32 template<
class CloudType>
40 volatileData_(this->coeffDict().
lookup(
"volatileData")),
41 YVolatile0_(volatileData_.size()),
42 volatileToGasMap_(volatileData_.size()),
43 residualCoeff_(this->coeffDict().getScalar(
"residualCoeff"))
45 if (volatileData_.empty())
48 <<
"Devolatilisation model selected, but no volatiles defined"
53 Info<<
"Participating volatile species:" <<
endl;
56 const label idGas = owner.composition().idGas();
57 const scalar YGasTot = owner.composition().YMixture0()[idGas];
58 const scalarField& YGas = owner.composition().Y0(idGas);
61 const word& specieName = volatileData_[i].first();
62 const label
id = owner.composition().localId(idGas, specieName);
63 volatileToGasMap_[i] = id;
64 YVolatile0_[i] = YGasTot*YGas[id];
66 Info<<
" " << specieName <<
": particle mass fraction = "
67 << YVolatile0_[i] <<
endl;
73 template<
class CloudType>
76 const ConstantRateDevolatilisation<CloudType>& dm
80 volatileData_(dm.volatileData_),
81 YVolatile0_(dm.YVolatile0_),
82 volatileToGasMap_(dm.volatileToGasMap_),
83 residualCoeff_(dm.residualCoeff_)
89 template<
class CloudType>
96 template<
class CloudType>
114 const label
id = volatileToGasMap_[i];
115 const scalar massVolatile0 = mass0*YVolatile0_[i];
116 const scalar massVolatile = mass*YGasEff[id];
119 done = done && (massVolatile <= residualCoeff_*massVolatile0);
122 const scalar A0 = volatileData_[i].second();
125 dMassDV[id] =
min(dt*A0*massVolatile0, massVolatile);
128 if (done && canCombust != -1)