opm-simulators/opm/core/WellsGroup.hpp

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#ifndef OPM_WELLSGROUP_HPP
#define OPM_WELLSGROUP_HPP
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#include <opm/core/InjectionSpecification.hpp>
#include <opm/core/ProductionSpecification.hpp>
#include <opm/core/eclipse/EclipseGridParser.hpp>
#include <opm/core/grid.h>
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#include <string>
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namespace Opm
{
struct ExceedInformation {
std::string group_name_;
int well_index_;
double surplus_;
};
struct WellControlResult {
std::vector<ExceedInformation> oil_rate_;
std::vector<ExceedInformation> fluid_rate_;
std::vector<ExceedInformation> bhp_;
};
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class WellsGroupInterface
{
public:
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WellsGroupInterface(const std::string& name,
ProductionSpecification prod_spec,
InjectionSpecification inj_spec);
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virtual ~WellsGroupInterface();
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/// The unique identifier for the well or well group.
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const std::string& name();
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/// Production specifications for the well or well group.
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const ProductionSpecification& prodSpec() const;
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/// Injection specifications for the well or well group.
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const InjectionSpecification& injSpec() const;
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/// Production specifications for the well or well group.
ProductionSpecification& prodSpec();
/// Injection specifications for the well or well group.
InjectionSpecification& injSpec();
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/// \returns true if the object is a leaf node (WellNode), false otherwise.
virtual bool isLeafNode() const;
/// \returns the pointer to the WellsGroupInterface with the given name. NULL if
/// the name is not found.a
virtual WellsGroupInterface* findGroup(std::string name_of_node) = 0;
void setParent(WellsGroupInterface* parent);
const WellsGroupInterface* getParent() const;
/// Recursively calculate the guide rate for each member of the well group.
/// This should be called after the guide rates are set to the non-normalized values.
virtual void calculateGuideRates() = 0;
/// Calculates the number of leaf nodes in the given group.
/// A leaf node is defined to have one leaf node in its group.
virtual int numberOfLeafNodes() = 0;
protected:
WellsGroupInterface* parent_;
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private:
std::string name_;
ProductionSpecification production_specification_;
InjectionSpecification injection_specification_;
};
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class WellsGroup : public WellsGroupInterface
{
public:
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WellsGroup(const std::string& name,
ProductionSpecification prod_spec,
InjectionSpecification inj_spec);
virtual WellsGroupInterface* findGroup(std::string name_of_node);
void addChild(std::tr1::shared_ptr<WellsGroupInterface> child);
bool conditionsMet(const std::vector<double>& well_bhp, const std::vector<double>& well_rate,
const UnstructuredGrid& grid, const std::vector<double>& saturations, const struct Wells* wells,
int index_of_well, WellControlResult& result, double epsilon = 1e-8);
virtual void calculateGuideRates();
virtual int numberOfLeafNodes();
private:
std::vector<std::tr1::shared_ptr<WellsGroupInterface> > children_;
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};
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class WellNode : public WellsGroupInterface
{
public:
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WellNode(const std::string& name,
ProductionSpecification prod_spec,
InjectionSpecification inj_spec);
virtual WellsGroupInterface* findGroup(std::string name_of_node);
virtual bool conditionsMet(const std::vector<double>& well_bhp, const std::vector<double>& well_rate,
const UnstructuredGrid& grid, const std::vector<double>& saturations,
WellControlResult& result, double epsilon=1e-8);
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virtual bool isLeafNode() const;
void setWellsPointer(const struct Wells* wells, int self_index);
virtual void calculateGuideRates();
virtual int numberOfLeafNodes();
private:
const struct Wells* wells_;
int self_index_;
};
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/// Doc me!
std::tr1::shared_ptr<WellsGroupInterface> createWellsGroup(std::string name,
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const EclipseGridParser& deck);
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}
#endif /* OPM_WELLSGROUP_HPP */