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408 lines
15 KiB
C++
408 lines
15 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2015- Statoil ASA
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// Copyright (C) 2015- Ceetron Solutions 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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#include "RigWellLogCurveData.h"
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#include "RigCurveDataTools.h"
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#include "RiaEclipseUnitTools.h"
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#include "cvfMath.h"
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#include "cvfAssert.h"
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#include <cmath>
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigWellLogCurveData::RigWellLogCurveData()
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{
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m_isExtractionCurve = false;
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m_depthUnit = RiaDefines::UNIT_METER;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigWellLogCurveData::~RigWellLogCurveData()
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{
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigWellLogCurveData::setValuesAndMD(const std::vector<double>& xValues,
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const std::vector<double>& measuredDepths,
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RiaDefines::DepthUnitType depthUnit,
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bool isExtractionCurve)
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{
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CVF_ASSERT(xValues.size() == measuredDepths.size());
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m_xValues = xValues;
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m_measuredDepths = measuredDepths;
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m_tvDepths.clear();
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m_depthUnit = depthUnit;
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// Disable depth value filtering is intended to be used for
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// extraction curve data
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m_isExtractionCurve = isExtractionCurve;
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calculateIntervalsOfContinousValidValues();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigWellLogCurveData::setValuesWithTVD(const std::vector<double>& xValues,
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const std::vector<double>& measuredDepths,
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const std::vector<double>& tvDepths,
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RiaDefines::DepthUnitType depthUnit,
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bool isExtractionCurve)
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{
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CVF_ASSERT(xValues.size() == measuredDepths.size());
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m_xValues = xValues;
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m_measuredDepths = measuredDepths;
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m_tvDepths = tvDepths;
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m_depthUnit = depthUnit;
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m_isExtractionCurve = isExtractionCurve;
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calculateIntervalsOfContinousValidValues();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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const std::vector<double>& RigWellLogCurveData::xValues() const
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{
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return m_xValues;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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const std::vector<double>& RigWellLogCurveData::measuredDepths() const
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{
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return m_measuredDepths;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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const std::vector<double>& RigWellLogCurveData::tvDepths() const
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{
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return m_tvDepths;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<double> RigWellLogCurveData::xPlotValues() const
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{
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std::vector<double> filteredValues;
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RigCurveDataTools::getValuesByIntervals(m_xValues, m_intervalsOfContinousValidValues, &filteredValues);
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return filteredValues;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<double> RigWellLogCurveData::trueDepthPlotValues(RiaDefines::DepthUnitType destinationDepthUnit) const
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{
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std::vector<double> filteredValues;
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if(m_tvDepths.size())
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{
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if(destinationDepthUnit == m_depthUnit)
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{
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RigCurveDataTools::getValuesByIntervals(m_tvDepths, m_intervalsOfContinousValidValues, &filteredValues);
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}
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else
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{
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std::vector<double> convertedValues = convertDepthValues(destinationDepthUnit, m_tvDepths);
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RigCurveDataTools::getValuesByIntervals(convertedValues, m_intervalsOfContinousValidValues, &filteredValues);
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}
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}
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return filteredValues;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<double> RigWellLogCurveData::measuredDepthPlotValues(RiaDefines::DepthUnitType destinationDepthUnit) const
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{
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std::vector<double> filteredValues;
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if(destinationDepthUnit == m_depthUnit)
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{
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RigCurveDataTools::getValuesByIntervals(m_measuredDepths, m_intervalsOfContinousValidValues, &filteredValues);
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}
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else
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{
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std::vector<double> convertedValues = convertDepthValues(destinationDepthUnit, m_measuredDepths);
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RigCurveDataTools::getValuesByIntervals(convertedValues, m_intervalsOfContinousValidValues, &filteredValues);
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}
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return filteredValues;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector< std::pair<size_t, size_t> > RigWellLogCurveData::polylineStartStopIndices() const
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{
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std::vector< std::pair<size_t, size_t> > lineStartStopIndices;
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RigCurveDataTools::computePolyLineStartStopIndices(m_intervalsOfContinousValidValues, &lineStartStopIndices);
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return lineStartStopIndices;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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cvf::ref<RigWellLogCurveData> RigWellLogCurveData::calculateResampledCurveData(double newMeasuredDepthStepSize) const
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{
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std::vector<double> xValues;
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std::vector<double> measuredDepths;
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bool isTvDepthsAvailable = false;
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std::vector<double> tvDepths;
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if (m_tvDepths.size() > 0) isTvDepthsAvailable = true;
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if(m_measuredDepths.size() > 0)
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{
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double currentMd = m_measuredDepths[0];
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size_t segmentStartIdx = 0;
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while(segmentStartIdx < m_measuredDepths.size() - 1)
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{
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double segmentStartMd = m_measuredDepths[segmentStartIdx];
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double segmentEndMd = m_measuredDepths[segmentStartIdx + 1];
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double segmentStartX = m_xValues[segmentStartIdx];
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double segmentEndX = m_xValues[segmentStartIdx +1];
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double segmentStartTvd = 0.0;
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double segmentEndTvd = 0.0;
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if (isTvDepthsAvailable)
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{
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segmentStartTvd = m_tvDepths[segmentStartIdx];
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segmentEndTvd = m_tvDepths[segmentStartIdx +1];
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}
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while(currentMd <= segmentEndMd)
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{
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measuredDepths.push_back(currentMd);
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double endWeight = (currentMd - segmentStartMd)/ (segmentEndMd - segmentStartMd);
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xValues.push_back((1.0-endWeight) * segmentStartX + endWeight*segmentEndX);
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// The tvd calculation is a simplification. We should use the wellpath, as it might have a better resolution, and have a none-linear shape
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// This is much simpler, and possibly accurate enough ?
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if (isTvDepthsAvailable)
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{
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tvDepths.push_back((1.0-endWeight) * segmentStartTvd + endWeight*segmentEndTvd);
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}
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currentMd += newMeasuredDepthStepSize;
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}
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segmentStartIdx++;
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}
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}
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cvf::ref<RigWellLogCurveData> reSampledData = new RigWellLogCurveData;
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if (isTvDepthsAvailable)
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{
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reSampledData->setValuesWithTVD(xValues, measuredDepths, tvDepths, m_depthUnit, true);
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}
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else
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{
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reSampledData->setValuesAndMD(xValues, measuredDepths, m_depthUnit, m_isExtractionCurve);
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}
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return reSampledData;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigWellLogCurveData::calculateIntervalsOfContinousValidValues()
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{
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std::vector< std::pair<size_t, size_t> > intervalsOfValidValues;
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RigCurveDataTools::calculateIntervalsOfValidValues(m_xValues, &intervalsOfValidValues, false);
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m_intervalsOfContinousValidValues.clear();
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if (!m_isExtractionCurve)
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{
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m_intervalsOfContinousValidValues = intervalsOfValidValues;
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}
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else
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{
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size_t intervalsCount = intervalsOfValidValues.size();
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for (size_t intIdx = 0; intIdx < intervalsCount; intIdx++)
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{
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std::vector< std::pair<size_t, size_t> > depthValuesIntervals;
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splitIntervalAtEmptySpace(m_measuredDepths,
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intervalsOfValidValues[intIdx].first, intervalsOfValidValues[intIdx].second,
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&depthValuesIntervals);
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for (size_t dvintIdx = 0; dvintIdx < depthValuesIntervals.size(); dvintIdx++)
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{
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m_intervalsOfContinousValidValues.push_back(depthValuesIntervals[dvintIdx]);
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}
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}
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}
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}
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//--------------------------------------------------------------------------------------------------
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/// Splits the start stop interval between cells that are not close enough.
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/// The depth values are expected to contain pair of depths: Depth at cell enter, and cell leave
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//--------------------------------------------------------------------------------------------------
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void RigWellLogCurveData::splitIntervalAtEmptySpace(const std::vector<double>& depthValues,
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size_t startIdx, size_t stopIdx,
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std::vector< std::pair<size_t, size_t> >* intervals)
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{
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CVF_ASSERT(intervals);
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CVF_ASSERT(startIdx < stopIdx);
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if (stopIdx - startIdx == 1)
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{
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intervals->push_back(std::make_pair(startIdx, stopIdx));
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return;
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}
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// !! TODO: Find a reasonable tolerance
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const double depthDiffTolerance = 0.1;
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// Find intervals containing depth values that should be connected
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size_t intStartIdx = startIdx;
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for (size_t vIdx = startIdx + 1; vIdx < stopIdx; vIdx += 2)
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{
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if (cvf::Math::abs(depthValues[vIdx + 1] - depthValues[vIdx]) > depthDiffTolerance)
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{
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intervals->push_back(std::make_pair(intStartIdx, vIdx));
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intStartIdx = vIdx + 1;
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}
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}
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if (intStartIdx <= stopIdx)
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{
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intervals->push_back(std::make_pair(intStartIdx, stopIdx));
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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bool RigWellLogCurveData::calculateMDRange(double* minimumDepth, double* maximumDepth) const
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{
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CVF_ASSERT(minimumDepth && maximumDepth);
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double minValue = HUGE_VAL;
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double maxValue = -HUGE_VAL;
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for (size_t vIdx = 0; vIdx < m_measuredDepths.size(); vIdx++)
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{
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double value = m_measuredDepths[vIdx];
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if (value < minValue)
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{
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minValue = value;
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}
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if (value > maxValue)
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{
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maxValue = value;
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}
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}
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if (maxValue >= minValue)
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{
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*minimumDepth = minValue;
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*maximumDepth = maxValue;
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return true;
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}
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return false;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RiaDefines::DepthUnitType RigWellLogCurveData::depthUnit() const
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{
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return m_depthUnit;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<double> RigWellLogCurveData::convertFromMeterToFeet(const std::vector<double>& valuesInMeter)
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{
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std::vector<double> valuesInFeet(valuesInMeter.size());
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for (size_t i = 0; i < valuesInMeter.size(); i++)
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{
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valuesInFeet[i] = valuesInMeter[i] * RiaEclipseUnitTools::feetPerMeter();
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}
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return valuesInFeet;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<double> RigWellLogCurveData::convertFromFeetToMeter(const std::vector<double>& valuesInFeet)
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{
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std::vector<double> valuesInMeter(valuesInFeet.size());
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for (size_t i = 0; i < valuesInFeet.size(); i++)
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{
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valuesInMeter[i] = valuesInFeet[i] / RiaEclipseUnitTools::feetPerMeter();
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}
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return valuesInMeter;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<double> RigWellLogCurveData::convertDepthValues(RiaDefines::DepthUnitType destinationDepthUnit, const std::vector<double>& values) const
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{
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CVF_ASSERT(destinationDepthUnit != m_depthUnit);
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if (destinationDepthUnit == RiaDefines::UNIT_METER)
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{
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return convertFromFeetToMeter(values);
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}
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else
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{
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return convertFromMeterToFeet(values);
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}
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}
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