoSymm(tgradU()))));
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volScalarField G("RASModel::G", mut_*(tgradU() && dev(twoSymm(tgradU()))));
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tgradU.clear();
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tgradU.clear();
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -317,7 +317,7 @@ void realizableKE::correct()
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volScalarField G("RASModel::G", mut_*(gradU && dev(twoSymm(gradU))));
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volScalarField G("RASModel::G", mut_*(gradU && dev(twoSymm(gradU))));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -301,7 +301,7 @@ void LRR::correct()
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -343,7 +343,7 @@ void LaunderGibsonRSTM::correct()
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volSymmTensorField P = -twoSymm(R_ & fvc::grad(U_));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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volScalarField G("RASModel::G", 0.5*mag(tr(P)));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -341,7 +341,7 @@ void LienCubicKE::correct()
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Cmu_*sqr(k_)/epsilon_*S2 - (nonlinearStress_ && gradU_)
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Cmu_*sqr(k_)/epsilon_*S2 - (nonlinearStress_ && gradU_)
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);
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);
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -256,7 +256,7 @@ void RNGkEpsilon::correct()
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volScalarField R =
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volScalarField R =
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((eta*(scalar(1) - eta/eta0_))/(scalar(1) + beta_*eta*sqr(eta)));
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((eta*(scalar(1) - eta/eta0_))/(scalar(1) + beta_*eta*sqr(eta)));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -219,7 +219,7 @@ void kEpsilon::correct()
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volScalarField G("RASModel::G", nut_*2*magSqr(symm(fvc::grad(U_))));
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volScalarField G("RASModel::G", nut_*2*magSqr(symm(fvc::grad(U_))));
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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// Dissipation equation
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// Dissipation equation
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@ -277,7 +277,7 @@ void realizableKE::correct()
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volScalarField G("RASModel::G", nut_*S2);
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volScalarField G("RASModel::G", nut_*S2);
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// Update espsilon and G at the wall
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// Update epsilon and G at the wall
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epsilon_.boundaryField().updateCoeffs();
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epsilon_.boundaryField().updateCoeffs();
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