首页|期刊导航|Petroleum|Assessing the efficiency of long-term CO_(2) geological storage using an advanced multiphase compositional simulator

Assessing the efficiency of long-term CO_(2) geological storage using an advanced multiphase compositional simulatorOA

中文摘要

CO_(2) sequestration has a critical role in mitigating climate change impacts, thus we rely on numerical simulations to capture the processes of CO_(2) injection, migration, and long-term storage. This paper presents a comprehensive benchmarking study of an in-house built multiphase compositional simulator for CO_(2) storage modelling applications, emphasizing the accurate modeling of trapping mechanisms within geological formations. We perform rigorous tests to benchmark the simulator''s performance against established analytical solutions, focusing on the evolution of CO_(2) plumes, leakage rates through abandoned wells, and interactions of CO_(2) with the formation water. Our results demonstrate the simulator''s robustness in handling complex subsurface phenomena, including variable property simulations and the effects of hysteresis on plume behavior. These comparisons offer insights into the effects of parameter choices and boundary conditions on the simulation outcomes. Our work not only validates the simulator against known analytical solutions and numerical benchmarks, but also lays a foundation for future enhancements in our code, particularly in the area of geochemical interactions and the assessment of CO_(2) leakage on the security of the storage media.

Abdul Salam Abd;Ahmad Abushaikha

Division of Sustainable Development,College of Science and Engineering,Hamad Bin Khalifa University,Education City,Qatar Foundation,P.O.Box 5825,Doha,QatarDivision of Sustainable Development,College of Science and Engineering,Hamad Bin Khalifa University,Education City,Qatar Foundation,P.O.Box 5825,Doha,Qatar

资源环境

CO_(2)storageTrapping mechanismsNumerical simulationsBenchmarking

《Petroleum》 2026 (2)

P.230-253,24

supported by the Academic Research Grant ARG01-0502-230056 from Qatar Research,Development and Innovation(QRDI)Council

10.1016/j.petlm.2026.02.002

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