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375 lines
14 KiB
C++
375 lines
14 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2016- Statoil 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 "RimSimWellFracture.h"
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#include "RigCell.h"
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#include "RigMainGrid.h"
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#include "RigSimWellData.h"
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#include "RimEclipseView.h"
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#include "RimEllipseFractureTemplate.h"
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#include "RimFracture.h"
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#include "RimFractureTemplate.h"
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#include "RimProject.h"
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#include "RimSimWellInView.h"
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#include "RigWellPath.h"
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#include "cafPdmUiDoubleSliderEditor.h"
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CAF_PDM_SOURCE_INIT(RimSimWellFracture, "SimWellFracture");
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RimSimWellFracture::RimSimWellFracture(void)
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{
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CAF_PDM_InitObject("SimWellFracture", ":/FractureSymbol16x16.png", "", "");
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CAF_PDM_InitField(&m_location, "MeasuredDepth", 0.0f, "Pseudo Length Location", "", "", "");
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m_location.uiCapability()->setUiEditorTypeName(caf::PdmUiDoubleSliderEditor::uiEditorTypeName());
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CAF_PDM_InitFieldNoDefault(&m_displayIJK, "Cell_IJK", "Cell IJK", "", "", "");
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m_displayIJK.registerGetMethod(this, &RimSimWellFracture::createOneBasedIJKText);
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m_displayIJK.uiCapability()->setUiReadOnly(true);
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m_displayIJK.xmlCapability()->disableIO();
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CAF_PDM_InitField(&m_branchIndex, "Branch", 0, "Branch", "", "", "");
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RimSimWellFracture::~RimSimWellFracture() {}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::setClosestWellCoord(cvf::Vec3d& position, size_t branchIndex)
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{
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computeSimWellBranchesIfRequired();
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double location = m_branchCenterLines[branchIndex].locationAlongWellCoords(position);
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m_branchIndex = static_cast<int>(branchIndex);
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m_location = location;
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updateFracturePositionFromLocation();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::updateAzimuthBasedOnWellAzimuthAngle()
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{
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computeSimWellBranchesIfRequired();
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if (!fractureTemplate()) return;
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if (fractureTemplate()->orientationType() == RimFractureTemplate::ALONG_WELL_PATH ||
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fractureTemplate()->orientationType() == RimFractureTemplate::TRANSVERSE_WELL_PATH)
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{
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double simWellAzimuth = wellAzimuthAtFracturePosition();
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if (fractureTemplate()->orientationType() == RimFractureTemplate::ALONG_WELL_PATH)
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{
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m_azimuth = simWellAzimuth;
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}
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else if (fractureTemplate()->orientationType() == RimFractureTemplate::TRANSVERSE_WELL_PATH)
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{
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if (simWellAzimuth + 90 < 360)
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m_azimuth = simWellAzimuth + 90;
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else
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m_azimuth = simWellAzimuth - 90;
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}
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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double RimSimWellFracture::wellAzimuthAtFracturePosition() const
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{
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double simWellAzimuth = m_branchCenterLines[m_branchIndex].simWellAzimuthAngle(fracturePosition());
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if (simWellAzimuth < 0) simWellAzimuth += 360;
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return simWellAzimuth;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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double RimSimWellFracture::wellDipAtFracturePosition()
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{
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computeSimWellBranchesIfRequired();
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double simWellDip = m_branchCenterLines[m_branchIndex].simWellDipAngle(fracturePosition());
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return simWellDip;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::loadDataAndUpdate()
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{
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computeSimWellBranchCenterLines();
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updateFracturePositionFromLocation();
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updateAzimuthBasedOnWellAzimuthAngle();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::vector<cvf::Vec3d> RimSimWellFracture::perforationLengthCenterLineCoords() const
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{
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std::vector<cvf::Vec3d> coords;
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if (!m_branchCenterLines.empty() && m_branchIndex < static_cast<int>(m_branchCenterLines.size()))
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{
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RigWellPath wellPathGeometry;
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wellPathGeometry.m_wellPathPoints = m_branchCenterLines[m_branchIndex].wellPathPoints();
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wellPathGeometry.m_measuredDepths = m_branchCenterLines[m_branchIndex].measuredDepths();
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double startMd = m_location - perforationLength() / 2.0;
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double endMd = m_location + perforationLength() / 2.0;
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coords = wellPathGeometry.clippedPointSubset(startMd, endMd).first;
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}
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return coords;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::fieldChangedByUi(const caf::PdmFieldHandle* changedField,
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const QVariant& oldValue,
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const QVariant& newValue)
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{
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RimFracture::fieldChangedByUi(changedField, oldValue, newValue);
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if (changedField == &m_location || changedField == &m_branchIndex)
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{
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updateFracturePositionFromLocation();
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RimFractureTemplate::FracOrientationEnum orientation;
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if (fractureTemplate())
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orientation = fractureTemplate()->orientationType();
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else
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orientation = RimFractureTemplate::AZIMUTH;
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if (orientation != RimFractureTemplate::AZIMUTH)
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{
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updateAzimuthBasedOnWellAzimuthAngle();
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}
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RimProject* proj;
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this->firstAncestorOrThisOfType(proj);
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if (proj) proj->reloadCompletionTypeResultsInAllViews();
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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 RimSimWellFracture::recomputeWellCenterlineCoordinates()
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{
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m_branchCenterLines.clear();
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computeSimWellBranchesIfRequired();
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::updateFracturePositionFromLocation()
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{
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computeSimWellBranchesIfRequired();
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if (m_branchCenterLines.size() > 0)
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{
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cvf::Vec3d interpolated = m_branchCenterLines[m_branchIndex()].interpolatedPointAlongWellPath(m_location());
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this->setAnchorPosition(interpolated);
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RimProject* proj;
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this->firstAncestorOrThisOfType(proj);
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if (proj) proj->scheduleCreateDisplayModelAndRedrawAllViews();
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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 RimSimWellFracture::defineUiOrdering(QString uiConfigName, caf::PdmUiOrdering& uiOrdering)
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{
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RimFracture::defineUiOrdering(uiConfigName, uiOrdering);
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uiOrdering.add(nameField());
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uiOrdering.add(&m_fractureTemplate);
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caf::PdmUiGroup* locationGroup = uiOrdering.addNewGroup("Location / Orientation");
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locationGroup->add(&m_location);
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locationGroup->add(&m_branchIndex);
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locationGroup->add(&m_azimuth);
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locationGroup->add(&m_uiWellPathAzimuth);
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locationGroup->add(&m_uiWellFractureAzimuthDiff);
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locationGroup->add(&m_wellFractureAzimuthAngleWarning);
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locationGroup->add(&m_dip);
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locationGroup->add(&m_tilt);
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caf::PdmUiGroup* propertyGroup = uiOrdering.addNewGroup("Properties");
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propertyGroup->add(&m_fractureUnit);
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propertyGroup->add(&m_stimPlanTimeIndexToPlot);
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propertyGroup->add(&m_perforationLength);
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propertyGroup->add(&m_perforationEfficiency);
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propertyGroup->add(&m_wellDiameter);
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caf::PdmUiGroup* fractureCenterGroup = uiOrdering.addNewGroup("Fracture Center Info");
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fractureCenterGroup->add(&m_uiAnchorPosition);
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fractureCenterGroup->add(&m_displayIJK);
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::defineEditorAttribute(const caf::PdmFieldHandle* field,
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QString uiConfigName,
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caf::PdmUiEditorAttribute* attribute)
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{
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RimFracture::defineEditorAttribute(field, uiConfigName, attribute);
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if (field == &m_location)
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{
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caf::PdmUiDoubleSliderEditorAttribute* myAttr = dynamic_cast<caf::PdmUiDoubleSliderEditorAttribute*>(attribute);
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if (myAttr)
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{
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computeSimWellBranchesIfRequired();
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if (m_branchCenterLines.size() > 0)
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{
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const RigSimulationWellCoordsAndMD& pointAndMd = m_branchCenterLines[m_branchIndex];
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myAttr->m_minimum = pointAndMd.measuredDepths().front();
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myAttr->m_maximum = pointAndMd.measuredDepths().back();
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myAttr->m_sliderTickCount = pointAndMd.measuredDepths().back();
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}
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}
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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QList<caf::PdmOptionItemInfo> RimSimWellFracture::calculateValueOptions(const caf::PdmFieldHandle* fieldNeedingOptions,
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bool* useOptionsOnly)
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{
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QList<caf::PdmOptionItemInfo> options = RimFracture::calculateValueOptions(fieldNeedingOptions, useOptionsOnly);
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if (fieldNeedingOptions == &m_branchIndex)
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{
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if (m_branchCenterLines.size() == 0)
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{
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computeSimWellBranchesIfRequired();
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}
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if (m_branchCenterLines.size() > 0)
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{
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size_t branchCount = m_branchCenterLines.size();
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for (size_t bIdx = 0; bIdx < branchCount; ++bIdx)
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{
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// Use 1-based index in UI
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options.push_back(caf::PdmOptionItemInfo(QString::number(bIdx + 1), QVariant::fromValue(bIdx)));
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}
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}
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}
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return options;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RigMainGrid* RimSimWellFracture::ownerCaseMainGrid() const
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{
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RimEclipseView* ownerEclView;
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this->firstAncestorOrThisOfType(ownerEclView);
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if (ownerEclView)
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return ownerEclView->mainGrid();
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else
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return nullptr;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimSimWellFracture::computeSimWellBranchesIfRequired()
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{
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if (m_branchCenterLines.size() == 0)
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{
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computeSimWellBranchCenterLines();
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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 RimSimWellFracture::computeSimWellBranchCenterLines()
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{
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m_branchCenterLines.clear();
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RimSimWellInView* rimWell = nullptr;
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this->firstAncestorOrThisOfType(rimWell);
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CVF_ASSERT(rimWell);
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std::vector<std::vector<cvf::Vec3d>> pipeBranchesCLCoords;
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std::vector<std::vector<RigWellResultPoint>> pipeBranchesCellIds;
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rimWell->calculateWellPipeStaticCenterLine(pipeBranchesCLCoords, pipeBranchesCellIds);
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for (const auto& branch : pipeBranchesCLCoords)
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{
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RigSimulationWellCoordsAndMD wellPathWithMD(branch);
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m_branchCenterLines.push_back(wellPathWithMD);
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}
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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QString RimSimWellFracture::createOneBasedIJKText() const
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{
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RigMainGrid* mainGrid = ownerCaseMainGrid();
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size_t i, j, k;
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size_t anchorCellIdx = mainGrid->findReservoirCellIndexFromPoint(anchorPosition());
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if (anchorCellIdx == cvf::UNDEFINED_SIZE_T) return "";
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size_t gridLocalCellIdx;
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const RigGridBase* hostGrid = mainGrid->gridAndGridLocalIdxFromGlobalCellIdx(anchorCellIdx, &gridLocalCellIdx);
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bool ok = hostGrid->ijkFromCellIndex(gridLocalCellIdx, &i, &j, &k);
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if (!ok) return "";
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return QString("Grid %1: [%2, %3, %4]").arg(QString::fromStdString(hostGrid->gridName())).arg(i + 1).arg(j + 1).arg(k + 1);
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}
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