202 PrimaryVariables& nextValue,
203 const PrimaryVariables& currentValue,
204 const EqVector& update,
205 const EqVector& currentResidual)
207 static constexpr bool enableSolvent = Indices::solventSaturationIdx >= 0;
208 static constexpr bool enableExtbo = Indices::zFractionIdx >= 0;
209 static constexpr bool enablePolymer = Indices::polymerConcentrationIdx >= 0;
210 static constexpr bool enablePolymerWeight = Indices::polymerMoleWeightIdx >= 0;
211 static constexpr bool enableEnergy = Indices::temperatureIdx >= 0;
212 static constexpr bool enableFoam = Indices::foamConcentrationIdx >= 0;
213 static constexpr bool enableBrine = Indices::saltConcentrationIdx >= 0;
214 static constexpr bool enableBioeffects = Indices::biofilmVolumeFractionIdx >= 0;
215 static constexpr bool enableMICP = Indices::enableMICP;
217 currentValue.checkDefined();
218 Valgrind::CheckDefined(update);
219 Valgrind::CheckDefined(currentResidual);
222 Scalar deltaSw = 0.0;
223 Scalar deltaSo = 0.0;
224 Scalar deltaSg = 0.0;
225 Scalar deltaSs = 0.0;
227 if (currentValue.primaryVarsMeaningWater() == PrimaryVariables::WaterMeaning::Sw)
229 deltaSw = update[Indices::waterSwitchIdx];
232 if (currentValue.primaryVarsMeaningGas() == PrimaryVariables::GasMeaning::Sg)
234 deltaSg = update[Indices::compositionSwitchIdx];
237 if (currentValue.primaryVarsMeaningSolvent() == PrimaryVariables::SolventMeaning::Ss) {
238 deltaSs = update[Indices::solventSaturationIdx];
243 Scalar maxSatDelta = std::max(std::abs(deltaSg), std::abs(deltaSo));
244 maxSatDelta = std::max(maxSatDelta, std::abs(deltaSw));
245 maxSatDelta = std::max(maxSatDelta, std::abs(deltaSs));
249 Scalar satAlpha = 1.0;
250 if (maxSatDelta > bparams_.dsMax_) {
251 satAlpha = bparams_.dsMax_ / maxSatDelta;
254 for (
int pvIdx = 0; pvIdx < int(numEq); ++pvIdx) {
261 Scalar delta = update[pvIdx];
264 if (pvIdx == Indices::pressureSwitchIdx) {
265 if (std::abs(delta) > bparams_.dpMaxRel_ * currentValue[pvIdx]) {
266 delta =
signum(delta) * bparams_.dpMaxRel_ * currentValue[pvIdx];
270 else if (pvIdx == Indices::waterSwitchIdx)
271 if (currentValue.primaryVarsMeaningWater() == PrimaryVariables::WaterMeaning::Sw) {
276 if (delta > currentValue[ Indices::waterSwitchIdx]) {
277 delta = currentValue[ Indices::waterSwitchIdx];
280 else if (pvIdx == Indices::compositionSwitchIdx) {
286 if (currentValue.primaryVarsMeaningGas() == PrimaryVariables::GasMeaning::Sg) {
291 if (delta > currentValue[Indices::compositionSwitchIdx]) {
292 delta = currentValue[Indices::compositionSwitchIdx];
296 else if (enableSolvent && pvIdx == Indices::solventSaturationIdx) {
298 if (currentValue.primaryVarsMeaningSolvent() == PrimaryVariables::SolventMeaning::Ss) {
303 if (delta > currentValue[Indices::solventSaturationIdx]) {
304 delta = currentValue[Indices::solventSaturationIdx];
308 else if (enableExtbo && pvIdx == Indices::zFractionIdx) {
310 const auto& curr = currentValue[Indices::zFractionIdx];
311 delta = std::clamp(delta, curr - Scalar{1.0}, curr);
313 else if (enablePolymerWeight && pvIdx == Indices::polymerMoleWeightIdx) {
314 const double sign = delta >= 0. ? 1. : -1.;
317 const Scalar maxMolarWeightChange = 100.0;
318 delta = sign * std::min(std::abs(delta), maxMolarWeightChange);
321 else if (enableEnergy && pvIdx == Indices::temperatureIdx) {
322 const double sign = delta >= 0. ? 1. : -1.;
323 delta = sign * std::min(std::abs(delta), bparams_.maxTempChange_);
325 else if (enableBrine && pvIdx == Indices::saltConcentrationIdx &&
326 enableSaltPrecipitation &&
327 currentValue.primaryVarsMeaningBrine() == PrimaryVariables::BrineMeaning::Sp)
329 const Scalar maxSaltSaturationChange = 0.1;
330 const Scalar sign = delta >= 0. ? 1. : -1.;
331 delta = sign * std::min(std::abs(delta), maxSaltSaturationChange);
335 nextValue[pvIdx] = currentValue[pvIdx] - delta;
338 if (enableSolvent && pvIdx == Indices::solventSaturationIdx) {
339 if (currentValue.primaryVarsMeaningSolvent() == PrimaryVariables::SolventMeaning::Ss) {
340 nextValue[pvIdx] = std::min(std::max(nextValue[pvIdx], Scalar{0.0}), Scalar{1.0});
345 if (enableExtbo && pvIdx == Indices::zFractionIdx) {
346 nextValue[pvIdx] = std::min(std::max(nextValue[pvIdx], Scalar{0.0}), Scalar{1.0});
350 if (enablePolymer && pvIdx == Indices::polymerConcentrationIdx) {
351 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
354 if (enablePolymerWeight && pvIdx == Indices::polymerMoleWeightIdx) {
355 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
356 const double polymerConcentration = nextValue[Indices::polymerConcentrationIdx];
357 if (polymerConcentration < 1.e-10) {
358 nextValue[pvIdx] = 0.0;
363 if (enableFoam && pvIdx == Indices::foamConcentrationIdx) {
364 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
367 if (enableBrine && pvIdx == Indices::saltConcentrationIdx) {
369 if (!enableSaltPrecipitation ||
370 currentValue.primaryVarsMeaningBrine() == PrimaryVariables::BrineMeaning::Cs)
372 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
375 if (enableSaltPrecipitation &&
376 currentValue.primaryVarsMeaningBrine() == PrimaryVariables::BrineMeaning::Sp)
378 nextValue[pvIdx] = std::min(nextValue[pvIdx], Scalar{1.0-1.e-8});
383 if (enableEnergy && pvIdx == Indices::temperatureIdx) {
384 nextValue[pvIdx] = std::clamp(nextValue[pvIdx], bparams_.tempMin_, bparams_.tempMax_);
387 if (pvIdx == Indices::pressureSwitchIdx) {
388 nextValue[pvIdx] = std::clamp(nextValue[pvIdx], bparams_.pressMin_, bparams_.pressMax_);
396 if constexpr (enableBioeffects) {
397 if (pvIdx == Indices::microbialConcentrationIdx) {
398 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
400 if (pvIdx == Indices::biofilmVolumeFractionIdx) {
401 nextValue[pvIdx] = std::clamp(nextValue[pvIdx],
403 this->problem().referencePorosity(globalDofIdx, 0) - 1e-8);
405 if constexpr (enableMICP) {
406 if (pvIdx == Indices::oxygenConcentrationIdx) {
407 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
409 if (pvIdx == Indices::ureaConcentrationIdx) {
410 nextValue[pvIdx] = std::max(nextValue[pvIdx], Scalar{0.0});
412 if (pvIdx == Indices::calciteVolumeFractionIdx) {
413 nextValue[pvIdx] = std::clamp(nextValue[pvIdx], Scalar{0.0},
414 this->problem().referencePorosity(globalDofIdx, 0) - 1e-8);
423 if (wasSwitched_[globalDofIdx]) {
424 wasSwitched_[globalDofIdx] = nextValue.adaptPrimaryVariables(this->problem(),
426 bparams_.waterSaturationMax_,
427 bparams_.waterOnlyThreshold_,
428 bparams_.priVarOscilationThreshold_);
431 wasSwitched_[globalDofIdx] = nextValue.adaptPrimaryVariables(this->problem(),
433 bparams_.waterSaturationMax_,
434 bparams_.waterOnlyThreshold_);
437 if (wasSwitched_[globalDofIdx]) {
438 ++numPriVarsSwitched_;
440 if (bparams_.projectSaturations_) {
441 nextValue.chopAndNormalizeSaturations();
444 nextValue.checkDefined();