ResInsight/ApplicationLibCode/ReservoirDataModel/ResultAccessors/RigResultAccessorFactory.cpp
jonjenssen 3d663797b6
Depth plot as docking widget (#9909)
* Add docked depth result plot for eclipse data
* Update dock layout defaults
2023-03-03 15:21:01 +01:00

381 lines
20 KiB
C++

/////////////////////////////////////////////////////////////////////////////////
//
// Copyright (C) Statoil ASA
// Copyright (C) Ceetron Solutions AS
//
// 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 "RigResultAccessorFactory.h"
#include "RigActiveCellInfo.h"
#include "RigActiveCellsResultAccessor.h"
#include "RigAllGridCellsResultAccessor.h"
#include "RigCaseCellResultsData.h"
#include "RigCombMultResultAccessor.h"
#include "RigCombTransResultAccessor.h"
#include "RigEclipseCaseData.h"
#include "RigFlowDiagResults.h"
#include "RigGridBase.h"
#include "RigMainGrid.h"
#include "RigResultAccessor.h"
#include "RimEclipseResultDefinition.h"
#include "RimFlowDiagSolution.h"
#include <cmath>
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
cvf::ref<RigResultAccessor> RigResultAccessorFactory::createFromResultDefinition( const RigEclipseCaseData* eclipseCase,
size_t gridIndex,
size_t timeStepIndex,
const RimEclipseResultDefinition* resultDefinition )
{
if ( resultDefinition->isFlowDiagOrInjectionFlooding() )
{
RimFlowDiagSolution* flowSol = resultDefinition->flowDiagSolution();
if ( !flowSol ) return new RigHugeValResultAccessor;
;
const std::vector<double>* resultValues =
flowSol->flowDiagResults()->resultValues( resultDefinition->flowDiagResAddress(), timeStepIndex );
if ( !resultValues ) return new RigHugeValResultAccessor;
const RigGridBase* grid = eclipseCase->grid( gridIndex );
if ( !grid ) return new RigHugeValResultAccessor;
cvf::ref<RigResultAccessor> object =
new RigActiveCellsResultAccessor( grid, resultValues, eclipseCase->activeCellInfo( resultDefinition->porosityModel() ) );
return object;
}
else
{
return RigResultAccessorFactory::createFromResultAddress( eclipseCase,
gridIndex,
resultDefinition->porosityModel(),
timeStepIndex,
resultDefinition->eclipseResultAddress() );
}
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
cvf::ref<RigResultAccessor> RigResultAccessorFactory::createFromResultAddress( const RigEclipseCaseData* eclipseCase,
size_t gridIndex,
RiaDefines::PorosityModelType porosityModel,
size_t timeStepIndex,
const RigEclipseResultAddress& resVarAddr )
{
if ( !eclipseCase || !eclipseCase->results( porosityModel ) || !eclipseCase->activeCellInfo( porosityModel ) )
{
return nullptr;
}
if ( !eclipseCase->results( porosityModel )->hasResultEntry( resVarAddr ) )
{
return nullptr;
}
size_t adjustedTimeStepIndex = timeStepIndex;
if ( resVarAddr.resultCatType() == RiaDefines::ResultCatType::STATIC_NATIVE ||
resVarAddr.resultCatType() == RiaDefines::ResultCatType::FORMATION_NAMES ||
resVarAddr.resultCatType() == RiaDefines::ResultCatType::ALLAN_DIAGRAMS )
{
adjustedTimeStepIndex = 0;
}
else if ( resVarAddr.resultCatType() == RiaDefines::ResultCatType::INPUT_PROPERTY )
{
if ( eclipseCase->results( porosityModel )->timeStepCount( resVarAddr ) == 1 )
{
adjustedTimeStepIndex = 0;
}
}
cvf::ref<RigResultAccessor> derivedCandidate =
createCombinedResultAccessor( eclipseCase, gridIndex, porosityModel, adjustedTimeStepIndex, resVarAddr );
if ( derivedCandidate.notNull() ) return derivedCandidate;
return createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, adjustedTimeStepIndex, resVarAddr );
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
cvf::ref<RigResultAccessor> RigResultAccessorFactory::createCombinedResultAccessor( const RigEclipseCaseData* eclipseCase,
size_t gridIndex,
RiaDefines::PorosityModelType porosityModel,
size_t timeStepIndex,
const RigEclipseResultAddress& resVarAddr )
{
CVF_ASSERT( gridIndex < eclipseCase->gridCount() );
CVF_ASSERT( eclipseCase );
CVF_ASSERT( eclipseCase->results( porosityModel ) );
CVF_ASSERT( eclipseCase->activeCellInfo( porosityModel ) );
RigEclipseResultAddress nativeAddr( resVarAddr );
const RigGridBase* grid = eclipseCase->grid( gridIndex );
if ( resVarAddr.resultName() == RiaResultNames::combinedTransmissibilityResultName() )
{
CVF_ASSERT( timeStepIndex == 0 ); // Static result, only data for first time step
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( "TRANX" );
cvf::ref<RigResultAccessor> xTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "TRANY" );
cvf::ref<RigResultAccessor> yTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "TRANZ" );
cvf::ref<RigResultAccessor> zTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xTransAccessor.p(), yTransAccessor.p(), zTransAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedMultResultName() )
{
CVF_ASSERT( timeStepIndex == 0 ); // Static result, only data for first time step
cvf::ref<RigCombMultResultAccessor> cellFaceAccessObject = new RigCombMultResultAccessor( grid );
nativeAddr.setResultName( "MULTX" );
cvf::ref<RigResultAccessor> multXPos =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "MULTX-" );
cvf::ref<RigResultAccessor> multXNeg =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "MULTY" );
cvf::ref<RigResultAccessor> multYPos =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "MULTY-" );
cvf::ref<RigResultAccessor> multYNeg =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "MULTZ" );
cvf::ref<RigResultAccessor> multZPos =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "MULTZ-" );
cvf::ref<RigResultAccessor> multZNeg =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setMultResultAccessors( multXPos.p(), multXNeg.p(), multYPos.p(), multYNeg.p(), multZPos.p(), multZNeg.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedRiTranResultName() )
{
CVF_ASSERT( timeStepIndex == 0 ); // Static result, only data for first time step
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( RiaResultNames::riTranXResultName() );
cvf::ref<RigResultAccessor> xTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( RiaResultNames::riTranYResultName() );
cvf::ref<RigResultAccessor> yTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( RiaResultNames::riTranZResultName() );
cvf::ref<RigResultAccessor> zTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xTransAccessor.p(), yTransAccessor.p(), zTransAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedRiMultResultName() )
{
CVF_ASSERT( timeStepIndex == 0 ); // Static result, only data for first time step
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( RiaResultNames::riMultXResultName() );
cvf::ref<RigResultAccessor> xRiMultAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( RiaResultNames::riMultYResultName() );
cvf::ref<RigResultAccessor> yRiMultAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( RiaResultNames::riMultZResultName() );
cvf::ref<RigResultAccessor> zRiMultAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xRiMultAccessor.p(), yRiMultAccessor.p(), zRiMultAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedRiAreaNormTranResultName() )
{
CVF_ASSERT( timeStepIndex == 0 ); // Static result, only data for first time step
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( RiaResultNames::riAreaNormTranXResultName() );
cvf::ref<RigResultAccessor> xRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( RiaResultNames::riAreaNormTranYResultName() );
cvf::ref<RigResultAccessor> yRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( RiaResultNames::riAreaNormTranZResultName() );
cvf::ref<RigResultAccessor> zRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xRiAreaNormTransAccessor.p(), yRiAreaNormTransAccessor.p(), zRiAreaNormTransAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedWaterFluxResultName() )
{
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( "FLRWATI+" );
cvf::ref<RigResultAccessor> xRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "FLRWATJ+" );
cvf::ref<RigResultAccessor> yRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "FLRWATK+" );
cvf::ref<RigResultAccessor> zRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xRiAreaNormTransAccessor.p(), yRiAreaNormTransAccessor.p(), zRiAreaNormTransAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedOilFluxResultName() )
{
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( "FLROILI+" );
cvf::ref<RigResultAccessor> xRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "FLROILJ+" );
cvf::ref<RigResultAccessor> yRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "FLROILK+" );
cvf::ref<RigResultAccessor> zRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xRiAreaNormTransAccessor.p(), yRiAreaNormTransAccessor.p(), zRiAreaNormTransAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName() == RiaResultNames::combinedGasFluxResultName() )
{
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
nativeAddr.setResultName( "FLRGASI+" );
cvf::ref<RigResultAccessor> xRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "FLRGASJ+" );
cvf::ref<RigResultAccessor> yRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( "FLRGASK+" );
cvf::ref<RigResultAccessor> zRiAreaNormTransAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( xRiAreaNormTransAccessor.p(), yRiAreaNormTransAccessor.p(), zRiAreaNormTransAccessor.p() );
return cellFaceAccessObject;
}
else if ( resVarAddr.resultName().endsWith( "IJK" ) )
{
cvf::ref<RigCombTransResultAccessor> cellFaceAccessObject = new RigCombTransResultAccessor( grid );
QString baseName = resVarAddr.resultName().left( resVarAddr.resultName().size() - 3 );
nativeAddr.setResultName( QString( "%1I" ).arg( baseName ) );
cvf::ref<RigResultAccessor> iAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( QString( "%1J" ).arg( baseName ) );
cvf::ref<RigResultAccessor> jAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
nativeAddr.setResultName( QString( "%1K" ).arg( baseName ) );
cvf::ref<RigResultAccessor> kAccessor =
RigResultAccessorFactory::createNativeFromResultAddress( eclipseCase, gridIndex, porosityModel, timeStepIndex, nativeAddr );
cellFaceAccessObject->setTransResultAccessors( iAccessor.p(), jAccessor.p(), kAccessor.p() );
return cellFaceAccessObject;
}
return nullptr;
}
//--------------------------------------------------------------------------------------------------
///
//--------------------------------------------------------------------------------------------------
cvf::ref<RigResultAccessor> RigResultAccessorFactory::createNativeFromResultAddress( const RigEclipseCaseData* eclipseCase,
size_t gridIndex,
RiaDefines::PorosityModelType porosityModel,
size_t timeStepIndex,
const RigEclipseResultAddress& resultAddress )
{
if ( !eclipseCase || !eclipseCase->results( porosityModel ) || !eclipseCase->activeCellInfo( porosityModel ) )
{
return nullptr;
}
if ( !eclipseCase->results( porosityModel )->hasResultEntry( resultAddress ) )
{
return nullptr;
}
if ( !resultAddress.isValid() )
{
return nullptr;
}
const RigGridBase* grid = eclipseCase->grid( gridIndex );
if ( !grid )
{
return nullptr;
}
const std::vector<std::vector<double>>& scalarSetResults = eclipseCase->results( porosityModel )->cellScalarResults( resultAddress );
if ( timeStepIndex >= scalarSetResults.size() )
{
return new RigHugeValResultAccessor;
}
const std::vector<double>* resultValues = nullptr;
if ( timeStepIndex < scalarSetResults.size() )
{
resultValues = &( scalarSetResults[timeStepIndex] );
}
if ( !resultValues || resultValues->size() == 0 )
{
return new RigHugeValResultAccessor;
}
bool useGlobalActiveIndex = eclipseCase->results( porosityModel )->isUsingGlobalActiveIndex( resultAddress );
if ( useGlobalActiveIndex )
{
cvf::ref<RigResultAccessor> object =
new RigActiveCellsResultAccessor( grid, resultValues, eclipseCase->activeCellInfo( porosityModel ) );
return object;
}
else
{
cvf::ref<RigResultAccessor> object = new RigAllGridCellsResultAccessor( grid, resultValues );
return object;
}
}