38class AquiferConstantFlux :
public AquiferInterface<TypeTag>
48 static constexpr int numEq = BlackoilIndices::numEq;
50 AquiferConstantFlux(
const std::vector<Aquancon::AquancCell>& connections,
51 const Simulator& simulator,
52 const SingleAquiferFlux& aquifer)
53 : AquiferInterface<TypeTag>(aquifer.id, simulator)
54 , connections_ (connections)
55 , aquifer_data_ (aquifer)
56 , connection_flux_ (connections_.size(), Eval{0})
58 this->total_face_area_ = this->initializeConnections();
61 static AquiferConstantFlux serializationTestObject(
const Simulator& simulator)
63 AquiferConstantFlux<TypeTag> result({}, simulator, {});
64 result.cumulative_flux_ = 1.0;
69 void computeFaceAreaFraction(
const std::vector<Scalar>& total_face_area)
override
71 assert (total_face_area.size() >=
static_cast<typename std::vector<Scalar>::size_type
>(this->aquiferID()));
73 this->area_fraction_ = this->totalFaceArea()
74 / total_face_area[this->aquiferID() - 1];
77 Scalar totalFaceArea()
const override
79 return this->total_face_area_;
82 void updateAquifer(
const SingleAquiferFlux& aquifer)
84 aquifer_data_ = aquifer;
87 void initFromRestart(
const data::Aquifers& aquiferSoln)
override
89 auto xaqPos = aquiferSoln.find(this->aquiferID());
90 if (xaqPos == aquiferSoln.end()) {
94 this->cumulative_flux_ = this->area_fraction_ * xaqPos->second.volume;
97 void initialSolutionApplied()
override
100 void beginTimeStep()
override
103 void endTimeStep()
override
105 this->flux_rate_ = this->totalFluxRate();
106 this->cumulative_flux_ +=
107 this->flux_rate_ * this->simulator_.timeStepSize();
110 data::AquiferData aquiferData()
const override
112 data::AquiferData data;
114 data.aquiferID = this->aquifer_data_.id;
118 data.fluxRate = this->totalFluxRate();
120 data.volume = this->cumulative_flux_;
123 data.initPressure = 0.0;
128 void addToSource(RateVector& rates,
129 const unsigned cellIdx,
130 [[maybe_unused]]
const unsigned timeIdx)
override
132 const int idx = this->cellToConnectionIdx_[cellIdx];
137 const auto& model = this->simulator_.model();
139 const auto fw = this->aquifer_data_.flux;
141 this->connection_flux_[idx] = fw * this->connections_[idx].effective_facearea;
143 rates[BlackoilIndices::conti0EqIdx + compIdx_()]
144 += this->connection_flux_[idx] / model.dofTotalVolume(cellIdx);
147 template<
class Serializer>
148 void serializeOp(Serializer& serializer)
150 serializer(cumulative_flux_);
153 bool operator==(
const AquiferConstantFlux& rhs)
const
155 return this->cumulative_flux_ == rhs.cumulative_flux_;
159 const std::vector<Aquancon::AquancCell>& connections_;
161 SingleAquiferFlux aquifer_data_;
162 std::vector<Eval> connection_flux_{};
163 std::vector<int> cellToConnectionIdx_{};
165 Scalar cumulative_flux_{};
166 Scalar total_face_area_{0.0};
167 Scalar area_fraction_{1.0};
169 Scalar initializeConnections()
171 auto connected_face_area = 0.0;
173 this->cellToConnectionIdx_
174 .resize(this->simulator_.gridView().size(0), -1);
176 for (std::size_t idx = 0; idx < this->connections_.size(); ++idx) {
177 const auto global_index = this->connections_[idx].global_index;
178 const int cell_index = this->simulator_.vanguard()
179 .compressedIndexForInterior(global_index);
181 if (cell_index < 0) {
185 this->cellToConnectionIdx_[cell_index] = idx;
187 connected_face_area += this->connections_[idx].effective_facearea;
194 return connected_face_area;
197 Scalar computeFaceAreaFraction(
const Scalar connected_face_area)
const
199 const auto tot_face_area = this->simulator_.vanguard()
200 .grid().comm().sum(connected_face_area);
202 return (tot_face_area > 0.0)
203 ? connected_face_area / tot_face_area
210 if (this->co2store_or_h2store_())
211 return FluidSystem::oilCompIdx;
213 return FluidSystem::waterCompIdx;
216 Scalar totalFluxRate()
const
218 return std::accumulate(this->connection_flux_.begin(),
219 this->connection_flux_.end(), 0.0,
220 [](
const Scalar rate,
const auto& q)
222 return rate + getValue(q);