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https://github.com/OPM/ResInsight.git
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Rename ApplicationCode to ApplicationLibCode
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/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2020- Equinor 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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#include "RifStimPlanModelGeologicalFrkExporter.h"
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#include "RiaLogging.h"
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#include "RimStimPlanModel.h"
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#include "RimStimPlanModelCalculator.h"
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#include <QFile>
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#include <QTextStream>
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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bool RifStimPlanModelGeologicalFrkExporter::writeToFile( RimStimPlanModel* stimPlanModel,
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bool useDetailedLoss,
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const QString& filepath )
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{
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std::vector<QString> labels;
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// TVD depth of top of zone (ft)
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labels.push_back( "dpthlyr" );
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// Stress at top of zone (psi)
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labels.push_back( "strs" );
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// Stress gradient (psi/ft)
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labels.push_back( "strsg" );
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// Young's modulus (MMpsi)
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labels.push_back( "elyr" );
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// Poisson's Ratio
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labels.push_back( "poissonr" );
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// K-Ic (psi*sqrt(in)
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labels.push_back( "tuflyr" );
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// Fluid Loss Coefficient
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labels.push_back( "clyrc" );
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// Spurt loss (gal/100f^2)
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labels.push_back( "clyrs" );
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// Proppand Embedmeent (lb/ft^2)
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labels.push_back( "pembed" );
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if ( useDetailedLoss )
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{
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// B2 Detailed Loss
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// Reservoir Pressure (psi)
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labels.push_back( "zoneResPres" );
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// Immobile Fluid Saturation (fraction)
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labels.push_back( "zoneWaterSat" );
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// Porosity (fraction)
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labels.push_back( "zonePorosity" );
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// Horizontal Perm (md)
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labels.push_back( "zoneHorizPerm" );
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// Vertical Perm (md)
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labels.push_back( "zoneVertPerm" );
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// Temperature (F)
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labels.push_back( "zoneTemp" );
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// Relative permeability
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labels.push_back( "zoneRelPerm" );
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// Poro-Elastic constant
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labels.push_back( "zonePoroElas" );
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// Thermal Epansion Coefficient (1/F)
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labels.push_back( "zoneThermalExp" );
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}
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std::vector<double> tvd = stimPlanModel->calculator()->calculateTrueVerticalDepth();
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// Warn if the generated model has too many layers for StimPlan
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if ( tvd.size() > MAX_STIMPLAN_LAYERS )
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{
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RiaLogging::warning(
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QString( "Exporting model with too many layers: %1. Maximum supported number of layers is %2." )
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.arg( tvd.size() )
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.arg( MAX_STIMPLAN_LAYERS ) );
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}
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// Make sure stress gradients are in the valid interval
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std::vector<double> stressGradients = stimPlanModel->calculator()->calculateStressGradient();
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fixupStressGradients( stressGradients, MIN_STRESS_GRADIENT, MAX_STRESS_GRADIENT, DEFAULT_STRESS_GRADIENT );
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std::map<QString, std::vector<double>> values;
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values["dpthlyr"] = tvd;
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values["strs"] = stimPlanModel->calculator()->calculateStress();
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values["strsg"] = stressGradients;
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values["elyr"] = stimPlanModel->calculator()->calculateYoungsModulus();
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values["poissonr"] = stimPlanModel->calculator()->calculatePoissonsRatio();
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values["tuflyr"] = stimPlanModel->calculator()->calculateKIc();
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values["clyrc"] = stimPlanModel->calculator()->calculateFluidLossCoefficient();
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values["clyrs"] = stimPlanModel->calculator()->calculateSpurtLoss();
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values["pembed"] = stimPlanModel->calculator()->calculateProppandEmbedment();
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values["zoneResPres"] = stimPlanModel->calculator()->calculateReservoirPressure();
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values["zoneWaterSat"] = stimPlanModel->calculator()->calculateImmobileFluidSaturation();
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values["zonePorosity"] = stimPlanModel->calculator()->calculatePorosity();
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values["zoneHorizPerm"] = stimPlanModel->calculator()->calculateHorizontalPermeability();
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values["zoneVertPerm"] = stimPlanModel->calculator()->calculateVerticalPermeability();
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values["zoneTemp"] = stimPlanModel->calculator()->calculateTemperature();
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values["zoneRelPerm"] = stimPlanModel->calculator()->calculateRelativePermeabilityFactor();
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values["zonePoroElas"] = stimPlanModel->calculator()->calculatePoroElasticConstant();
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values["zoneThermalExp"] = stimPlanModel->calculator()->calculateThermalExpansionCoefficient();
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QFile data( filepath );
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if ( !data.open( QFile::WriteOnly | QFile::Truncate ) )
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{
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return false;
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}
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QTextStream stream( &data );
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appendHeaderToStream( stream );
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for ( QString label : labels )
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{
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warnOnInvalidData( label, values[label] );
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appendToStream( stream, label, values[label] );
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}
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appendFooterToStream( stream );
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return true;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RifStimPlanModelGeologicalFrkExporter::appendHeaderToStream( QTextStream& stream )
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{
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stream << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>" << endl << "<geologic>" << endl;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RifStimPlanModelGeologicalFrkExporter::appendToStream( QTextStream& stream,
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const QString& label,
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const std::vector<double>& values )
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{
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stream << "<cNamedSet>" << endl
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<< "<name>" << endl
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<< label << endl
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<< "</name>" << endl
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<< "<dimCount>" << endl
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<< 1 << endl
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<< "</dimCount>" << endl
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<< "<sizes>" << endl
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<< values.size() << endl
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<< "</sizes>" << endl
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<< "<data>" << endl;
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for ( auto val : values )
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{
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stream << val << endl;
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}
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stream << "</data>" << endl << "</cNamedSet>" << endl;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RifStimPlanModelGeologicalFrkExporter::appendFooterToStream( QTextStream& stream )
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{
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stream << "</geologic>" << endl;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RifStimPlanModelGeologicalFrkExporter::fixupStressGradients( std::vector<double>& stressGradients,
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double minStressGradient,
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double maxStressGradient,
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double defaultStressGradient )
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{
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for ( size_t i = 0; i < stressGradients.size(); i++ )
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{
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if ( stressGradients[i] < minStressGradient || stressGradients[i] > maxStressGradient )
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{
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RiaLogging::warning(
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QString( "Found stress gradient outside valid range [%1, %2]. Replacing %3 with default value: %4." )
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.arg( minStressGradient )
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.arg( maxStressGradient )
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.arg( stressGradients[i] )
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.arg( defaultStressGradient ) );
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stressGradients[i] = defaultStressGradient;
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}
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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 RifStimPlanModelGeologicalFrkExporter::warnOnInvalidData( const QString& label, const std::vector<double>& values )
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{
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bool isInvalid = hasInvalidData( values );
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if ( isInvalid )
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{
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RiaLogging::warning( QString( "Found invalid data in Geological.FRK export of property '%1'." ).arg( label ) );
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}
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return isInvalid;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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bool RifStimPlanModelGeologicalFrkExporter::hasInvalidData( const std::vector<double>& values )
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{
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for ( auto v : values )
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{
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if ( std::isinf( v ) || std::isnan( v ) ) return true;
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}
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return false;
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}
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