#6364 Add scaffolding for exporting detailed fluid loss for Stimplan.

This commit is contained in:
Kristian Bendiksen 2020-08-25 11:39:32 +02:00
parent 9eb79fbb0e
commit ddc23fa5ea
8 changed files with 111 additions and 19 deletions

View File

@ -20,6 +20,7 @@
#include "RiaApplication.h"
#include "RimFractureModel.h"
#include "RimFractureModelPlot.h"
#include "RifFractureModelPlotExporter.h"
@ -61,7 +62,9 @@ void RicExportFractureModelPlotToFileFeature::onActionTriggered( bool isChecked
if ( fileName.isEmpty() ) return;
RifFractureModelPlotExporter::writeToFile( fractureModelPlot, fileName );
RifFractureModelPlotExporter::writeToFile( fractureModelPlot,
fractureModelPlot->fractureModel()->useDetailedFluidLoss(),
fileName );
// Remember the path to next time
app->setLastUsedDialogDirectory( "FRACTURE_MODEL_PLOT", QFileInfo( fileName ).absolutePath() );

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@ -26,7 +26,7 @@
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
bool RifFractureModelPlotExporter::writeToFile( RimFractureModelPlot* plot, const QString& filepath )
bool RifFractureModelPlotExporter::writeToFile( RimFractureModelPlot* plot, bool useDetailedLoss, const QString& filepath )
{
std::vector<QString> labels;
// TVD depth of top of zone (ft)
@ -56,13 +56,15 @@ bool RifFractureModelPlotExporter::writeToFile( RimFractureModelPlot* plot, cons
// Proppand Embedmeent (lb/ft^2)
labels.push_back( "pembed" );
bool useDetailedLoss = false;
if ( useDetailedLoss )
{
// B2 Detailed Loss
// Reservoir Pressure (psi)
labels.push_back( "zoneResPres" );
// Immobile Fluid Saturation (fraction)
labels.push_back( "zoneWaterSat" );
// Porosity (fraction)
labels.push_back( "zonePorosity" );
@ -71,22 +73,39 @@ bool RifFractureModelPlotExporter::writeToFile( RimFractureModelPlot* plot, cons
// Vertical Perm (md)
labels.push_back( "zoneVertPerm" );
// Temperature (F)
labels.push_back( "zoneTemp" );
// Relative permeability
labels.push_back( "zoneRelPerm" );
// Poro-Elastic constant
labels.push_back( "zonePoroElas" );
// Thermal Epansion Coefficient (1/F)
labels.push_back( "zoneThermalExp" );
}
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();
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["zoneWaterSat"] = plot->calculateImmobileFluidSaturation();
values["zonePorosity"] = plot->calculatePorosity();
values["zoneHorizPerm"] = plot->calculateHorizontalPermeability();
values["zoneVertPerm"] = plot->calculateVerticalPermeability();
values["zoneTemp"] = plot->calculateTemperature();
values["zoneRelPerm"] = plot->calculateRelativePermeabilityFactor();
values["zonePoroElas"] = plot->calculatePoroElasticConstant();
values["zoneThermalExp"] = plot->calculateThermalExpansionCoefficient();
QFile data( filepath );
if ( !data.open( QFile::WriteOnly | QFile::Truncate ) )

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@ -30,7 +30,7 @@ class QTextStream;
class RifFractureModelPlotExporter
{
public:
static bool writeToFile( RimFractureModelPlot* plot, const QString& filepath );
static bool writeToFile( RimFractureModelPlot* plot, bool useDetailedFluidLoss, const QString& filepath );
private:
static void appendToStream( QTextStream& stream, const QString& label, const std::vector<double>& values );

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@ -168,6 +168,8 @@ RimFractureModel::RimFractureModel()
"",
"" );
CAF_PDM_InitScriptableField( &m_useDetailedFluidLoss, "UseDetailedFluidLoss", true, "Use Detailed Fluid Loss", "", "", "" );
CAF_PDM_InitScriptableFieldNoDefault( &m_elasticProperties, "ElasticProperties", "Elastic Properties", "", "", "" );
m_elasticProperties.uiCapability()->setUiHidden( true );
m_elasticProperties.uiCapability()->setUiTreeHidden( true );
@ -188,6 +190,14 @@ bool RimFractureModel::isEnabled() const
return isChecked();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
bool RimFractureModel::useDetailedFluidLoss() const
{
return m_useDetailedFluidLoss();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------

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@ -85,6 +85,8 @@ public:
QString underburdenFormation() const;
QString underburdenFacies() const;
bool useDetailedFluidLoss() const;
// RimWellPathCompletionsInterface overrides.
RiaDefines::WellPathComponentType componentType() const override;
QString componentLabel() const override;
@ -151,4 +153,5 @@ protected:
caf::PdmField<QString> m_underburdenFormation;
caf::PdmField<QString> m_underburdenFacies;
caf::PdmField<double> m_underburdenFluidDensity;
caf::PdmField<bool> m_useDetailedFluidLoss;
};

View File

@ -59,6 +59,14 @@ void RimFractureModelPlot::setFractureModel( RimFractureModel* fractureModel )
m_fractureModel = fractureModel;
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
RimFractureModel* RimFractureModelPlot::fractureModel()
{
return m_fractureModel;
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
@ -526,3 +534,43 @@ std::vector<double> RimFractureModelPlot::calculateProppandEmbedment() const
{
return findCurveAndComputeLayeredAverage( RiaDefines::CurveProperty::PROPPANT_EMBEDMENT );
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::vector<double> RimFractureModelPlot::calculateImmobileFluidSaturation() const
{
return std::vector<double>();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::vector<double> RimFractureModelPlot::calculateTemperature() const
{
return std::vector<double>();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::vector<double> RimFractureModelPlot::calculateRelativePermeabilityFactor() const
{
return std::vector<double>();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::vector<double> RimFractureModelPlot::calculatePoroElasticConstant() const
{
return std::vector<double>();
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
std::vector<double> RimFractureModelPlot::calculateThermalExpansionCoefficient() const
{
return std::vector<double>();
}

View File

@ -56,7 +56,8 @@ public:
RimFractureModelPlot();
void setFractureModel( RimFractureModel* fractureModel );
void setFractureModel( RimFractureModel* fractureModel );
RimFractureModel* fractureModel();
void getPorosityValues( std::vector<double>& values ) const;
void getFaciesValues( std::vector<double>& values ) const;
@ -76,6 +77,12 @@ public:
std::vector<double> calculateSpurtLoss() const;
std::vector<double> calculateProppandEmbedment() const;
std::vector<double> calculateImmobileFluidSaturation() const;
std::vector<double> calculateTemperature() const;
std::vector<double> calculateRelativePermeabilityFactor() const;
std::vector<double> calculatePoroElasticConstant() const;
std::vector<double> calculateThermalExpansionCoefficient() const;
protected:
std::vector<double> findCurveAndComputeLayeredAverage( RiaDefines::CurveProperty curveProperty ) const;
std::vector<double> findCurveXValuesByProperty( RiaDefines::CurveProperty curveProperty ) const;

View File

@ -44,7 +44,9 @@ caf::PdmObjectHandle* RimcFractureModelPlot_exportToFile::execute()
{
RimFractureModelPlot* fractureModelPlot = self<RimFractureModelPlot>();
RifFractureModelPlotExporter::writeToFile( fractureModelPlot, m_filePath() );
RifFractureModelPlotExporter::writeToFile( fractureModelPlot,
fractureModelPlot->fractureModel()->useDetailedFluidLoss(),
m_filePath() );
return nullptr;
}