diff --git a/applications/solvers/multiphase/compressibleTwoPhaseEulerFoam/TEqns.H b/applications/solvers/multiphase/compressibleTwoPhaseEulerFoam/TEqns.H index 0af1e179462850f275779cacfe6f82bf85cb160a..861590b235bf2577f2a0161350263d1a1f90159c 100644 --- a/applications/solvers/multiphase/compressibleTwoPhaseEulerFoam/TEqns.H +++ b/applications/solvers/multiphase/compressibleTwoPhaseEulerFoam/TEqns.H @@ -11,7 +11,7 @@ == heatTransferCoeff*T2/Cp1/rho1 - fvm::Sp(heatTransferCoeff/Cp1/rho1, T1) - + alpha1*(dpdt - (fvc::ddt(rho1, K1) + fvc::div(phi1, K1)))/Cp1/rho1 + + alpha1*(dpdt/rho1 - (fvc::ddt(K1) + fvc::div(phi1, K1)))/Cp1 ); fvScalarMatrix T2Eqn @@ -23,7 +23,7 @@ == heatTransferCoeff*T1/Cp2/rho2 - fvm::Sp(heatTransferCoeff/Cp2/rho2, T2) - + alpha2*(dpdt - (fvc::ddt(rho2, K2) + fvc::div(phi2, K2)))/Cp2/rho2 + + alpha2*(dpdt/rho2 - (fvc::ddt(K2) + fvc::div(phi2, K2)))/Cp2 ); T1Eqn.relax(); diff --git a/tutorials/compressible/rhoPorousMRFSimpleFoam/angledDuctImplicit/constant/polyMesh/boundary b/tutorials/compressible/rhoPorousMRFSimpleFoam/angledDuctImplicit/constant/polyMesh/boundary index a664893343e7216491ca9913ee0171ee31980aba..0abd1608aba0dcb6aa66c9488133a3c4b51c7588 100644 --- a/tutorials/compressible/rhoPorousMRFSimpleFoam/angledDuctImplicit/constant/polyMesh/boundary +++ b/tutorials/compressible/rhoPorousMRFSimpleFoam/angledDuctImplicit/constant/polyMesh/boundary @@ -8,7 +8,7 @@ FoamFile { version 2.0; - format binary; + format ascii; class polyBoundaryMesh; location "constant/polyMesh"; object boundary; diff --git a/tutorials/multiphase/compressibleTwoPhaseEulerFoam/bubbleColumn/system/fvSchemes b/tutorials/multiphase/compressibleTwoPhaseEulerFoam/bubbleColumn/system/fvSchemes index 93b115565da213bde2ddf9929ba567fb6081ec6e..34b14edfcce7676bc1e185e87f785fc2ab086c56 100644 --- a/tutorials/multiphase/compressibleTwoPhaseEulerFoam/bubbleColumn/system/fvSchemes +++ b/tutorials/multiphase/compressibleTwoPhaseEulerFoam/bubbleColumn/system/fvSchemes @@ -44,8 +44,8 @@ divSchemes div(phi,Theta) Gauss limitedLinear 1; div(phid1,p) Gauss upwind; div(phid2,p) Gauss upwind; - div(phi1,K1) Gauss limitedLinearV 1; - div(phi2,K2) Gauss limitedLinearV 1; + div(phi1,K1) Gauss limitedLinear 1; + div(phi2,K2) Gauss limitedLinear 1; } laplacianSchemes diff --git a/tutorials/multiphase/compressibleTwoPhaseEulerFoam/fluidisedBed/system/fvSchemes b/tutorials/multiphase/compressibleTwoPhaseEulerFoam/fluidisedBed/system/fvSchemes index 27ba67b86d244f6cea2d70740fc81486a5705f18..4412903f93c701b6ea21cf63582d427802bed467 100644 --- a/tutorials/multiphase/compressibleTwoPhaseEulerFoam/fluidisedBed/system/fvSchemes +++ b/tutorials/multiphase/compressibleTwoPhaseEulerFoam/fluidisedBed/system/fvSchemes @@ -44,8 +44,8 @@ divSchemes div((alpha2*Rc2)) Gauss linear; div(phid1,p) Gauss upwind; div(phid2,p) Gauss upwind; - div(phi1,K1) Gauss limitedLinearV 1; - div(phi2,K2) Gauss limitedLinearV 1; + div(phi1,K1) Gauss limitedLinear 1; + div(phi2,K2) Gauss limitedLinear 1; } laplacianSchemes