mirror of
https://github.com/OPM/ResInsight.git
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135 lines
5.6 KiB
C++
135 lines
5.6 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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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 "RigFemPartResultCalculatorInitialPorosity.h"
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#include "RiaEclipseUnitTools.h"
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#include "RigFemPart.h"
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#include "RigFemPartCollection.h"
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#include "RigFemPartResultsCollection.h"
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#include "RigFemResultAddress.h"
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#include "RigFemScalarResultFrames.h"
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#include "cafProgressInfo.h"
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#include <QString>
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigFemPartResultCalculatorInitialPorosity::RigFemPartResultCalculatorInitialPorosity( RigFemPartResultsCollection& collection )
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: RigFemPartResultCalculator( collection )
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{
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigFemPartResultCalculatorInitialPorosity::~RigFemPartResultCalculatorInitialPorosity()
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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 RigFemPartResultCalculatorInitialPorosity::isMatching( const RigFemResultAddress& resVarAddr ) const
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{
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return ( resVarAddr.fieldName == "PORO-PERM" && resVarAddr.componentName == "PHI0" );
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigFemScalarResultFrames* RigFemPartResultCalculatorInitialPorosity::calculate( int partIndex,
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const RigFemResultAddress& resVarAddr )
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{
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caf::ProgressInfo frameCountProgress( m_resultCollection->frameCount() * 2, "" );
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frameCountProgress.setProgressDescription( "Calculating Initial Porosity" );
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frameCountProgress.setNextProgressIncrement( m_resultCollection->frameCount() );
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RigFemScalarResultFrames* voidRatioFrames =
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m_resultCollection->findOrLoadScalarResult( partIndex,
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RigFemResultAddress( resVarAddr.resultPosType, "VOIDR", "" ) );
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RigFemScalarResultFrames* porosityFrames =
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m_resultCollection->createScalarResult( partIndex,
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RigFemResultAddress( resVarAddr.resultPosType, resVarAddr.fieldName, "PHI0" ) );
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frameCountProgress.incrementProgress();
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const RigFemPart* femPart = m_resultCollection->parts()->part( partIndex );
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float inf = std::numeric_limits<float>::infinity();
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frameCountProgress.setNextProgressIncrement( 1u );
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int frameCount = voidRatioFrames->frameCount();
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for ( int fIdx = 0; fIdx < frameCount; ++fIdx )
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{
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const std::vector<float>& voidRatioData = voidRatioFrames->frameData( 0 );
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std::vector<float>& porosityFrameData = porosityFrames->frameData( fIdx );
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size_t valCount = voidRatioData.size();
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porosityFrameData.resize( valCount );
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int elementCount = femPart->elementCount();
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#pragma omp parallel for
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for ( int elmIdx = 0; elmIdx < elementCount; ++elmIdx )
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{
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RigElementType elmType = femPart->elementType( elmIdx );
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int elmNodeCount = RigFemTypes::elementNodeCount( femPart->elementType( elmIdx ) );
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if ( elmType == HEX8P )
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{
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for ( int elmNodIdx = 0; elmNodIdx < elmNodeCount; ++elmNodIdx )
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{
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size_t elmNodResIdx = femPart->elementNodeResultIdx( elmIdx, elmNodIdx );
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if ( elmNodResIdx < voidRatioData.size() )
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{
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int nodeIdx = femPart->nodeIdxFromElementNodeResultIdx( elmNodResIdx );
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// Calculate initial porosity
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double voidr = voidRatioData[elmNodResIdx];
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double initialPorosity = voidr / ( 1.0 + voidr );
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porosityFrameData[elmNodResIdx] = initialPorosity;
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}
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}
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}
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else
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{
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for ( int elmNodIdx = 0; elmNodIdx < elmNodeCount; ++elmNodIdx )
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{
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size_t elmNodResIdx = femPart->elementNodeResultIdx( elmIdx, elmNodIdx );
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if ( elmNodResIdx < voidRatioData.size() )
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{
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porosityFrameData[elmNodResIdx] = inf;
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}
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}
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}
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}
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frameCountProgress.incrementProgress();
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}
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RigFemScalarResultFrames* requestedResultFrames = m_resultCollection->findOrLoadScalarResult( partIndex, resVarAddr );
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return requestedResultFrames;
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}
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