Mechanism study on the influence of wettability on CO2 displacement of shale oil in nanopores
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Elsevier BV
Reference30 articles.
1. Evaluation technology and practice of continental shale oil development in China;Li;Pet Explor Dev,2022
2. Fluid flow and efficient development technologies in unconventional reservoirs: State-of-the-art methods and future perspectives;Wang;Adv Geo-energy Res,2024
3. Shale oil and gas exploitation in China: Technical comparison with US and development suggestions;Lei;Pet Explor Dev,2019
4. Evaluating seepage radius of tight oil reservoir using digital core modeling approach;Lv;J Pet Sci Eng,2019
5. Enrichment factors of movable hydrocarbons in lacustrine shale oil and exploration potential of shale oil in Gulong Sag, Songliao Basin, NE China. Petroleum Exploration and Development, 2023, 50: 455-467.
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