mirror of
https://github.com/OPM/opm-simulators.git
synced 2025-02-25 18:55:30 -06:00
Apply Appleyard fixes to solven model
Tested on SPE5 and Model2 + co2
This commit is contained in:
@@ -401,6 +401,7 @@ namespace Opm {
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const V null;
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const V null;
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assert(null.size() == 0);
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assert(null.size() == 0);
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const V zero = V::Zero(nc);
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const V zero = V::Zero(nc);
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const V ones = V::Constant(nc,1.0);
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// Extract parts of dx corresponding to each part.
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// Extract parts of dx corresponding to each part.
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const V dp = subset(dx, Span(nc));
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const V dp = subset(dx, Span(nc));
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@@ -459,6 +460,9 @@ namespace Opm {
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}
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}
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if (has_solvent_){
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if (has_solvent_){
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maxVal = dss.abs().max(maxVal);
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maxVal = dss.abs().max(maxVal);
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// solvent is not added note that the so calculated
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// here is overwritten later
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//dso = dso - dss;
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}
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}
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maxVal = dso.abs().max(maxVal);
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maxVal = dso.abs().max(maxVal);
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@@ -488,6 +492,7 @@ namespace Opm {
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so = so_old - step * dso;
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so = so_old - step * dso;
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}
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}
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// solvent is not included in the adjustment for negative saturation
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auto ixg = sg < 0;
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auto ixg = sg < 0;
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for (int c = 0; c < nc; ++c) {
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for (int c = 0; c < nc; ++c) {
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if (ixg[c]) {
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if (ixg[c]) {
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@@ -515,10 +520,18 @@ namespace Opm {
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}
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}
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}
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}
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auto ixs = ss < 0;
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for (int c = 0; c < nc; ++c) {
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if (ixs[c]) {
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ss[c] = 0;
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}
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}
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// The oil saturation is defined to
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// The oil saturation is defined to
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// fill the rest of the pore space.
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// fill the rest of the pore space.
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// For convergence reasons oil saturations
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// For convergence reasons oil saturations
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// is included in the appelyard chopping.
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// is included in the appelyard chopping
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so = V::Constant(nc,1.0) - sw - sg - ss;
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so = V::Constant(nc,1.0) - sw - sg - ss;
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// Update rs and rv
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// Update rs and rv
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@@ -527,15 +540,17 @@ namespace Opm {
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if (has_disgas_) {
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if (has_disgas_) {
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const V rs_old = Eigen::Map<const V>(&reservoir_state.gasoilratio()[0], nc);
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const V rs_old = Eigen::Map<const V>(&reservoir_state.gasoilratio()[0], nc);
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const V drs = Base::isRs_ * dxvar;
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const V drs = Base::isRs_ * dxvar;
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const V drs_limited = sign(drs) * drs.abs().min(rs_old.abs()*drmaxrel);
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const V drs_limited = sign(drs) * drs.abs().min( (rs_old.abs()*drmaxrel).max( ones*1.0));
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rs = rs_old - drs_limited;
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rs = rs_old - drs_limited;
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rs = rs.max(zero);
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}
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}
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V rv;
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V rv;
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if (has_vapoil_) {
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if (has_vapoil_) {
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const V rv_old = Eigen::Map<const V>(&reservoir_state.rv()[0], nc);
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const V rv_old = Eigen::Map<const V>(&reservoir_state.rv()[0], nc);
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const V drv = Base::isRv_ * dxvar;
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const V drv = Base::isRv_ * dxvar;
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const V drv_limited = sign(drv) * drv.abs().min(rv_old.abs()*drmaxrel);
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const V drv_limited = sign(drv) * drv.abs().min( (rv_old.abs()*drmaxrel).max( ones*1e-6));
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rv = rv_old - drv_limited;
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rv = rv_old - drv_limited;
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rv = rv.max(zero);
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}
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}
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// Sg is used as primal variable for water only cells.
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// Sg is used as primal variable for water only cells.
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@@ -560,11 +575,18 @@ namespace Opm {
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for (int c = 0; c < nc; ++c) {
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for (int c = 0; c < nc; ++c) {
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if (useSg[c]) {
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if (useSg[c]) {
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rs[c] = rsSat[c];
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rs[c] = rsSat[c];
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if (watOnly[c]) {
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so[c] = 0;
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sg[c] = 0;
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ss[c] = 0;
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rs[c] = 0;
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}
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} else {
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} else {
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hydroCarbonState[c] = HydroCarbonState::OilOnly;
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hydroCarbonState[c] = HydroCarbonState::OilOnly;
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}
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}
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}
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}
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rs = rs.min(rsSat);
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}
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}
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// phase transitions so <-> rv
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// phase transitions so <-> rv
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@@ -587,10 +609,19 @@ namespace Opm {
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for (int c = 0; c < nc; ++c) {
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for (int c = 0; c < nc; ++c) {
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if (useSg[c]) {
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if (useSg[c]) {
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rv[c] = rvSat[c];
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rv[c] = rvSat[c];
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if (watOnly[c]) {
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so[c] = 0;
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sg[c] = 0;
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ss[c] = 0;
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rv[c] = 0;
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}
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} else {
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} else {
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hydroCarbonState[c] = HydroCarbonState::GasOnly;
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hydroCarbonState[c] = HydroCarbonState::GasOnly;
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}
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}
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}
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}
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rv = rv.min(rvSat);
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}
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}
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// Update the reservoir_state
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// Update the reservoir_state
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@@ -623,7 +654,7 @@ namespace Opm {
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std::copy(&rv[0], &rv[0] + nc, reservoir_state.rv().begin());
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std::copy(&rv[0], &rv[0] + nc, reservoir_state.rv().begin());
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}
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}
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wellModel().updateWellState(dwells, dpMaxRel(), well_state);
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wellModel().updateWellState(dwells, Base::dbhpMaxRel(), well_state);
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for( auto w = 0; w < wells().number_of_wells; ++w ) {
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for( auto w = 0; w < wells().number_of_wells; ++w ) {
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if (wells().type[w] == INJECTOR) {
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if (wells().type[w] == INJECTOR) {
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