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https://github.com/OPM/ResInsight.git
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212 lines
7.2 KiB
C++
212 lines
7.2 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2011-2012 Statoil ASA, Ceetron AS
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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 "cvfBase.h"
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#include "cvfObject.h"
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#include "cvfMath.h"
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#include "cvfVector3.h"
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#include <QDateTime>
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#include <vector>
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//==================================================================================================
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/// Stores the info on a significant point in the well. Either a well-to-grid connection, or the
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/// bottom position of a connection less well-segment
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//==================================================================================================
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struct RigWellResultPoint
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{
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RigWellResultPoint() :
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m_gridIndex(cvf::UNDEFINED_SIZE_T),
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m_gridCellIndex(cvf::UNDEFINED_SIZE_T),
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m_isOpen(false),
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m_ertBranchId(-1),
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m_ertSegmentId(-1),
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m_bottomPosition(cvf::Vec3d::UNDEFINED),
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m_flowRate(0.0),
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m_oilRate(0.0),
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m_gasRate(0.0),
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m_waterRate(0.0)
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{ }
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bool isPointValid() const
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{
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return m_bottomPosition != cvf::Vec3d::UNDEFINED;
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}
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bool isCell() const
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{
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return m_gridCellIndex != cvf::UNDEFINED_SIZE_T;
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}
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bool isValid() const
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{
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return isCell() || isPointValid();
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}
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double flowRate() const
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{
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if ( isCell() && m_isOpen)
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{
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return m_flowRate;
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}
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else
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{
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return 0.0;
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}
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}
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double oilRate() const
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{
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if ( isCell() && m_isOpen)
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{
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return m_oilRate;
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}
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else
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{
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return 0.0;
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}
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}
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double gasRate() const
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{
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if ( isCell() && m_isOpen)
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{
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return m_gasRate;
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}
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else
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{
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return 0.0;
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}
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}
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double waterRate() const
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{
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if ( isCell() && m_isOpen)
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{
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return m_waterRate;
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}
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else
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{
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return 0.0;
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}
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}
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bool isEqual(const RigWellResultPoint& other ) const
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{
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return ( m_gridIndex == other.m_gridIndex
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&& m_gridCellIndex == other.m_gridCellIndex
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&& m_isOpen == other.m_isOpen
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&& m_ertBranchId == other.m_ertBranchId
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&& m_ertSegmentId == other.m_ertSegmentId
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&& m_flowRate == other.m_flowRate);
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}
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size_t m_gridIndex;
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size_t m_gridCellIndex; //< Index to cell which is included in the well
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bool m_isOpen; //< Marks the well as open or closed as of Eclipse simulation
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int m_ertBranchId;
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int m_ertSegmentId;
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cvf::Vec3d m_bottomPosition; //< The estimated bottom position of the well segment, when we have no grid cell connections for the segment.
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double m_flowRate; //< Total reservoir rate
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double m_oilRate; //< Surface oil rate
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double m_gasRate; //< Surface gas rate For Field-unit, converted to [stb/day] to allign with oil and water.
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double m_waterRate; //< Surface water rate
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};
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//==================================================================================================
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/// This class contains the connection information from and including a splitpoint to the end of
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/// that particular branch.
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//==================================================================================================
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struct RigWellResultBranch
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{
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RigWellResultBranch() :
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m_ertBranchId(-1)
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{}
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int m_ertBranchId;
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std::vector<RigWellResultPoint> m_branchResultPoints;
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};
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//==================================================================================================
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/// This class contains the well information for one timestep.
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/// The main content is the vector of RigWellResultBranch which contains all the simple pipe
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/// sections that make up the well
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//==================================================================================================
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class RigWellResultFrame
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{
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public:
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enum WellProductionType { PRODUCER, OIL_INJECTOR, GAS_INJECTOR, WATER_INJECTOR, UNDEFINED_PRODUCTION_TYPE };
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public:
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RigWellResultFrame() :
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m_isOpen(false),
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m_productionType(UNDEFINED_PRODUCTION_TYPE)
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{ }
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const RigWellResultPoint* findResultCell(size_t gridIndex, size_t gridCellIndex) const;
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WellProductionType m_productionType;
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bool m_isOpen;
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RigWellResultPoint m_wellHead;
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QDateTime m_timestamp;
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std::vector<RigWellResultBranch> m_wellResultBranches;
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};
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//==================================================================================================
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///
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//==================================================================================================
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class RigSingleWellResultsData : public cvf::Object
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{
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public:
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RigSingleWellResultsData() { m_isMultiSegmentWell = false; }
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void setMultiSegmentWell(bool isMultiSegmentWell);
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bool isMultiSegmentWell() const;
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bool hasWellResult(size_t resultTimeStepIndex) const;
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const RigWellResultFrame& wellResultFrame(size_t resultTimeStepIndex) const;
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bool isOpen(size_t resultTimeStepIndex) const;
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RigWellResultFrame::WellProductionType wellProductionType(size_t resultTimeStepIndex) const;
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const RigWellResultFrame& staticWellCells() const;
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void computeMappingFromResultTimeIndicesToWellTimeIndices(const std::vector<QDateTime>& resultTimes);
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public: // Todo: Clean up this regarding public members and constness etc.
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QString m_wellName;
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std::vector<size_t> m_resultTimeStepIndexToWellTimeStepIndex; // Well result timesteps may differ from result timesteps
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std::vector< RigWellResultFrame > m_wellCellsTimeSteps;
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mutable RigWellResultFrame m_staticWellCells;
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private:
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void computeStaticWellCellPath() const;
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private:
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bool m_isMultiSegmentWell;
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};
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