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https://github.com/OPM/ResInsight.git
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225 lines
10 KiB
C++
225 lines
10 KiB
C++
/////////////////////////////////////////////////////////////////////////////////
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//
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// Copyright (C) 2018- 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 "RimWellPathAicdParameters.h"
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#include "RimPerforationInterval.h"
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#include "RimWellPath.h"
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#include "RimWellPathValve.h"
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#include "cafPdmDoubleStringValidator.h"
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#include "cafPdmUiDoubleValueEditor.h"
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#include "cafPdmUiGroup.h"
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#include "cafPdmUiLineEditor.h"
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#include <limits>
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CAF_PDM_SOURCE_INIT( RimWellPathAicdParameters, "WellPathAicdParameters" );
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RimWellPathAicdParameters::RimWellPathAicdParameters()
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{
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// clang-format off
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CAF_PDM_InitObject("RimWellPathAicdParameters", "", "", "");
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CAF_PDM_InitField(&m_deviceOpen, "DeviceOpen", true, "Device Open?", "", "", "");
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CAF_PDM_InitFieldNoDefault(&m_aicdParameterFields[AICD_STRENGTH], "StrengthAICD", "Strength of AICD", "", "", "");
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CAF_PDM_InitFieldNoDefault(&m_aicdParameterFields[AICD_DENSITY_CALIB_FLUID], "DensityCalibrationFluid", "Calibration Fluid Density (kg/m^3)", "", "", "");
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CAF_PDM_InitFieldNoDefault(&m_aicdParameterFields[AICD_VISCOSITY_CALIB_FLUID], "ViscosityCalibrationFluid", "Calibration Fluid Viscosity (cP)", "", "", "");
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CAF_PDM_InitFieldNoDefault(&m_aicdParameterFields[AICD_VOL_FLOW_EXP], "VolumeFlowRateExponent", "Volume Flow Rate Exponent", "", "", "");
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CAF_PDM_InitFieldNoDefault(&m_aicdParameterFields[AICD_VISOSITY_FUNC_EXP], "ViscosityFunctionExponent", "Viscosity Function Exponent", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_CRITICAL_WATER_IN_LIQUID_FRAC], "CriticalWaterLiquidFractionEmul", QString("1*"), "Critical Water in Liquid Fraction for emulsions", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EMULSION_VISC_TRANS_REGION], "ViscosityTransitionRegionEmul", QString("1*"), "Emulsion Viscosity Transition Region", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_MAX_RATIO_EMULSION_VISC], "MaxRatioOfEmulsionVisc", QString("1*"), "Max Ratio of Emulsion to Continuous Viscosity", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_MAX_FLOW_RATE], "MaxFlowRate", QString("1*"), "Max Flow Rate for AICD Device (m^3 / day)", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EXP_OIL_FRAC_DENSITY], "ExponentOilDensity", QString("1*"), "Density Exponent of Oil Fraction", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EXP_WATER_FRAC_DENSITY], "ExponentWaterDensity", QString("1*"), "Density Exponent of Water Fraction", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EXP_GAS_FRAC_DENSITY], "ExponentGasDensity", QString("1*"), "Density Exponent of Gas Fraction", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EXP_OIL_FRAC_VISCOSITY], "ExponentOilViscosity", QString("1*"), "Viscosity Exponent of Oil Fraction", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EXP_WATER_FRAC_VISCOSITY], "ExponentWaterViscosity", QString("1*"), "Viscosity Exponent of Water Fraction", "", "", "");
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CAF_PDM_InitField(&m_aicdParameterFields[AICD_EXP_GAS_FRAC_VISCOSITY], "ExponentGasViscosity", QString("1*"), "Viscosity Exponent of Gas Fraction", "", "", "");
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std::vector<caf::PdmFieldHandle*> allFields;
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this->fields(allFields);
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for (caf::PdmFieldHandle* field : allFields)
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{
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caf::PdmField<QString>* stringField = dynamic_cast<caf::PdmField<QString>*>(field);
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if (stringField)
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{
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stringField->uiCapability()->setUiEditorTypeName(caf::PdmUiLineEditor::uiEditorTypeName());
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}
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}
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// clang-format on
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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RimWellPathAicdParameters::~RimWellPathAicdParameters()
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{
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}
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//--------------------------------------------------------------------------------------------------
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/// Requires that all the required parameters are set and a proper value
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//--------------------------------------------------------------------------------------------------
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bool RimWellPathAicdParameters::isValid() const
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{
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for ( const caf::PdmField<QString>* stringField : stringFieldsWithNoValidDefault() )
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{
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if ( stringField->value().isEmpty() ) return false;
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bool ok = true;
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stringField->value().toDouble( &ok );
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if ( !ok ) return false;
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}
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return true;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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bool RimWellPathAicdParameters::isOpen() const
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{
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return m_deviceOpen;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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std::array<double, AICD_NUM_PARAMS> RimWellPathAicdParameters::doubleValues() const
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{
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std::array<double, AICD_NUM_PARAMS> doubleValues;
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for ( int i = 0; i < (int)AICD_NUM_PARAMS; ++i )
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{
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caf::PdmDoubleStringValidator validator( nullptr );
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QString stringValue = m_aicdParameterFields[(AICDParameters)i].value();
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bool ok = true;
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double doubleValue = stringValue.toDouble( &ok );
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if ( ok )
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{
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doubleValues[i] = doubleValue;
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}
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else
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{
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doubleValues[i] = std::numeric_limits<double>::infinity();
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}
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}
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return doubleValues;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimWellPathAicdParameters::defineUiOrdering( QString uiConfigName, caf::PdmUiOrdering& uiOrdering )
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{
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bool readOnly = uiConfigName == QString( "InsideValve" );
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uiOrdering.add( &m_deviceOpen );
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m_deviceOpen.uiCapability()->setUiReadOnly( readOnly );
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for ( int i = 0; i < (int)AICD_NUM_REQ_PARAMS; ++i )
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{
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uiOrdering.add( &m_aicdParameterFields[(AICDParameters)i] );
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m_aicdParameterFields[(AICDParameters)i].uiCapability()->setUiReadOnly( readOnly );
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}
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caf::PdmUiGroup* additionalGroup = uiOrdering.addNewGroup( "Additional Parameters" );
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for ( int i = (int)AICD_NUM_REQ_PARAMS; i < (int)AICD_NUM_PARAMS; ++i )
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{
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additionalGroup->add( &m_aicdParameterFields[(AICDParameters)i] );
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m_aicdParameterFields[(AICDParameters)i].uiCapability()->setUiReadOnly( readOnly );
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}
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additionalGroup->setCollapsedByDefault( true );
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimWellPathAicdParameters::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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const caf::PdmField<QString>* stringField = dynamic_cast<const caf::PdmField<QString>*>( field );
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caf::PdmUiLineEditorAttribute* lineEditorAttr = dynamic_cast<caf::PdmUiLineEditorAttribute*>( attribute );
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if ( stringField && lineEditorAttr )
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{
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if ( stringFieldsWithNoValidDefault().count( stringField ) )
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{
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lineEditorAttr->validator = new caf::PdmDoubleStringValidator( "" );
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}
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else
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{
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lineEditorAttr->validator = new caf::PdmDoubleStringValidator( "1*" );
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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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std::set<const caf::PdmField<QString>*> RimWellPathAicdParameters::stringFieldsWithNoValidDefault() const
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{
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std::set<const caf::PdmField<QString>*> fields;
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for ( int i = 0; i < (int)AICD_NUM_REQ_PARAMS; ++i )
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{
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fields.insert( &m_aicdParameterFields[(AICDParameters)i] );
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}
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return fields;
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}
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//--------------------------------------------------------------------------------------------------
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///
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//--------------------------------------------------------------------------------------------------
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void RimWellPathAicdParameters::setUnitLabels()
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{
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if ( isMetric() )
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{
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m_aicdParameterFields[AICD_DENSITY_CALIB_FLUID].uiCapability()->setUiName(
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"Calibration Fluid Density (kg / m ^ 3)" );
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m_aicdParameterFields[AICD_MAX_FLOW_RATE].uiCapability()->setUiName(
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"Max Flow Rate for AICD Device(m ^ 3 / day)" );
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}
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else
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{
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m_aicdParameterFields[AICD_DENSITY_CALIB_FLUID].uiCapability()->setUiName(
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"Calibration Fluid Density (lb / ft ^3)" );
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m_aicdParameterFields[AICD_MAX_FLOW_RATE].uiCapability()->setUiName(
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"Max Flow Rate for AICD Device(ft ^ 3 / day)" );
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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 RimWellPathAicdParameters::isMetric() const
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{
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bool metric = false;
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RimWellPath* wellPath;
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firstAncestorOrThisOfType( wellPath );
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if ( wellPath )
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{
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if ( wellPath->unitSystem() == RiaEclipseUnitTools::UnitSystem::UNITS_METRIC )
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{
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metric = true;
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}
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}
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return metric;
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}
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