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Forecasting CO2 Sequestration with Enhanced Oil Recovery

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Palabras clave – provistas por la editorial

geologic CO2 sequestration; CO2 and brine leakage; underground source of drinking water; risk assessment; response surface methodology; early detection criteria; multi-objective optimization; CO2-WAG; machine learning; numerical modeling; hybrid workflows; morrow; Farnsworth; Anadarko; incised valley; geological carbon sequestration; reactive surface area; mineral trapping; enhanced oil recovery with CO2 (CO2-EOR); geochemical reactions; workflow; workshop; process influence diagram; response surface model; polynomial chaos expansion; NRAP; relative permeability; geologic carbon storage; multi-phase flow simulation; life cycle analysis; CO2-enhanced oil recovery; anthropogenic CO2; global warming potential; greenhouse gas (GHG); carbon storage; CO2-EOR; CO2 sequestration; geomechanics; reservoir fluid flow modelling; tightness of caprock; CO2 leakage; threshold pressure; reactive solute transport; multi-phase fluid flow; Farnsworth Unit; STOMP; GEM; TOUGHREACT; 4D; time lapse; CO2; EOR; WAG; sequestration; monitoring; carbon sequestration; caprock integrity; noble gas migration; seal by-pass; carbon dioxide storage; storage efficiency factor; probabilistic; expectation curve; Monte Carlo; Farnsworth Field; petroleum system modeling; CO2 migration; n/a

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