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Updated computeTransportSource() and wellsToSrc() to match changes in Wells data structure.
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@ -320,8 +320,12 @@ namespace Opm
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// Well contributions.
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if (wells) {
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const int nw = wells->number_of_wells;
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const int np = wells->number_of_phases;
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if (np != 2) {
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THROW("computeTransportSource() requires a 2 phase case.");
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}
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for (int w = 0; w < nw; ++w) {
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const double* zfrac = wells->zfrac + 3*w;
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const double* comp_frac = wells->comp_frac + np*w;
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for (int perf = wells->well_connpos[w]; perf < wells->well_connpos[w + 1]; ++perf) {
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const int perf_cell = wells->well_cells[perf];
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double perf_rate = well_perfrates[perf];
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@ -331,8 +335,8 @@ namespace Opm
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std::cout << "**** Warning: crossflow in well with index " << w << " ignored." << std::endl;
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perf_rate = 0.0;
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} else {
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ASSERT(std::fabs(zfrac[WATER] + zfrac[OIL] - 1.0) < 1e-6);
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perf_rate *= zfrac[WATER];
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ASSERT(std::fabs(comp_frac[0] + comp_frac[1] - 1.0) < 1e-6);
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perf_rate *= comp_frac[0];
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}
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}
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transport_src[perf_cell] += perf_rate;
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@ -400,18 +404,22 @@ namespace Opm
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/// single-perforation.
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void wellsToSrc(const Wells& wells, const int num_cells, std::vector<double>& src)
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{
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const int np = wells.number_of_phases;
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if (np != 2) {
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THROW("wellsToSrc() requires a 2 phase case.");
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}
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src.resize(num_cells);
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for (int w = 0; w < wells.number_of_wells; ++w) {
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if (wells.ctrls[w]->num != 1) {
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THROW("In wellsToSrc(): well has more than one control.");
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}
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if (wells.ctrls[w]->type[0] != RATE) {
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THROW("In wellsToSrc(): well is BHP, not RATE.");
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if (wells.ctrls[w]->type[0] != RESERVOIR_RATE) {
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THROW("In wellsToSrc(): well is something other than RESERVOIR_RATE.");
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}
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if (wells.well_connpos[w+1] - wells.well_connpos[w] != 1) {
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THROW("In wellsToSrc(): well has multiple perforations.");
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}
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const double flow = wells.ctrls[w]->target[0];
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const double flow = wells.ctrls[w]->target[0] * wells.ctrls[w]->distr[0];
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const double cell = wells.well_cells[wells.well_connpos[w]];
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src[cell] = flow;
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}
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@ -522,7 +530,7 @@ namespace Opm
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well_rate_total += perf_rate;
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if (perf_rate > 0.0) {
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// Injection.
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well_rate_water += perf_rate*wells.zfrac[3*w + WATER];
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well_rate_water += perf_rate*wells.comp_frac[0];
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} else {
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// Production.
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const int cell = wells.well_cells[perf];
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