22 #ifndef OPM_AQUIFERANALYTICAL_HEADER_INCLUDED 23 #define OPM_AQUIFERANALYTICAL_HEADER_INCLUDED 25 #include <dune/grid/common/partitionset.hh> 27 #include <opm/common/ErrorMacros.hpp> 29 #include <opm/input/eclipse/EclipseState/Aquifer/Aquancon.hpp> 31 #include <opm/material/common/MathToolbox.hpp> 32 #include <opm/material/densead/Evaluation.hpp> 33 #include <opm/material/densead/Math.hpp> 34 #include <opm/material/fluidstates/BlackOilFluidState.hpp> 39 #include <opm/output/data/Aquifer.hpp> 41 #include <opm/simulators/aquifers/AquiferInterface.hpp> 42 #include <opm/simulators/utils/DeferredLoggingErrorHelpers.hpp> 54 template <
typename TypeTag>
67 static constexpr EnergyModules energyModuleType = getPropValue<TypeTag, Properties::EnergyModuleType>();
68 static constexpr
bool enableBrine = getPropValue<TypeTag, Properties::EnableBrine>();
69 enum { enableVapwat = getPropValue<TypeTag, Properties::EnableVapwat>() };
70 enum { has_disgas_in_water = getPropValue<TypeTag, Properties::EnableDisgasInWater>() };
71 static constexpr
bool enableSolvent = getPropValue<TypeTag, Properties::EnableSolvent>();
73 enum { enableSaltPrecipitation = getPropValue<TypeTag, Properties::EnableSaltPrecipitation>() };
77 static constexpr
int numEq = BlackoilIndices::numEq;
79 using FluidState = BlackOilFluidState<Eval,
81 energyModuleType != EnergyModules::NoTemperature,
82 energyModuleType == EnergyModules::FullyImplicitThermal,
83 BlackoilIndices::gasEnabled,
86 enableSaltPrecipitation,
89 BlackoilIndices::numPhases>;
93 const std::vector<Aquancon::AquancCell>& connections,
94 const Simulator& simulator)
96 , connections_(connections)
98 this->initializeConnectionMappings();
101 void computeFaceAreaFraction(
const std::vector<Scalar>& total_face_area)
override 103 assert (total_face_area.size() >=
static_cast<typename std::vector<Scalar>::size_type
>(this->aquiferID()));
105 const auto tfa = total_face_area[this->aquiferID() - 1];
106 const auto eps_sqrt = std::sqrt(std::numeric_limits<Scalar>::epsilon());
108 if (tfa < eps_sqrt) {
109 this->alphai_.assign(this->size(), Scalar{0});
112 std::ranges::transform(this->faceArea_connected_, this->alphai_.begin(),
113 [tfa](
const Scalar area)
114 {
return area / tfa; });
117 this->area_fraction_ = this->totalFaceArea() / tfa;
120 Scalar totalFaceArea()
const override 122 return this->total_face_area_;
125 void initFromRestart(
const data::Aquifers& aquiferSoln)
override 127 auto xaqPos = aquiferSoln.find(this->aquiferID());
128 if (xaqPos == aquiferSoln.end())
131 this->assignRestartData(xaqPos->second);
133 this->W_flux_ = xaqPos->second.volume * this->area_fraction_;
134 this->pa0_ = xaqPos->second.initPressure;
136 this->solution_set_from_restart_ =
true;
139 void initialSolutionApplied()
override 144 void beginTimeStep()
override 146 ElementContext elemCtx(this->simulator_);
147 OPM_BEGIN_PARALLEL_TRY_CATCH();
149 for (
const auto& elem : elements(this->simulator_.gridView())) {
150 elemCtx.updatePrimaryStencil(elem);
152 const int cellIdx = elemCtx.globalSpaceIndex(0, 0);
153 const int idx = cellToConnectionIdx_[cellIdx];
157 elemCtx.updateIntensiveQuantities(0);
158 const auto& iq = elemCtx.intensiveQuantities(0, 0);
159 pressure_previous_[idx] = getValue(iq.fluidState().pressure(this->phaseIdx_()));
162 OPM_END_PARALLEL_TRY_CATCH(
"AquiferAnalytical::beginTimeStep() failed: ",
163 this->simulator_.vanguard().grid().comm());
166 void addToSource(RateVector& rates,
167 const unsigned cellIdx,
168 const unsigned timeIdx)
override 170 const auto& model = this->simulator_.model();
172 const int idx = this->cellToConnectionIdx_[cellIdx];
176 const auto& intQuants = model.intensiveQuantities(cellIdx, timeIdx);
179 this->updateCellPressure(this->pressure_current_, idx, intQuants);
180 this->calculateInflowRate(idx, this->simulator_);
182 rates[BlackoilIndices::conti0EqIdx + compIdx_()]
183 += this->Qai_[idx] / model.dofTotalVolume(cellIdx);
185 if constexpr (energyModuleType == EnergyModules::FullyImplicitThermal) {
186 auto fs = intQuants.fluidState();
187 if (this->Ta0_.has_value() && this->Qai_[idx] > 0)
189 fs.setTemperature(this->Ta0_.value());
190 typedef typename std::decay<decltype(fs)>::type::ValueType FsValueType;
191 typename FluidSystem::template ParameterCache<FsValueType> paramCache;
192 const unsigned pvtRegionIdx = intQuants.pvtRegionIndex();
193 paramCache.setRegionIndex(pvtRegionIdx);
194 paramCache.updatePhase(fs, this->phaseIdx_());
195 const auto& h = FluidSystem::enthalpy(fs, paramCache, this->phaseIdx_());
196 fs.setEnthalpy(this->phaseIdx_(), h);
198 rates[BlackoilIndices::contiEnergyEqIdx]
199 += this->Qai_[idx] *fs.enthalpy(this->phaseIdx_()) * FluidSystem::referenceDensity( this->phaseIdx_(), intQuants.pvtRegionIndex()) / model.dofTotalVolume(cellIdx);
204 std::size_t size()
const 206 return this->connections_.size();
209 template<
class Serializer>
210 void serializeOp(Serializer& serializer)
212 serializer(pressure_previous_);
213 serializer(pressure_current_);
221 return this->pressure_previous_ == rhs.pressure_previous_ &&
222 this->pressure_current_ == rhs.pressure_current_ &&
223 this->Qai_ == rhs.Qai_ &&
224 this->rhow_ == rhs.rhow_ &&
225 this->W_flux_ == rhs.W_flux_;
229 virtual void assignRestartData(
const data::AquiferData& xaq) = 0;
230 virtual void calculateInflowRate(
int idx,
const Simulator& simulator) = 0;
231 virtual void calculateAquiferCondition() = 0;
232 virtual void calculateAquiferConstants() = 0;
233 virtual Scalar aquiferDepth()
const = 0;
235 Scalar gravity_()
const 237 return this->simulator_.problem().gravity()[2];
242 if (this->co2store_or_h2store_())
243 return FluidSystem::oilCompIdx;
245 return FluidSystem::waterCompIdx;
248 void initQuantities()
251 if (! this->solution_set_from_restart_) {
255 this->initializeConnectionDepths();
256 this->calculateAquiferCondition();
257 this->calculateAquiferConstants();
259 this->pressure_previous_.resize(this->size(), Scalar{0});
260 this->pressure_current_.resize(this->size(), Scalar{0});
261 this->Qai_.resize(this->size(), Scalar{0});
264 void updateCellPressure(std::vector<Eval>& pressure_water,
266 const IntensiveQuantities& intQuants)
268 const auto& fs = intQuants.fluidState();
269 pressure_water.at(idx) = fs.pressure(this->phaseIdx_());
272 void updateCellPressure(std::vector<Scalar>& pressure_water,
274 const IntensiveQuantities& intQuants)
276 const auto& fs = intQuants.fluidState();
277 pressure_water.at(idx) = fs.pressure(this->phaseIdx_()).value();
280 void initializeConnectionMappings()
282 this->alphai_.resize(this->size(), 1.0);
283 this->faceArea_connected_.resize(this->size(), Scalar{0});
286 this->total_face_area_ = Scalar{0};
287 this->cellToConnectionIdx_.resize(this->simulator_.gridView().size(0), -1);
288 const auto& gridView = this->simulator_.vanguard().gridView();
289 for (std::size_t idx = 0; idx < this->size(); ++idx) {
290 const auto global_index = this->connections_[idx].global_index;
291 const int cell_index = this->simulator_.vanguard().compressedIndex(global_index);
292 if (cell_index < 0) {
296 auto elemIt = gridView.template begin< 0>();
297 std::advance(elemIt, cell_index);
300 if (elemIt->partitionType() != Dune::InteriorEntity) {
304 this->cellToConnectionIdx_[cell_index] = idx;
308 FaceDir::DirEnum faceDirection;
311 const auto& elemMapper = this->simulator_.model().dofMapper();
312 for (
const auto& elem : elements(gridView)) {
313 const unsigned cell_index = elemMapper.index(elem);
314 const int idx = this->cellToConnectionIdx_[cell_index];
321 for (
const auto& intersection : intersections(gridView, elem)) {
323 if (! intersection.boundary()) {
327 switch (intersection.indexInInside()) {
329 faceDirection = FaceDir::XMinus;
332 faceDirection = FaceDir::XPlus;
335 faceDirection = FaceDir::YMinus;
338 faceDirection = FaceDir::YPlus;
341 faceDirection = FaceDir::ZMinus;
344 faceDirection = FaceDir::ZPlus;
347 OPM_THROW(std::logic_error,
348 "Internal error in initialization of aquifer.");
351 if (faceDirection == this->connections_[idx].face_dir) {
352 this->faceArea_connected_[idx] = this->connections_[idx].influx_coeff;
357 this->total_face_area_ += this->faceArea_connected_.at(idx);
361 void initializeConnectionDepths()
363 this->cell_depth_.resize(this->size(), this->aquiferDepth());
365 const auto& gridView = this->simulator_.vanguard().gridView();
366 for (std::size_t idx = 0; idx < this->size(); ++idx) {
367 const int cell_index = this->simulator_.vanguard()
368 .compressedIndex(this->connections_[idx].global_index);
369 if (cell_index < 0) {
373 auto elemIt = gridView.template begin< 0>();
374 std::advance(elemIt, cell_index);
377 if (elemIt->partitionType() != Dune::InteriorEntity) {
381 this->cell_depth_.at(idx) = this->simulator_.vanguard().cellCenterDepth(cell_index);
386 Scalar calculateReservoirEquilibrium()
389 std::vector<Scalar> pw_aquifer;
390 Scalar water_pressure_reservoir;
392 ElementContext elemCtx(this->simulator_);
393 const auto& gridView = this->simulator_.gridView();
394 for (
const auto& elem : elements(gridView)) {
395 elemCtx.updatePrimaryStencil(elem);
397 const auto cellIdx = elemCtx.globalSpaceIndex(0, 0);
398 const auto idx = this->cellToConnectionIdx_[cellIdx];
402 elemCtx.updatePrimaryIntensiveQuantities(0);
403 const auto& iq0 = elemCtx.intensiveQuantities(0, 0);
404 const auto& fs = iq0.fluidState();
406 water_pressure_reservoir = fs.pressure(this->phaseIdx_()).value();
407 const auto water_density = fs.density(this->phaseIdx_());
410 this->gravity_() * (this->cell_depth_[idx] - this->aquiferDepth());
412 pw_aquifer.push_back(this->alphai_[idx] *
413 (water_pressure_reservoir - water_density.value()*gdz));
417 const auto& comm = this->simulator_.vanguard().grid().comm();
420 vals[0] = std::accumulate(this->alphai_.begin(), this->alphai_.end(), Scalar{0});
421 vals[1] = std::accumulate(pw_aquifer.begin(), pw_aquifer.end(), Scalar{0});
425 return vals[1] / vals[0];
428 const std::vector<Aquancon::AquancCell> connections_;
431 std::vector<Scalar> faceArea_connected_;
432 std::vector<int> cellToConnectionIdx_;
435 std::vector<Scalar> cell_depth_;
436 std::vector<Scalar> pressure_previous_;
437 std::vector<Eval> pressure_current_;
438 std::vector<Eval> Qai_;
439 std::vector<Scalar> alphai_;
443 std::optional<Scalar> Ta0_{};
446 Scalar total_face_area_{};
447 Scalar area_fraction_{Scalar{1}};
451 bool solution_set_from_restart_ {
false};
452 bool has_active_connection_on_proc_{
false};
typename Properties::Detail::GetPropImpl< TypeTag, Property >::type::type GetPropType
get the type alias defined in the property (equivalent to old macro GET_PROP_TYPE(...))
Definition: propertysystem.hh:233
Structs needed for tpfalinearizer and its gpuparams struct extracted to be defined in one place that ...
Definition: blackoilbioeffectsmodules.hh:45
Declares the properties required by the black oil model.
Definition: AquiferInterface.hpp:34
Definition: AquiferAnalytical.hpp:55
Defines a type tags and some fundamental properties all models.