mirror of
https://github.com/OPM/ResInsight.git
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102 lines
3.7 KiB
C++
102 lines
3.7 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2016- Statoil ASA
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//
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// ResInsight is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// ResInsight is distributed in the hope that it will be useful, but WITHOUT ANY
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// WARRANTY; without even the implied warranty of MERCHANTABILITY or
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// FITNESS FOR A PARTICULAR PURPOSE.
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//
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// See the GNU General Public License at <http://www.gnu.org/licenses/gpl.html>
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// for more details.
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//
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/////////////////////////////////////////////////////////////////////////////////
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#pragma once
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#include "RigFlowDiagResultAddress.h"
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#include "cvfBase.h"
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#include "cvfObject.h"
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#include "cafPdmPointer.h"
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#include <string>
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#include <vector>
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#include <map>
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class RimEclipseResultCase;
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class RimFlowDiagSolution;
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class RigFlowDiagTimeStepResult
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{
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public:
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explicit RigFlowDiagTimeStepResult(size_t activeCellCount);
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void setTracerTOF (const std::string& tracerName, RigFlowDiagResultAddress::PhaseSelection phaseSelection, const std::map<int, double>& cellValues);
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void setTracerFraction(const std::string& tracerName, RigFlowDiagResultAddress::PhaseSelection phaseSelection, const std::map<int, double>& cellValues);
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void setInjProdWellPairFlux(const std::string& injectorTracerName,
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const std::string& producerTracerName,
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const std::pair<double, double>& injProdFluxes) ;
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using Curve = std::pair< std::vector<double>, std::vector<double> >;
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// Used to "steal" the data from this one using swap
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std::map<RigFlowDiagResultAddress, std::vector<double> >& nativeResults() { return m_nativeResults; }
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std::map<std::pair<std::string, std::string>, std::pair<double, double> > & injProdWellPairFluxes() { return m_injProdWellPairFluxes; }
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private:
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void addResult(const RigFlowDiagResultAddress& resAddr, const std::map<int, double>& cellValues);
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std::map<RigFlowDiagResultAddress, std::vector<double> > m_nativeResults;
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std::map<std::pair<std::string, std::string>, std::pair<double, double> > m_injProdWellPairFluxes;
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size_t m_activeCellCount;
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};
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class RigEclipseCaseData;
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class RigOpmFlowDiagStaticData;
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class RigFlowDiagSolverInterface : public cvf::Object
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{
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public:
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struct FlowCharacteristicsResultFrame
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{
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FlowCharacteristicsResultFrame();
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using Curve = std::pair< std::vector<double>, std::vector<double> >;
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Curve m_flowCapStorageCapCurve;
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Curve m_sweepEfficiencyCurve;
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double m_lorenzCoefficient;
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};
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public:
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explicit RigFlowDiagSolverInterface(RimEclipseResultCase * eclipseCase);
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virtual ~RigFlowDiagSolverInterface();
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RigFlowDiagTimeStepResult calculate(size_t timestep,
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RigFlowDiagResultAddress::PhaseSelection phaseSelection,
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std::map<std::string, std::vector<int> > injectorTracers,
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std::map<std::string, std::vector<int> > producerTracers);
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FlowCharacteristicsResultFrame calculateFlowCharacteristics(const std::vector<double>* injector_tof,
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const std::vector<double>* producer_tof,
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double max_pv_fraction);
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private:
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std::string getInitFileName() const;
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RimEclipseResultCase * m_eclipseCase;
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cvf::ref<RigOpmFlowDiagStaticData> m_opmFlowDiagStaticData;
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};
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