56 lines
1.6 KiB
C
56 lines
1.6 KiB
C
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if(CPtr)
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{
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volScalarField& C = *CPtr;
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const dimensionedScalar& D
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= interface.surfactant().surfactBulkDiffusion();
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scalar ka = interface.surfactant().surfactAdsorptionCoeff().value();
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scalar kb = interface.surfactant().surfactDesorptionCoeff().value();
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scalar CsInf = interface.surfactant().surfactSaturatedConc().value();
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scalarField& Cs =
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interface.surfactantConcentration().internalField();
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scalarField CP =
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C.boundaryField()[interface.aPatchID()].patchInternalField();
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const scalarField& Cfs = C.boundaryField()[interface.aPatchID()];
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scalarField dn = 1.0/mesh.boundary()[interface.aPatchID()].deltaCoeffs();
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if
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(
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C.boundaryField()[interface.aPatchID()].type()
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== fixedGradientFvPatchScalarField::typeName
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)
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{
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fixedGradientFvPatchScalarField& CA =
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refCast<fixedGradientFvPatchScalarField>
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(
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C.boundaryField()[interface.aPatchID()]
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);
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CA.gradient() = (ka*kb*Cs - ka*(CsInf-Cs)*Cfs)/D.value();
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}
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else
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{
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FatalErrorIn(args.executable())
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<< "Bulk concentration boundary condition "
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<< "at the freeSurface patch is not "
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<< fixedGradientFvPatchScalarField::typeName
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<< exit(FatalError);
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}
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solve
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(
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fvm::ddt(C)
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+ fvm::div(phi - fvc::meshPhi(rho,U), C, "div(phi,C)")
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- fvm::laplacian(D, C, "laplacian(D,C)")
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);
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CP = C.boundaryField()[interface.aPatchID()].patchInternalField();
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// Info << gMax(CP) << ", "<< gAverage(CP) << endl;
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}
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