Advances in enhanced oil recovery technologies for low permeability reservoirs
Достижения в технологиях повышения нефтеотдачи для низкопроницаемых коллекторов
2022-06-17
SCID: 54.1/67zfdtw6
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enhanced oil recoverygas floodinglow permeability reservoirsnanofluid floodingsurfactant flooding
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Abstract (AI)
Low permeability oil and gas resources are rich and have great potential all over the world, which has gradually become the main goal of oil and gas development. However, after traditional primary and secondary exploitation, there is still a large amount of remaining oil that has not been recovered. Therefore, in recent years, enhanced oil recovery (EOR) technologies for low permeability reservoirs have been greatly developed to further improve crude oil production. This study presents a comprehensive review of EOR technologies in low permeability reservoirs with an emphasis on gas flooding, surfactant flooding, nanofluid flooding and imbibition EOR technologies. In addition, two kinds of gel systems are introduced for conformance control in low permeability reservoirs with channeling problems. Finally, the technical challenges, directions and outlooks of EOR in low permeability reservoirs are addressed.
Key Findings
1
Low-permeability reservoirs retain substantial recoverable oil after conventional primary and secondary production, motivating enhanced oil recovery development.
2
The review comprehensively examines gas flooding, surfactant flooding, nanofluid flooding, and imbibition as major EOR technologies for low-permeability reservoirs.
3
The study identifies technical challenges and future development directions for implementing EOR technologies in low-permeability reservoirs.
4
Two gel systems are introduced for conformance control to address channeling problems in low-permeability reservoirs.
Research Object
low permeability reservoirs
Research Subject
enhanced oil recovery technologies and their effectiveness, including gas flooding, surfactant flooding, nanofluid flooding, imbibition EOR, and gel-based conformance control
Publication Details
Publication Date
2022-06-17
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