ResInsight/ApplicationCode/FileInterface/RifFractureModelPlotExporter.cpp
2020-06-18 19:11:37 +02:00

128 lines
3.8 KiB
C++

/////////////////////////////////////////////////////////////////////////////////
//
// Copyright (C) 2020- Equinor ASA
//
// ResInsight is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// ResInsight is distributed in the hope that it will be useful, but WITHOUT ANY
// WARRANTY; without even the implied warranty of MERCHANTABILITY or
// FITNESS FOR A PARTICULAR PURPOSE.
//
// See the GNU General Public License at <http://www.gnu.org/licenses/gpl.html>
// for more details.
//
/////////////////////////////////////////////////////////////////////////////////
#include "RifFractureModelPlotExporter.h"
#include "RimFractureModelPlot.h"
#include <QFile>
#include <QTextStream>
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
bool RifFractureModelPlotExporter::writeToFile( RimFractureModelPlot* plot, const QString& filepath )
{
std::vector<QString> labels;
// TVD depth of top of zone (ft)
labels.push_back( "dpthlyr" );
// Stress at top of zone (psi)
labels.push_back( "strs" );
// Stress gradient (psi/ft)
labels.push_back( "strsg" );
// Young's modulus (MMpsi)
labels.push_back( "elyr" );
// Poisson's Ratio
labels.push_back( "poissonr" );
// K-Ic (psi*sqrt(in)
labels.push_back( "tuflyr" );
// Fluid Loss Coefficient
labels.push_back( "clyrc" );
// Spurt loss (gal/100f^2)
labels.push_back( "clyrs" );
// Proppand Embedmeent (lb/ft^2)
labels.push_back( "pembed" );
bool useDetailedLoss = false;
if ( useDetailedLoss )
{
// B2 Detailed Loss
// Reservoir Pressure (psi)
labels.push_back( "zoneResPres" );
// Porosity (fraction)
labels.push_back( "zonePorosity" );
// Horizontal Perm (md)
labels.push_back( "zoneHorizPerm" );
// Vertical Perm (md)
labels.push_back( "zoneVertPerm" );
}
std::map<QString, std::vector<double>> values;
values["dpthlyr"] = plot->calculateTrueVerticalDepth();
values["strs"] = plot->calculateStress();
values["strsg"] = plot->calculateStressGradient();
values["elyr"] = plot->calculateYoungsModulus();
values["poissonr"] = plot->calculatePoissonsRatio();
values["tuflyr"] = plot->calculateKIc();
values["clyrc"] = plot->calculateFluidLossCoefficient();
values["clyrs"] = plot->calculateSpurtLoss();
values["pembed"] = plot->calculateProppandEmbedment();
values["zoneResPres"] = plot->calculateReservoirPressure();
values["zonePorosity"] = plot->calculatePorosity();
values["zoneHorizPerm"] = plot->calculateHorizontalPermeability();
values["zoneVertPerm"] = plot->calculateVerticalPermeability();
QFile data( filepath );
if ( !data.open( QFile::WriteOnly | QFile::Truncate ) )
{
return false;
}
QTextStream stream( &data );
for ( QString label : labels )
{
appendToStream( stream, label, values[label] );
}
return true;
}
void RifFractureModelPlotExporter::appendToStream( QTextStream& stream, const QString& label, const std::vector<double>& values )
{
stream << "<cNamedSet>"
<< "\n"
<< label << "\n"
<< "<dimCount>"
<< "\n"
<< 1 << "\n"
<< "<sizes>"
<< "\n"
<< values.size() << "\n"
<< "<data>"
<< "\n";
for ( auto val : values )
{
stream << val << "\n";
}
stream << "</cNamedSet>"
<< "\n";
}