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minor update
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@ -121,7 +121,7 @@ void Foam::ReactingParcel<ParcelType>::correctSurfaceValues
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return;
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}
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// Far field gas molar fractions
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// Far field carrier molar fractions
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scalarField Xinf(Y_.size());
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forAll(Xinf, i)
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@ -135,7 +135,7 @@ void Foam::ReactingParcel<ParcelType>::correctSurfaceValues
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// Molar fraction of far field species at particle surface
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const scalar Xsff = 1.0 - min(sum(Cs)*specie::RR*this->T_/pc_, 1.0);
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// Surface gas total molar concentration
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// Surface carrier total molar concentration
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const scalar CsTot = pc_/(specie::RR*this->T_);
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// Surface carrier composition (molar fraction)
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@ -171,10 +171,10 @@ void Foam::ReactingParcel<ParcelType>::correctSurfaceValues
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cbrt(td.cloud().mcCarrierThermo().speciesData()[i].W());
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rhos += Xs[i]*td.cloud().mcCarrierThermo().speciesData()[i].W();
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cps += Xs[i]*td.cloud().mcCarrierThermo().speciesData()[i].Cp(T);
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mus += Ys[i]*sqrtW*td.cloud().mcCarrierThermo().speciesData()[i].mu(T);
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kappa +=
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Ys[i]*cbrtW*td.cloud().mcCarrierThermo().speciesData()[i].kappa(T);
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cps += Xs[i]*td.cloud().mcCarrierThermo().speciesData()[i].Cp(T);
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sumYiSqrtW += Ys[i]*sqrtW;
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sumYiCbrtW += Ys[i]*cbrtW;
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@ -417,7 +417,7 @@ void Foam::ReactingParcel<ParcelType>::calcPhaseChange
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const scalarField& YComponents,
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scalarField& dMassPC,
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scalar& Sh,
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scalar& dhsTrans,
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scalar& dhsTrans, // TODO: not used
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scalar& N,
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scalar& NCpW,
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scalarField& Cs
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