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WellInterfaceGeneric.hpp
1/*
2 Copyright 2017 SINTEF Digital, Mathematics and Cybernetics.
3 Copyright 2017 Statoil ASA.
4 Copyright 2017 IRIS
5 Copyright 2019 Norce
6
7 This file is part of the Open Porous Media project (OPM).
8
9 OPM is free software: you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation, either version 3 of the License, or
12 (at your option) any later version.
13
14 OPM is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with OPM. If not, see <http://www.gnu.org/licenses/>.
21*/
22
23
24#ifndef OPM_WELLINTERFACE_GENERIC_HEADER_INCLUDED
25#define OPM_WELLINTERFACE_GENERIC_HEADER_INCLUDED
26
27#include <opm/input/eclipse/Schedule/Well/Well.hpp>
28#include <opm/simulators/flow/BlackoilModelParameters.hpp>
29#include <opm/simulators/wells/RuntimePerforation.hpp>
30
31#include <map>
32#include <optional>
33#include <string>
34#include <vector>
35
36namespace Opm
37{
38
39class DeferredLogger;
40class GuideRate;
41template<class Scalar> class ParallelWellInfo;
42template<class Scalar> struct PerforationData;
43class SummaryState;
44template<typename Scalar, typename IndexTraits> class VFPProperties;
45class WellTestState;
46template<typename Scalar, typename IndexTraits> class WellState;
47template<typename Scalar, typename IndexTraits> class SingleWellState;
48class Group;
49class Schedule;
50template<typename IndexTraits> class PhaseUsageInfo;
51
52template<typename Scalar, typename IndexTraits>
53class WellInterfaceGeneric {
54public:
55 using ModelParameters = BlackoilModelParameters<Scalar>;
56
57 using WellStateType = WellState<Scalar, IndexTraits>;
58
59 WellInterfaceGeneric(const Well& well,
60 const ParallelWellInfo<Scalar>& parallel_well_info,
61 const int time_step,
62 const ModelParameters& param,
63 const int pvtRegionIdx,
64 const int num_conservation_quantities,
65 const int num_phases,
66 const int index_of_well,
67 const PhaseUsageInfo<IndexTraits>& phase_usage,
68 const std::vector<PerforationData<Scalar>>& perf_data);
69
70 virtual ~WellInterfaceGeneric() = default;
71
73 const std::vector<PerforationData<Scalar>>& perforationData() const;
74
76 const std::string& name() const;
77
79 bool isInjector() const;
80
82 bool isProducer() const;
83
85 const std::vector<int>& cells() const { return well_cells_; }
86
88 int indexOfWell() const;
89
90 void adaptRatesForVFP(std::vector<Scalar>& rates) const;
91
92 const Well& wellEcl() const;
93 Well& wellEcl();
94 const PhaseUsageInfo<IndexTraits>& phaseUsage() const;
95
97 bool underPredictionMode() const;
98
99 // whether the well is operable
100 bool isOperableAndSolvable() const;
101 bool useVfpExplicit () const;
102 bool thpLimitViolatedButNotSwitched() const;
103
104 void initCompletions();
105 void closeCompletions(const WellTestState& wellTestState);
106
107 void setVFPProperties(const VFPProperties<Scalar, IndexTraits>* vfp_properties_arg);
108 void setPrevSurfaceRates(WellStateType& well_state,
109 const WellStateType& prev_well_state) const;
110 void setGuideRate(const GuideRate* guide_rate_arg);
111 void setWellEfficiencyFactor(const Scalar efficiency_factor);
112 void setRepRadiusPerfLength();
113 void setWsolvent(const Scalar wsolvent);
114 void setDynamicThpLimit(const Scalar thp_limit);
115 std::optional<Scalar> getDynamicThpLimit() const;
116 void setDynamicThpLimit(const std::optional<Scalar> thp_limit);
117 void updatePerforatedCell(std::vector<bool>& is_cell_perforated);
118
120 bool wellHasTHPConstraints(const SummaryState& summaryState) const;
121
122 void stopWell() { this->wellStatus_ = Well::Status::STOP; }
123 void openWell() { this->wellStatus_ = Well::Status::OPEN; }
124 Well::Status wellStatus() { return this->wellStatus_;}
125
126 bool wellIsStopped() const { return this->wellStatus_ == Well::Status::STOP; }
127
128 int currentStep() const { return this->current_step_; }
129
130 int pvtRegionIdx() const { return pvtRegionIdx_; }
131
132 const GuideRate* guideRate() const { return guide_rate_; }
133
134 int numConservationQuantities() const { return num_conservation_quantities_; }
135
136 int numPhases() const { return number_of_phases_; }
137
138 int numLocalPerfs() const { return number_of_local_perforations_; }
139
140 Scalar refDepth() const { return ref_depth_; }
141
142 Scalar gravity() const { return gravity_; }
143
144 const VFPProperties<Scalar, IndexTraits>* vfpProperties() const { return vfp_properties_; }
145
146 const ParallelWellInfo<Scalar>& parallelWellInfo() const { return parallel_well_info_; }
147
148 const std::vector<Scalar>& perfDepth() const { return perf_depth_; }
149
150 std::vector<Scalar>& perfDepth() { return perf_depth_; }
151
152 const std::vector<Scalar>& wellIndex() const { return well_index_; }
153
154 const std::map<int,std::vector<int>>& getCompletions() const { return completions_; }
155
156 Scalar getTHPConstraint(const SummaryState& summaryState) const;
157 Scalar getALQ(const WellStateType& well_state) const;
158 Scalar wsolvent() const;
159 Scalar rsRvInj() const;
160
161 // at the beginning of the time step, we check what inj_multiplier from the previous running
162 void initInjMult(const std::vector<Scalar>& max_inj_mult);
163
164 // update the InjMult information at the end of the time step, so it can be used for later.
165 void updateInjMult(std::vector<Scalar>& inj_multipliers,
166 DeferredLogger& deferred_logger) const;
167
168 // Note:: for multisegment wells, bhp is actually segment pressure in practice based on observation
169 // it might change in the future
170 Scalar getInjMult(const int local_perf_index, const Scalar bhp, const Scalar perf_pres, DeferredLogger& dlogger) const;
171
172 // whether a well is specified with a non-zero and valid VFP table number
173 bool isVFPActive(DeferredLogger& deferred_logger) const;
174
175 void reportWellSwitching(const SingleWellState<Scalar, IndexTraits>& ws,
176 DeferredLogger& deferred_logger) const;
177
178 bool changedToOpenThisStep() const { return this->changed_to_open_this_step_; }
179
180 void updateWellTestState(const SingleWellState<Scalar, IndexTraits>& ws,
181 const double& simulationTime,
182 const bool& writeMessageToOPMLog,
183 const bool zero_group_target,
184 WellTestState& wellTestState,
185 DeferredLogger& deferred_logger) const;
186
187 bool isPressureControlled(const WellStateType& well_state) const;
188
189 Scalar wellEfficiencyFactor() const { return well_efficiency_factor_; }
190
192 void updateFilterCakeMultipliers(const std::vector<Scalar>& inj_fc_multiplier)
193 {
194 inj_fc_multiplier_ = inj_fc_multiplier;
195 }
196
197 void resetWellOperability();
198
199 virtual std::vector<Scalar> getPrimaryVars() const
200 {
201 return {};
202 }
203
204 virtual int setPrimaryVars(typename std::vector<Scalar>::const_iterator)
205 {
206 return 0;
207 }
208
209 virtual Scalar connectionDensity(const int globalConnIdx,
210 const int openConnIdx) const = 0;
211
212 void addPerforations(const std::vector<RuntimePerforation>& perfs);
213
214protected:
215 bool getAllowCrossFlow() const;
216
217 Scalar wmicrobes_() const;
218 Scalar wfoam_() const;
219 Scalar woxygen_() const;
220 Scalar wpolymer_() const;
221 Scalar wsalt_() const;
222 Scalar wurea_() const;
223
224 int polymerTable_() const;
225 int polymerInjTable_() const;
226 int polymerWaterTable_() const;
227
228 bool wellUnderZeroRateTargetIndividual(const SummaryState& summary_state,
229 const WellState<Scalar, IndexTraits>& well_state) const;
230
231 bool wellUnderGroupControl(const SingleWellState<Scalar, IndexTraits>& ws) const;
232
233 std::pair<bool,bool>
234 computeWellPotentials(std::vector<Scalar>& well_potentials,
235 const WellStateType& well_state);
236
237 void checkNegativeWellPotentials(std::vector<Scalar>& well_potentials,
238 const bool checkOperability,
239 DeferredLogger& deferred_logger);
240
241 // Remove all other controls than THP and BHP
242 void onlyKeepBHPandTHPcontrols(const SummaryState& summary_state,
243 WellStateType& well_state,
244 Well::InjectionControls& inj_controls,
245 Well::ProductionControls& prod_controls) const;
246
247 void resetDampening() {
248 std::fill(this->inj_multiplier_damp_factor_.begin(), this->inj_multiplier_damp_factor_.end(), 1.0);
249 }
250
251 // definition of the struct OperabilityStatus
253 {
254 bool isOperableAndSolvable() const
255 {
256 if (!operable_under_only_bhp_limit || !solvable || has_negative_potentials) {
257 return false;
258 }
259
260 return isOperableUnderBHPLimit() || isOperableUnderTHPLimit();
261 }
262
263 bool isOperableUnderBHPLimit() const
264 {
265 return operable_under_only_bhp_limit && obey_thp_limit_under_bhp_limit;
266 }
267
268 bool isOperableUnderTHPLimit() const
269 {
270 return can_obtain_bhp_with_thp_limit && obey_bhp_limit_with_thp_limit;
271 }
272
273 void resetOperability()
274 {
275 operable_under_only_bhp_limit = true;
276 obey_thp_limit_under_bhp_limit = true;
277 can_obtain_bhp_with_thp_limit = true;
278 obey_bhp_limit_with_thp_limit = true;
279 }
280
281 // whether the well can be operated under bhp limit
282 // without considering other limits.
283 // if it is false, then the well is not operable for sure.
284 bool operable_under_only_bhp_limit = true;
285 // if the well can be operated under bhp limit, will it obey(not violate)
286 // the thp limit when operated under bhp limit
287 bool obey_thp_limit_under_bhp_limit = true;
288 // whether the well operate under the thp limit only
289 bool can_obtain_bhp_with_thp_limit = true;
290 // whether the well obey bhp limit when operated under thp limit
291 bool obey_bhp_limit_with_thp_limit = true;
292 // the well is solveable
293 bool solvable = true;
294 // the well have non positive potentials
295 bool has_negative_potentials = false;
296 //thp limit violated but not switched
297 mutable bool thp_limit_violated_but_not_switched = false;
298
299 bool use_vfpexplicit = false;
300 };
301
302 OperabilityStatus operability_status_;
303
304 Well well_ecl_;
305
306 const ParallelWellInfo<Scalar>& parallel_well_info_;
307 const int current_step_;
308 const ModelParameters& param_;
309
310 // The pvt region of the well. We assume
311 // We assume a well to not penetrate more than one pvt region.
312 const int pvtRegionIdx_;
313
314 const int num_conservation_quantities_;
315
316 // number of phases
317 int number_of_phases_;
318
319 // the index of well in Wells struct
320 int index_of_well_;
321
322 const PhaseUsageInfo<IndexTraits>& phase_usage_;
323
324 const std::vector<PerforationData<Scalar>>* perf_data_;
325
326 // the vectors used to describe the inflow performance relationship (IPR)
327 // Q = IPR_A - BHP * IPR_B
328 // TODO: it minght need to go to WellInterface, let us implement it in StandardWell first
329 // it is only updated and used for producers for now
330 mutable std::vector<Scalar> ipr_a_;
331 mutable std::vector<Scalar> ipr_b_;
332
333 // cell index for each well perforation
334 std::vector<int> well_cells_;
335
336 // well index for each perforation
337 std::vector<Scalar> well_index_;
338
339 // number of the perforations for this well on this process
340 int number_of_local_perforations_;
341
342 // depth for each perforation
343 std::vector<Scalar> perf_depth_;
344
345 // representative radius of the perforations, used in shear calculation
346 std::vector<Scalar> perf_rep_radius_;
347
348 // length of the perforations, use in shear calculation
349 std::vector<Scalar> perf_length_;
350
351 // well bore diameter
352 std::vector<Scalar> bore_diameters_;
353
354 /*
355 * completions_ contains the mapping from completion id to connection indices
356 * {
357 * 2 : [ConnectionIndex, ConnectionIndex],
358 * 1 : [ConnectionIndex, ConnectionIndex, ConnectionIndex],
359 * 5 : [ConnectionIndex],
360 * 7 : [ConnectionIndex]
361 * ...
362 * }
363 * The integer IDs correspond to the COMPLETION id given by the COMPLUMP keyword.
364 * When there is no COMPLUMP keyword used, a default completion number will be assigned
365 * based on the order of the declaration of the connections.
366 * Since the connections not OPEN is not included in the Wells, so they will not be considered
367 * in this mapping relation.
368 */
369 std::map<int, std::vector<int>> completions_;
370
371 // reference depth for the BHP
372 Scalar ref_depth_;
373
374 // saturation table nubmer for each well perforation
375 std::vector<int> saturation_table_number_;
376
377 Well::Status wellStatus_;
378
379 Scalar gravity_;
380 Scalar wsolvent_;
381 std::optional<Scalar> dynamic_thp_limit_;
382
383 // recording the multiplier calculate from the keyword WINJMULT during the time step
384 mutable std::vector<Scalar> inj_multiplier_;
385
386 // the injection multiplier from the previous running, it is mostly used for CIRR mode
387 // which intends to keep the fracturing open
388 std::vector<Scalar> prev_inj_multiplier_;
389
390 // WINJMULT multipliers for previous iteration (used for oscillation detection)
391 mutable std::vector<Scalar> inj_multiplier_previter_;
392 // WINJMULT dampening factors (used in case of oscillations)
393 mutable std::vector<Scalar> inj_multiplier_damp_factor_;
394
395 // the multiplier due to injection filtration cake
396 std::vector<Scalar> inj_fc_multiplier_;
397
398 Scalar well_efficiency_factor_;
399 const VFPProperties<Scalar, IndexTraits>* vfp_properties_;
400 const GuideRate* guide_rate_;
401
402 std::vector<std::string> well_control_log_;
403
404 bool changed_to_open_this_step_ = true;
405};
406
407}
408
409#endif // OPM_WELLINTERFACE_GENERIC_HEADER_INCLUDED
Definition DeferredLogger.hpp:57
Class encapsulating some information about parallel wells.
Definition ParallelWellInfo.hpp:198
Definition GasLiftGroupInfo.hpp:37
Definition SingleWellState.hpp:43
A thin wrapper class that holds one VFPProdProperties and one VFPInjProperties object.
Definition VFPProperties.hpp:40
bool underPredictionMode() const
Returns true if the well is currently in prediction mode (i.e. not history mode).
Definition WellInterfaceGeneric.cpp:372
void updateFilterCakeMultipliers(const std::vector< Scalar > &inj_fc_multiplier)
Update filter cake multipliers.
Definition WellInterfaceGeneric.hpp:192
bool isProducer() const
True if the well is a producer.
Definition WellInterfaceGeneric.cpp:180
bool isInjector() const
True if the well is an injector.
Definition WellInterfaceGeneric.cpp:174
int indexOfWell() const
Index of well in the wells struct and wellState.
Definition WellInterfaceGeneric.cpp:186
const std::vector< PerforationData< Scalar > > & perforationData() const
Get the perforations of the well.
Definition WellInterfaceGeneric.cpp:161
const std::vector< int > & cells() const
Well cells.
Definition WellInterfaceGeneric.hpp:85
const std::string & name() const
Well name.
Definition WellInterfaceGeneric.cpp:168
bool wellHasTHPConstraints(const SummaryState &summaryState) const
Returns true if the well has one or more THP limits/constraints.
Definition WellInterfaceGeneric.cpp:325
The state of a set of wells, tailored for use by the fully implicit blackoil simulator.
Definition WellState.hpp:66
This file contains a set of helper functions used by VFPProd / VFPInj.
Definition blackoilbioeffectsmodules.hh:43
Solver parameters for the BlackoilModel.
Definition BlackoilModelParameters.hpp:180
Static data associated with a well perforation.
Definition PerforationData.hpp:30
Definition WellInterfaceGeneric.hpp:253