change to avoid zero-size windows in Actionx changes to improve Restart output content change to correct IUDQ for DEFINE corrections to IACN and SACN initial changes to add item to ZWEL further changes to add Action to well further changes to allow for action name in ZWEL more changes further changes to output action name to ZWEL changes to test/debug Restart write turn on writing of ZWEL again First running version of udq-actionx-rst use Action::Result direkte first working! version some corrections changes to allow for output of SACN [4.6.8] added debug print changes to improve IACN and IACT further corrections to Actionx IACN pluss error messages changes to adapt to well2 converted to well class further changes to enable restart with group control changes to adapt to newly merged code in master changes to include Intehead [51] - group control test changes to iGrp[nwgmax +7] initial changes for GUIDERATE changes to add guiderate parameters to the restart file add comment correction to guiderate - test if exist correction to DoubHead - test if GR exist correction to ISEG[8] correction for eclipse version Restart-file Cosmetic change corrections to igrp correction to segment type in iseg
582 lines
14 KiB
C++
582 lines
14 KiB
C++
/*
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Copyright 2018 Statoil ASA
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This file is part of the Open Porous Media project (OPM).
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OPM 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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OPM is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with OPM. If not, see <http://www.gnu.org/licenses/>.
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*/
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#define BOOST_TEST_MODULE Aggregate_Group_Data
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#include <opm/output/eclipse/AggregateGroupData.hpp>
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#include <boost/test/unit_test.hpp>
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#include <opm/output/eclipse/AggregateWellData.hpp>
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#include <opm/output/eclipse/VectorItems/intehead.hpp>
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#include <opm/output/eclipse/VectorItems/well.hpp>
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#include <opm/output/data/Wells.hpp>
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#include <opm/parser/eclipse/Deck/Deck.hpp>
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#include <opm/parser/eclipse/Parser/Parser.hpp>
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#include <opm/parser/eclipse/EclipseState/EclipseState.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/Schedule.hpp>
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#include <opm/parser/eclipse/EclipseState/Schedule/SummaryState.hpp>
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#include <exception>
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#include <stdexcept>
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#include <utility>
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#include <vector>
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#include <iostream>
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#include <cstddef>
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struct MockIH
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{
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MockIH(const int numWells,
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const int igrpPerGrp = 101, // no of data elements per group in IGRP array
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const int sgrpPerGrp = 112, // number of data elements per group in SGRP array
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const int xgrpPerGrp = 180, // number of data elements per group in XGRP array
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const int zgrpPerGrp = 5); // number of data elements per group in XGRP array
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std::vector<int> value;
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using Sz = std::vector<int>::size_type;
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Sz nwells;
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Sz nwgmax;
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Sz ngmaxz;
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Sz nigrpz;
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Sz nsgrpz;
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Sz nxgrpz;
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Sz nzgrpz;
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};
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MockIH::MockIH(const int numWells,
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const int igrpPerGrp,
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const int sgrpPerGrp,
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const int xgrpPerGrp,
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const int zgrpPerGrp)
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: value(411, 0)
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{
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using Ix = ::Opm::RestartIO::Helpers::VectorItems::intehead;
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this->nwells = this->value[Ix::NWELLS] = numWells;
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this->ngmaxz = this->value[Ix::NGMAXZ] = 5;
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this->nwgmax = this->value[Ix::NWGMAX] = 4;
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this->nigrpz = this->value[Ix::NIGRPZ] = igrpPerGrp;
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this->nsgrpz = this->value[Ix::NSGRPZ] = sgrpPerGrp;
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this->nxgrpz = this->value[Ix::NXGRPZ] = xgrpPerGrp;
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this->nzgrpz = this->value[Ix::NZGRPZ] = zgrpPerGrp;
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}
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namespace {
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Opm::Deck first_sim()
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{
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// Mostly copy of tests/FIRST_SIM.DATA
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const std::string input = std::string {
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R"~(
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RUNSPEC
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TITLE
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2 PRODUCERS AND INJECTORS, 2 WELL GROUPS AND ONE INTERMEDIATE GROUP LEVEL BELOW THE FIELD LEVEL
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DIMENS
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10 5 10 /
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OIL
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WATER
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GAS
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DISGAS
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FIELD
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TABDIMS
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1 1 15 15 2 15 /
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EQLDIMS
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2 /
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WELLDIMS
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4 20 4 2 /
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UNIFIN
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UNIFOUT
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--FMTIN
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--FMTOUT
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START
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1 'JAN' 2015 /
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-- RPTRUNSP
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GRID =========================================================
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--NOGGF
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BOX
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1 10 1 5 1 1 /
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TOPS
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50*7000 /
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BOX
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1 10 1 5 1 10 /
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DXV
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10*100 /
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DYV
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5*100 /
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DZV
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2*20 100 7*20 /
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EQUALS
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-- 'DX' 100 /
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-- 'DY' 100 /
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'PERMX' 50 /
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'PERMZ' 5 /
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-- 'DZ' 20 /
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'PORO' 0.2 /
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-- 'TOPS' 7000 1 10 1 5 1 1 /
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-- 'DZ' 100 1 10 1 5 3 3 /
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-- 'PORO' 0.0 1 10 1 5 3 3 /
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/
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COPY
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PERMX PERMY /
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/
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RPTGRID
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-- Report Levels for Grid Section Data
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--
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/
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PROPS ==========================================================
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-- WATER RELATIVE PERMEABILITY AND CAPILLARY PRESSURE ARE TABULATED AS
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-- A FUNCTION OF WATER SATURATION.
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--
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-- SWAT KRW PCOW
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SWFN
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0.12 0 0
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1.0 0.00001 0 /
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-- SIMILARLY FOR GAS
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--
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-- SGAS KRG PCOG
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SGFN
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0 0 0
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0.02 0 0
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0.05 0.005 0
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0.12 0.025 0
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0.2 0.075 0
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0.25 0.125 0
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0.3 0.19 0
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0.4 0.41 0
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0.45 0.6 0
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0.5 0.72 0
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0.6 0.87 0
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0.7 0.94 0
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0.85 0.98 0
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1.0 1.0 0
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/
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-- OIL RELATIVE PERMEABILITY IS TABULATED AGAINST OIL SATURATION
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-- FOR OIL-WATER AND OIL-GAS-CONNATE WATER CASES
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--
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-- SOIL KROW KROG
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SOF3
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0 0 0
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0.18 0 0
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0.28 0.0001 0.0001
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0.38 0.001 0.001
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0.43 0.01 0.01
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0.48 0.021 0.021
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0.58 0.09 0.09
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0.63 0.2 0.2
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0.68 0.35 0.35
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0.76 0.7 0.7
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0.83 0.98 0.98
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0.86 0.997 0.997
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0.879 1 1
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0.88 1 1 /
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-- PVT PROPERTIES OF WATER
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--
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-- REF. PRES. REF. FVF COMPRESSIBILITY REF VISCOSITY VISCOSIBILITY
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PVTW
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4014.7 1.029 3.13D-6 0.31 0 /
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-- ROCK COMPRESSIBILITY
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--
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-- REF. PRES COMPRESSIBILITY
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ROCK
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14.7 3.0D-6 /
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-- SURFACE DENSITIES OF RESERVOIR FLUIDS
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--
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-- OIL WATER GAS
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DENSITY
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49.1 64.79 0.06054 /
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-- PVT PROPERTIES OF DRY GAS (NO VAPOURISED OIL)
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-- WE WOULD USE PVTG TO SPECIFY THE PROPERTIES OF WET GAS
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--
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-- PGAS BGAS VISGAS
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PVDG
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14.7 166.666 0.008
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264.7 12.093 0.0096
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514.7 6.274 0.0112
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1014.7 3.197 0.014
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2014.7 1.614 0.0189
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2514.7 1.294 0.0208
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3014.7 1.080 0.0228
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4014.7 0.811 0.0268
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5014.7 0.649 0.0309
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9014.7 0.386 0.047 /
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-- PVT PROPERTIES OF LIVE OIL (WITH DISSOLVED GAS)
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-- WE WOULD USE PVDO TO SPECIFY THE PROPERTIES OF DEAD OIL
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--
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-- FOR EACH VALUE OF RS THE SATURATION PRESSURE, FVF AND VISCOSITY
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-- ARE SPECIFIED. FOR RS=1.27 AND 1.618, THE FVF AND VISCOSITY OF
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-- UNDERSATURATED OIL ARE DEFINED AS A FUNCTION OF PRESSURE. DATA
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-- FOR UNDERSATURATED OIL MAY BE SUPPLIED FOR ANY RS, BUT MUST BE
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-- SUPPLIED FOR THE HIGHEST RS (1.618).
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--
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-- RS POIL FVFO VISO
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PVTO
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0.001 14.7 1.062 1.04 /
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0.0905 264.7 1.15 0.975 /
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0.18 514.7 1.207 0.91 /
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0.371 1014.7 1.295 0.83 /
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0.636 2014.7 1.435 0.695 /
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0.775 2514.7 1.5 0.641 /
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0.93 3014.7 1.565 0.594 /
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1.270 4014.7 1.695 0.51
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5014.7 1.671 0.549
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9014.7 1.579 0.74 /
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1.618 5014.7 1.827 0.449
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9014.7 1.726 0.605 /
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/
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RPTPROPS
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-- PROPS Reporting Options
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--
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/
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REGIONS ===========================================================
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FIPNUM
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100*1
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400*2
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/
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EQLNUM
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100*1
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400*2
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/
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RPTREGS
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/
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SOLUTION ============================================================
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EQUIL
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7020.00 2700.00 7990.00 .00000 7020.00 .00000 0 0 5 /
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7200.00 3700.00 7300.00 .00000 7000.00 .00000 1 0 5 /
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RSVD 2 TABLES 3 NODES IN EACH FIELD 12:00 17 AUG 83
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7000.0 1.0000
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7990.0 1.0000
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/
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7000.0 1.0000
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7400.0 1.0000
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/
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RPTRST
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-- Restart File Output Control
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--
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'BASIC=2' 'FLOWS' 'POT' 'PRES' /
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SUMMARY ===========================================================
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FOPR
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WOPR
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/
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FGPR
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FWPR
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FWIR
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FWCT
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FGOR
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--RUNSUM
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ALL
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MSUMLINS
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MSUMNEWT
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SEPARATE
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SCHEDULE ===========================================================
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DEBUG
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1 3 /
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DRSDT
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1.0E20 /
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RPTSCHED
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'PRES' 'SWAT' 'SGAS' 'RESTART=1' 'RS' 'WELLS=2' 'SUMMARY=2'
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'CPU=2' 'WELSPECS' 'NEWTON=2' /
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NOECHO
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ECHO
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GRUPTREE
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'GRP1' 'FIELD' /
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'WGRP1' 'GRP1' /
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'WGRP2' 'GRP1' /
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/
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WELSPECS
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'PROD1' 'WGRP1' 1 5 7030 'OIL' 0.0 'STD' 'STOP' /
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'PROD2' 'WGRP2' 1 5 7030 'OIL' 0.0 'STD' 'STOP' /
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'WINJ1' 'WGRP1' 10 1 7030 'WAT' 0.0 'STD' 'STOP' /
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'WINJ2' 'WGRP2' 10 1 7030 'WAT' 0.0 'STD' 'STOP' /
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/
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COMPDAT
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'PROD1' 1 5 2 2 3* 0.2 3* 'X' /
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'PROD1' 2 5 2 2 3* 0.2 3* 'X' /
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'PROD1' 3 5 2 2 3* 0.2 3* 'X' /
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'PROD2' 4 5 2 2 3* 0.2 3* 'X' /
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'PROD2' 5 5 2 2 3* 0.2 3* 'X' /
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'WINJ1' 10 1 9 9 3* 0.2 3* 'X' /
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'WINJ1' 9 1 9 9 3* 0.2 3* 'X' /
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'WINJ1' 8 1 9 9 3* 0.2 3* 'X' /
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'WINJ2' 7 1 9 9 3* 0.2 3* 'X' /
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'WINJ2' 6 1 9 9 3* 0.2 3* 'X' /
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/
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WCONPROD
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'PROD1' 'OPEN' 'LRAT' 3* 1200 1* 2500 1* /
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'PROD2' 'OPEN' 'LRAT' 3* 800 1* 2500 1* /
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/
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WCONINJE
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'WINJ1' 'WAT' 'OPEN' 'BHP' 1* 1200 3500 1* /
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'WINJ2' 'WAT' 'OPEN' 'BHP' 1* 800 3500 1* /
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/
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TUNING
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/
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/
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/
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TSTEP
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4
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/
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END
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)~" };
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return Opm::Parser{}.parseString(input);
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}
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Opm::SummaryState sim_state()
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{
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auto state = Opm::SummaryState{std::chrono::system_clock::now()};
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state.update("GOPR:GRP1", 235.);
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state.update("GGPR:GRP1", 100237.);
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state.update("GWPR:GRP1", 239.);
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state.update("GOPR:WGRP1", 23.);
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state.update("GGPR:WGRP1", 50237.);
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state.update("GWPR:WGRP1", 29.);
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state.update("GOPR:WGRP2", 43.);
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state.update("GGPR:WGRP2", 70237.);
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state.update("GWPR:WGRP2", 59.);
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state.update("FOPR", 3456.);
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state.update("FGPR", 2003456.);
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state.update("FWPR", 5678.);
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return state;
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}
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}
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struct SimulationCase
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{
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explicit SimulationCase(const Opm::Deck& deck)
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: es ( deck )
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, sched (deck, es )
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{}
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// Order requirement: 'es' must be declared/initialised before 'sched'.
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Opm::EclipseState es;
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Opm::Schedule sched;
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};
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// =====================================================================
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BOOST_AUTO_TEST_SUITE(Aggregate_Group)
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// test dimensions of multisegment data
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BOOST_AUTO_TEST_CASE (Constructor)
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{
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const auto ih = MockIH{ 5 };
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const auto agrpd = Opm::RestartIO::Helpers::AggregateGroupData{ ih.value };
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BOOST_CHECK_EQUAL(agrpd.getIGroup().size(), ih.ngmaxz * ih.nigrpz);
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BOOST_CHECK_EQUAL(agrpd.getSGroup().size(), ih.ngmaxz * ih.nsgrpz);
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BOOST_CHECK_EQUAL(agrpd.getXGroup().size(), ih.ngmaxz * ih.nxgrpz);
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BOOST_CHECK_EQUAL(agrpd.getZGroup().size(), ih.ngmaxz * ih.nzgrpz);
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}
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BOOST_AUTO_TEST_CASE (Declared_Group_Data)
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{
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const auto simCase = SimulationCase{first_sim()};
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// Report Step 1: 2115-01-01 --> 2015-01-05
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const auto rptStep = std::size_t{1};
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const auto ih = MockIH {
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static_cast<int>(simCase.sched.getWells(rptStep).size())
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};
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BOOST_CHECK_EQUAL(ih.nwells, MockIH::Sz{4});
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const auto smry = sim_state();
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const auto& units = simCase.es.getUnits();
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auto agrpd = Opm::RestartIO::Helpers::AggregateGroupData{ih.value};
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agrpd.captureDeclaredGroupData(simCase.sched, units, rptStep, smry,
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ih.value);
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// IGRP (PROD)
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{
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auto start = 0*ih.nigrpz;
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const auto& iGrp = agrpd.getIGroup();
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BOOST_CHECK_EQUAL(iGrp[start + 0] , 2); // Group GRP1 - Child group number one - equal to group WGRP1 (no 2)
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BOOST_CHECK_EQUAL(iGrp[start + 1] , 3); // Group GRP1 - Child group number two - equal to group WGRP2 (no 3)
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BOOST_CHECK_EQUAL(iGrp[start + 4] , 2); // Group GRP1 - No of child groups
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BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 26] , 1); // Group GRP1 - Group type (well group = 0, node group = 1)
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BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 27] , 1); // Group GRP1 - Group level (FIELD level is 0)
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BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 28] , 5); // Group GRP1 - index of parent group (= 0 for FIELD)
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start = 1*ih.nigrpz;
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BOOST_CHECK_EQUAL(iGrp[start + 0] , 1); // Group WGRP1 - Child well number one - equal to well PROD1 (no 1)
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BOOST_CHECK_EQUAL(iGrp[start + 1] , 3); // Group WGRP1 - Child well number two - equal to well WINJ1 (no 3)
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BOOST_CHECK_EQUAL(iGrp[start + 4] , 2); // Group WGRP1 - No of child wells
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BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 26] , 0); // Group WGRP1 - Group type (well group = 0, node group = 1)
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BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 27] , 2); // Group WGRP1 - Group level (FIELD level is 0)
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BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 28] , 1); // Group GRP1 - index of parent group (= 0 for FIELD)
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start = (ih.ngmaxz-1)*ih.nigrpz;
|
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BOOST_CHECK_EQUAL(iGrp[start + 0] , 1); // Group FIELD - Child group number one - equal to group GRP1
|
|
BOOST_CHECK_EQUAL(iGrp[start + 4] , 1); // Group FIELD - No of child groups
|
|
BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 26] , 1); // Group FIELD - Group type (well group = 0, node group = 1)
|
|
BOOST_CHECK_EQUAL(iGrp[start + ih.nwgmax + 27] , 0); // Group FIELD - Group level (FIELD level is 0)
|
|
}
|
|
|
|
|
|
// XGRP (PROD)
|
|
{
|
|
auto start = 0*ih.nxgrpz;
|
|
|
|
const auto& xGrp = agrpd.getXGroup();
|
|
BOOST_CHECK_EQUAL(xGrp[start + 0] , 235.); // Group GRP1 - GOPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 1] , 239.); // Group GRP1 - GWPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 2] , 100237.); // Group GRP1 - GGPR
|
|
|
|
start = 1*ih.nxgrpz;
|
|
BOOST_CHECK_EQUAL(xGrp[start + 0] , 23.); // Group WGRP1 - GOPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 1] , 29.); // Group WGRP1 - GWPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 2] , 50237.); // Group WGRP1 - GGPR
|
|
|
|
start = 2*ih.nxgrpz;
|
|
BOOST_CHECK_EQUAL(xGrp[start + 0] , 43.); // Group WGRP2 - GOPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 1] , 59.); // Group WGRP2 - GWPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 2] , 70237.); // Group WGRP2 - GGPR
|
|
|
|
|
|
start = (ih.ngmaxz-1)*ih.nxgrpz;
|
|
BOOST_CHECK_EQUAL(xGrp[start + 0] , 3456.); // Group FIELD - FOPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 1] , 5678.); // Group FIELD - FWPR
|
|
BOOST_CHECK_EQUAL(xGrp[start + 2] , 2003456.); // Group FIELD - FGPR
|
|
}
|
|
|
|
// ZGRP (PROD)
|
|
{
|
|
auto start = 0*ih.nzgrpz;
|
|
|
|
const auto& zGrp = agrpd.getZGroup();
|
|
BOOST_CHECK_EQUAL(zGrp[start + 0].c_str() , "GRP1 "); // Group GRP1 - GOPR
|
|
|
|
start = 1*ih.nzgrpz;
|
|
BOOST_CHECK_EQUAL(zGrp[start + 0].c_str() , "WGRP1 "); // Group WGRP1 - GOPR
|
|
|
|
start = 2*ih.nzgrpz;
|
|
BOOST_CHECK_EQUAL(zGrp[start + 0].c_str() , "WGRP2 "); // Group WGRP2 - GOPR
|
|
|
|
start = (ih.ngmaxz-1)*ih.nzgrpz;
|
|
BOOST_CHECK_EQUAL(zGrp[start + 0].c_str() , "FIELD "); // Group FIELD - FOPR
|
|
}
|
|
|
|
|
|
}
|
|
|
|
|
|
BOOST_AUTO_TEST_SUITE_END()
|