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254 lines
10 KiB
C++
254 lines
10 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2022 - 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 "RigThermalFractureDefinition.h"
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#include "RiaEclipseUnitTools.h"
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#include "RiaLogging.h"
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#include <cmath>
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigThermalFractureDefinition::RigThermalFractureDefinition()
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: m_unitSystem( RiaDefines::EclipseUnitSystem::UNITS_UNKNOWN )
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{
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigThermalFractureDefinition::~RigThermalFractureDefinition()
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{
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigThermalFractureDefinition::setName( const QString& name )
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{
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m_name = name;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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QString RigThermalFractureDefinition::name() const
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{
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return m_name;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigThermalFractureDefinition::setUnitSystem( RiaDefines::EclipseUnitSystem unitSystem )
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{
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m_unitSystem = unitSystem;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RiaDefines::EclipseUnitSystem RigThermalFractureDefinition::unitSystem() const
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{
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return m_unitSystem;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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size_t RigThermalFractureDefinition::numNodes() const
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{
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if ( m_results.empty() ) return 0u;
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return m_results[0].numNodes();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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const std::vector<double>& RigThermalFractureDefinition::timeSteps() const
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{
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return m_timeSteps;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigThermalFractureDefinition::addTimeStep( double timeStep )
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{
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m_timeSteps.push_back( timeStep );
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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size_t RigThermalFractureDefinition::numTimeSteps() const
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{
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return m_timeSteps.size();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigThermalFractureDefinition::addProperty( const QString& name, const QString& unit )
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{
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m_results.push_back( RigThermalFractureResult( name, unit ) );
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<std::pair<QString, QString>> RigThermalFractureDefinition::getPropertyNamesUnits() const
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{
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std::vector<std::pair<QString, QString>> namesAndUnits;
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for ( auto r : m_results )
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namesAndUnits.push_back( std::make_pair( r.name(), r.unit() ) );
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return namesAndUnits;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RigThermalFractureDefinition::appendPropertyValue( int propertyIndex, int nodeIndex, double value )
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{
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CAF_ASSERT( propertyIndex >= 0 );
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CAF_ASSERT( propertyIndex < static_cast<int>( m_results.size() ) );
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m_results[propertyIndex].appendValue( nodeIndex, value );
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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double RigThermalFractureDefinition::getPropertyValue( int propertyIndex, int nodeIndex, int timeStepIndex ) const
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{
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return m_results[propertyIndex].getValue( nodeIndex, timeStepIndex );
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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int RigThermalFractureDefinition::getPropertyIndex( const QString& name ) const
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{
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for ( size_t i = 0; i < m_results.size(); i++ )
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if ( name == m_results[i].name() ) return static_cast<int>( i );
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return -1;
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};
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<cvf::Vec3d> RigThermalFractureDefinition::relativeCoordinates( int timeStepIndex ) const
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{
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std::vector<cvf::Vec3d> relCoords;
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int xIndex = getPropertyIndex( "XCoord" );
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int yIndex = getPropertyIndex( "YCoord" );
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int zIndex = getPropertyIndex( "ZCoord" );
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if ( xIndex == -1 || yIndex == -1 || zIndex == -1 )
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{
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return relCoords;
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}
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// The first node is the center node
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int centerNodeIndex = 0;
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cvf::Vec3d centerNode( getPropertyValue( xIndex, centerNodeIndex, timeStepIndex ),
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getPropertyValue( yIndex, centerNodeIndex, timeStepIndex ),
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getPropertyValue( zIndex, centerNodeIndex, timeStepIndex ) );
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for ( size_t nodeIndex = 0; nodeIndex < numNodes(); nodeIndex++ )
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{
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cvf::Vec3d nodePos( getPropertyValue( xIndex, static_cast<int>( nodeIndex ), timeStepIndex ),
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getPropertyValue( yIndex, static_cast<int>( nodeIndex ), timeStepIndex ),
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getPropertyValue( zIndex, static_cast<int>( nodeIndex ), timeStepIndex ) );
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relCoords.push_back( nodePos - centerNode );
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}
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return relCoords;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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cvf::Vec3d RigThermalFractureDefinition::centerPosition() const
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{
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int xIndex = getPropertyIndex( "XCoord" );
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int yIndex = getPropertyIndex( "YCoord" );
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int zIndex = getPropertyIndex( "ZCoord" );
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if ( xIndex == -1 || yIndex == -1 || zIndex == -1 )
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{
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return cvf::Vec3d::UNDEFINED;
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}
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// The first node is the center node
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int centerNodeIndex = 0;
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int timeStepIndex = 0;
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cvf::Vec3d centerNode( getPropertyValue( xIndex, centerNodeIndex, timeStepIndex ),
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getPropertyValue( yIndex, centerNodeIndex, timeStepIndex ),
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getPropertyValue( zIndex, centerNodeIndex, timeStepIndex ) );
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return centerNode;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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cvf::BoundingBox RigThermalFractureDefinition::getBoundingBox( int timeStepIndex ) const
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{
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std::vector<cvf::Vec3d> coords;
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cvf::BoundingBox bb;
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int xIndex = getPropertyIndex( "XCoord" );
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int yIndex = getPropertyIndex( "YCoord" );
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int zIndex = getPropertyIndex( "ZCoord" );
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if ( xIndex == -1 || yIndex == -1 || zIndex == -1 )
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{
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return bb;
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}
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for ( size_t nodeIndex = 0; nodeIndex < numNodes(); nodeIndex++ )
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{
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cvf::Vec3d nodePos( getPropertyValue( xIndex, static_cast<int>( nodeIndex ), timeStepIndex ),
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getPropertyValue( yIndex, static_cast<int>( nodeIndex ), timeStepIndex ),
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getPropertyValue( zIndex, static_cast<int>( nodeIndex ), timeStepIndex ) );
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bb.add( nodePos );
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}
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return bb;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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double RigThermalFractureDefinition::minDepth( int timeStepIndex ) const
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{
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return getBoundingBox( timeStepIndex ).min().z();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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double RigThermalFractureDefinition::maxDepth( int timeStepIndex ) const
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{
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return getBoundingBox( timeStepIndex ).max().z();
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}
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