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[2]
Characteristics; Types; and Prospects of Geological Sweet Sections in Giant Continental Shale Oil Provinces in China[J] Zhi Yang;Caineng Zou;Songtao Wu;Songqi Pan;Xiaoni Wang;Haitao Liu;Wenqi Jiang;Jiarui Li;Qiyan Li;Xiaobing Niu;Guohui Li;Zhenxing Tang;Xuguang Guo;Dong Huang;Qizhao Wei; Journal of Earth Science 2022, 05
[4]
Classification and characteristics of tight oil plays[J] Xin-Shun Zhang;Hong-Jun Wang;Feng Ma;Xiang-Can Sun;Yan Zhang;Zhi-Hui Song; Petroleum Science 2016, 01
[5]
Correction Method of Light Hydrocarbons Losing and Heavy Hydrocarbon Handling for Residual Hydrocarbon (S_1) from Shale[J] WANG Min;TIAN Shansi;CHEN Guohui;XUE Haitao;HUANG Aihua;WANG Wenguang; Acta Geologica Sinica(English Edition) 2014, 06
[6]
Relating T<sub>max</sub> and hydrogen index to vitrinite and solid bitumen reflectance in hydrous pyrolysis residues: Comparisons to natural thermal indices[J] Lohr Celeste D.;Hackley Paul C. International Journal of Coal Geology 2021,
[7]
Consideration of the limitations of thermal maturity with respect to vitrinite reflectance; T-max; and other proxies[J] Katz Barry Jay;Lin Fang AAPG BULLETIN 2021,
[8]
Trends in thermal maturity indicators for the organic sulfur-rich Eagle Ford Shale[J] Katherine L. French;Justin E. Birdwell;Michael D. Lewan Marine and Petroleum Geology 2020,
[9]
Influence of Gas and Oil State on Oil Mobility and Sweet-Spot Distribution in Tight Oil Reservoirs from the Perspective of Capillary Force[J] Li Yaohua;Song Yan;Jiang Shu;Wang Qianyou;Jiang Zhenxue;Zhang Fan SPE RESERVOIR EVALUATION & ENGINEERING 2020,
[10]
New scaling model of the spontaneous imbibition behavior of tuffaceous shale: Constraints from the tuff-hosted and organic matter-covered pore system[J] Wei Yang;Qianyou Wang;Yan Song;Zhenxue Jiang;Wangcai Meng;Guoheng Liu;Bo Zhang Journal of Natural Gas Science and Engineering 2020,