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https://github.com/OPM/ResInsight.git
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132 lines
7.0 KiB
C++
132 lines
7.0 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2017 - 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 "cvfBase.h"
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#include "cvfObject.h"
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#include <QString>
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#include <vector>
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#include "RiaEclipseUnitTools.h"
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#include "cvfVector3.h"
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class RigFractureGrid;
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class MinMaxAccumulator;
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class PosNegAccumulator;
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class RigStimPlanResultFrames
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{
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public:
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RigStimPlanResultFrames();
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QString resultName;
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QString unit;
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// Vector for each time step, for each depth and for each x-value
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std::vector< std::vector< std::vector<double> > > parameterValues;
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};
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class RigStimPlanFractureDefinition: public cvf::Object
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{
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public:
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RigStimPlanFractureDefinition();
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~RigStimPlanFractureDefinition();
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RiaEclipseUnitTools::UnitSystem unitSet() const { return m_unitSet; }
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void setUnitSet(RiaEclipseUnitTools::UnitSystem unitset) { m_unitSet = unitset;}
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size_t gridXCount() const { return m_gridXs.size();}
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void setGridXs(const std::vector<double>& gridXs) { m_gridXs = gridXs; }
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//TODO: Consider removing gridYs or depths,
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//In example file these are the same, but can there be examples where not all gridY values are included in depths?
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void setGridYs(const std::vector<double>& gridYs) { m_gridYs = gridYs; }
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double minDepth() const { return depths[0]; }
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double maxDepth() const { return depths.back(); }
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size_t depthCount() const { return depths.size(); }
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// Grid Geometry
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std::vector<double> getNegAndPosXcoords() const;
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std::vector<double> adjustedDepthCoordsAroundWellPathPosition(double wellPathDepthAtFracture) const;
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std::vector<std::vector<double>> getMirroredDataAtTimeIndex(const QString& resultName,
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const QString& unitName,
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size_t timeStepIndex) const;
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cvf::ref<RigFractureGrid> createFractureGrid(int m_activeTimeStepIndex,
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RiaEclipseUnitTools::UnitSystemType fractureTemplateUnit,
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double m_wellPathDepthAtFracture);
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void createFractureTriangleGeometry(double m_wellPathDepthAtFracture,
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RiaEclipseUnitTools::UnitSystem neededUnit,
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const QString& fractureUserName,
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std::vector<cvf::Vec3f>* vertices,
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std::vector<cvf::uint>* triangleIndices);
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std::vector<cvf::Vec3f> createFractureBorderPolygon(const QString& resultName,
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const QString& resultUnit,
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int m_activeTimeStepIndex,
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double m_wellPathDepthAtFracture,
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RiaEclipseUnitTools::UnitSystem neededUnit,
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const QString& fractureUserName);
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// Result Access
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const std::vector<double>& timeSteps() const { return m_timeSteps; }
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void addTimeStep(double time) { if (!timeStepExisist(time)) m_timeSteps.push_back(time); }
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std::vector<std::pair<QString, QString> > getStimPlanPropertyNamesUnits() const;
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bool numberOfParameterValuesOK(std::vector<std::vector<double>> propertyValuesAtTimestep);
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size_t totalNumberTimeSteps();
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void setDataAtTimeValue(QString resultName, QString unit, std::vector<std::vector<double>> data, double timeStepValue, double condScalingFactor);
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const std::vector<std::vector<double>>& getDataAtTimeIndex(const QString& resultName, const QString& unit, size_t timeStepIndex) const;
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std::vector<double> fractureGridResults(const QString& resultName,
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const QString& unitName,
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size_t timeStepIndex) const;
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void appendDataToResultStatistics(const QString& resultName, const QString& unit,
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MinMaxAccumulator& minMaxAccumulator,
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PosNegAccumulator& posNegAccumulator) const;
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QString conductivityResultName() const;
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// Setup
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void reorderYgridToDepths();
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private:
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bool timeStepExisist(double timeStepValue);
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size_t getTimeStepIndex(double timeStepValue);
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size_t resultIndex(const QString& resultName, const QString& unit) const;
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size_t mirroredGridXCount() const { return m_gridXs.size() ? m_gridXs.size() + m_gridXs.size() - 1 : 0 ;}
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RiaEclipseUnitTools::UnitSystem m_unitSet;
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std::vector<double> m_gridXs;
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std::vector<double> m_gridYs;
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std::vector<double> depths;
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std::vector<double> m_timeSteps;
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std::vector<RigStimPlanResultFrames> m_stimPlanResults;
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};
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