Open Access
Issue
E3S Web Conf.
Volume 358, 2022
5th International Conference on Green Energy and Sustainable Development (GESD 2022)
Article Number 02035
Number of page(s) 4
Section Regular Contributions
DOI https://doi.org/10.1051/e3sconf/202235802035
Published online 27 October 2022
  1. Xianzheng Zhao, Lihong Zhou, Min Zhao, et al. Breakthrough and practice of industrial development on continental shale oil:a case study on Kong-2 Member in Cangdong sag, Bohai Bay Basin[J]. China Petroleum Exploration, 2019, 24(05):589–600. [Google Scholar]
  2. Lanlan Yao, Zhengming Yang, Haibo Li, et al. High pressure mercury injection and nitrogen adsorption tests for shale oil reservoirs in Lower sub-member of first member of Shahezi Formation of Dagang Oilfield[J]. Petroleum Geology & Oilfield Development in Daqing, 2021, 40(04):162–168. DOI:10.19597/J.ISSN.1000-3754.202005050. [Google Scholar]
  3. Yin Shunli, Zhuang Tianlin, Yang Li yong, Jia Yunpeng, Liu Xuewei, Liu Yu, Yan Yu. Exploration and Practice of Volume Fracturing Technology of Shale Oil in Dagang Oilfield[J]. E3S Web of Conferences, 2021, 252. [Google Scholar]
  4. Jin L, Sorensen J, Hawthorne S, et al. In inproving oil transportability using CO2 in the Bakken system:A laboratorial investigation[C]. SPE 178948-MS, 2016. doi:10.2118/178948-MS [Google Scholar]
  5. Haitao Wang, Zengmin Lun, Changyuan Lv, et al. Nuclear-magnetic-resongance study on oil mobilization in shale exposed to CO2[C]. SPE 190185-PA, 2019. doi:10.2118/190185-PA [Google Scholar]
  6. Shen Z, Sheng JJ. Experimental and mumerical study of permeability reduction caused by asphaltene precipitation and deposition during CO2 huff-n-puff combined CO2 flooding injuection in Eagle Ford shale[J]. Fuel, 2018, 211:432–445. doi:10.1016/j.fuel.2017.09.047 [CrossRef] [Google Scholar]
  7. Todd HB, Evans JG. In Improved oil recovery IOR pilot projects in the Bakken Formation[C]. SPE 180270-MS, 2016. doi:10.2118/180270-MS [Google Scholar]
  8. Caineng Zou, Songqi Pan, Zhenhua Jing, et al. Shale oil and gas revolution an its impact[J]. Acta Petrolei Sinica, 2020, 41 (1): 1–12 [CrossRef] [PubMed] [Google Scholar]
  9. Lu Ding, Hongjian Ni. Effects of Supercritical CO2 Immersion on Mechanical Properties of Shale[J]. Science Technology and Engineering, 2019, 19(30):122–127. [Google Scholar]
  10. Hawthorne SB, Gorecki CD, Sorensen JA, et al. In hydrocarbon mobilization mechanisms form upper, middle,and lower Bakken reservoir rocks exposed to CO[C]. SPE 167200-MS, 2013. doi:10.2118/167200-MS [Google Scholar]
  11. Billemont P, Cosne B, Weireld G. Adsorption of carbon dio-xide,methane,and their mixtures in porous carbons:Effect of surface chemistry,water content,and pore disorder[J]. Aangmuir, 2013, 29(10): 3328–3338. doi:10.1021/la3048938 [Google Scholar]
  12. Lan Y, Yang Z, Wang P, et al. A review of microscopic seepage mechanism for shale gas extracted by supercritical CO2 flooding[J]. Fuel, 2019 238: 412–424. doi:10.1016/j.fuel.2018.10.130 [CrossRef] [Google Scholar]
  13. Argillier JF, Coustet C, Henaut I. Heavy oil rheology as a function of asphaltene and resin content and temperature[C]. SPE 79496-MS, 2002. doi:10.2118/79496-MS [Google Scholar]
  14. Rengui Zhang, Diren Liu, Cheng Peng, et al. Current status and prospects of China’s continental shale oil exploration and development[J]. Modern Chemical Industry, 2022, 42(03):6–10. DOI: 10.16606/j.cnki. Issn 0253-4320.2022.03.002. [Google Scholar]

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