[1] 金之钧,白振瑞,高波,等. 中国迎来页岩油气革命了吗?[J]. 石油与天然气地质,2019,40(3):451-458.

Jin Zhijun, Bai Zhenrui, Gao Bo, et al. Has China ushered in the shale oil and gas revolution?[J]. Oil & Gas Geology, 2019, 40(3): 451-458.
[2] 赵文智,朱如凯,胡素云,等. 陆相富有机质页岩与泥岩的成藏差异及其在页岩油评价中的意义[J]. 石油勘探与开发,2020,47(6):1079-1089.

Zhao Wenzhi, Zhu Rukai, Hu Suyun, et al. Accumulation contribution differences between lacustrine organic-rich shales and mudstones and their significance in shale oil evaluation[J]. Petroleum Exploration and Development, 2020, 47(6): 1079-1089.
[3] 邹才能,杨智,陶士振,等. 纳米油气与源储共生型油气聚集[J]. 石油勘探与开发,2012,39(1):13-26.

Zou Caineng, Yang Zhi, Tao Shizhen, et al. Nano-hydrocarbon and the accumulation in coexisting source and reservoir[J]. Petroleum Exploration and Development, 2012, 39(1): 13-26.
[4] 姜在兴,梁超,吴靖,等. 含油气细粒沉积岩研究的几个问题[J]. 石油学报,2013,34(6):1031-1039.

Jiang Zaixing, Liang Chao, Wu Jing, et al. Several issues in sedimentological studies on hydrocarbon-bearing fine-grained sedimentary rocks[J]. Acta Petrolei Sinica, 2013, 34(6): 1031-1039.
[5] 姜在兴,张文昭,梁超,等. 页岩油储层基本特征及评价要素[J]. 石油学报,2014,35(1):184-196.

Jiang Zaixing, Zhang Wenzhao, Liang Chao, et al. Characteristics and evaluation elements of shale oil reservoir[J]. Acta Petrolei Sinica, 2014, 35(1): 184-196.
[6] 卢双舫,李俊乾,张鹏飞,等. 页岩油储集层微观孔喉分类与分级评价[J]. 石油勘探与开发,2018,45(3):436-444.

Lu Shuangfang, Li Junqian, Zhang Pengfei, et al. Classification of microscopic pore-throats and the grading evaluation on shale oil reservoirs[J]. Petroleum Exploration and Development, 2018, 45(3): 436-444.
[7] 袁晓冬,姜在兴,张元福,等. 滦平盆地白垩系陆相页岩油储层特征[J]. 石油学报,2020,41(10):1197-1208.

Yuan Xiaodong, Jiang Zaixing, Zhang Yuanfu, et al. Characteristics of the Cretaceous continental shale oil reservoirs in Luanping Basin[J]. Acta Petrolei Sinica, 2020, 41(10): 1197-1208.
[8] 赵文智,胡素云,侯连华,等. 中国陆相页岩油类型、资源潜力及与致密油的边界[J]. 石油勘探与开发,2020,47(1):1-10.

Zhao Wenzhi, Hu Suyun, Hou Lianhua, et al. Types and resource potential of continental shale oil in China and its boundary with tight oil[J]. Petroleum Exploration and Development, 2020, 47(1): 1-10.
[9] 邹才能,陶士振,白斌,等. 论非常规油气与常规油气的区别和联系[J]. 中国石油勘探,2015,20(1):1-16.

Zou Caineng, Tao Shizhen, Bai Bin, et al. Differences and relations between unconventional and conventional oil and gas[J]. China Petroleum Exploration, 2015, 20(1): 1-16.
[10] 贾承造,邹才能,李建忠,等. 中国致密油评价标准、主要类型、基本特征及资源前景[J]. 石油学报,2012,33(3):343-350.

Jia Chengzao, Zou Caineng, Li Jianzhong, et al. Assessment criteria, main types, basic features and resource prospects of the tight oil in China[J]. Acta Petrolei Sinica, 2012, 33(3): 343-350.
[11] 朱如凯,邹才能,吴松涛,等. 中国陆相致密油形成机理与富集规律[J]. 石油与天然气地质,2019,40(6):1168-1184.

Zhu Rukai, Zou Caineng, Wu Songtao, et al. Mechanism for generation and accumulation of continental tight oil in China[J]. Oil & Gas Geology, 2019, 40(6): 1168-1184.
[12] 黎茂稳,马晓潇,蒋启贵,等. 北美海相页岩油形成条件、富集特征与启示[J]. 油气地质与采收率,2019,26(1):13-28.

Li Maowen, Ma Xiaoxiao, Jiang Qigui, et al. Enlightenment from formation conditions and enrichment characteristics of marine shale oil in North America[J]. Petroleum Geology and Recovery Efficiency, 2019, 26(1): 13-28.
[13] 宋岩,罗群,姜振学,等. 中国中西部沉积盆地致密油富集机理及其主控因素[J]. 石油勘探与开发,2021,48(2):421-433.

Song Yan, Luo Qun, Jiang Zhenxue, et al. Enrichment of tight oil and its controlling factors in central and western China[J]. Petroleum Exploration and Development, 2021, 48(2): 421-433.
[14] 宋岩,高凤琳,唐相路,等. 海相与陆相页岩储层孔隙结构差异的影响因素[J]. 石油学报,2020,41(12):1501-1512.

Song Yan, Gao Fenglin, Tang Xianglu, et al. Influencing factors of pore structure differences between marine and terrestrial shale reservoirs[J]. Acta Petrolei Sinica, 2020, 41(12): 1501-1512.
[15] 金旭,李国欣,孟思炜,等. 陆相页岩油可动用性微观综合评价[J]. 石油勘探与开发,2021,48(1):222-232.

Jin Xu, Li Guoxin, Meng Siwei, et al. Microscale comprehensive evaluation of continental shale oil recoverability[J]. Petroleum Exploration and Development, 2021, 48(1): 222-232.
[16] 匡立春,侯连华,杨智,等. 陆相页岩油储层评价关键参数及方法[J]. 石油学报,2021,42(1):1-14.

Kuang Lichun, Hou Lianhua, Yang Zhi, et al. Key parameters and methods of lacustrine shale oil reservoir characterization[J]. Acta Petrolei Sinica, 2021, 42(1): 1-14.
[17] 焦方正,邹才能,杨智. 陆相源内石油聚集地质理论认识及勘探开发实践[J]. 石油勘探与开发,2020,47(6):1067-1078.

Jiao Fangzheng, Zou Caineng, Yang Zhi. Geological theory and exploration & development practice of hydrocarbon accumulation inside continental source kitchens[J]. Petroleum Exploration and Development, 2020, 47(6): 1067-1078.
[18] Loucks R G, Ruppel S C. Mississippian Barnett shale: Lithofacies and depositional setting of a deep-water shale-gas succession in the Fort Worth Basin, Texas[J]. AAPG Bulletin, 2007, 91(4): 579-601.
[19] Singh P. Lithofacies and sequence-stratigraphic framework of the Barnett Shale, Northeast Texas[D]. Norman: University of Oklahoma, 2008.
[20] Abouelresh M O, Slatt R M. Lithofacies and sequence stratigraphy of the Barnett Shale in east-central Fort Worth Basin, Texas[J]. AAPG Bulletin, 2012, 96(1): 1-22.
[21] Galvis H, Becerra D, Slatt R. Lithofacies and stratigraphy of a complete Woodford Shale outcrop section in South Central Oklahoma: Geologic considerations for the evaluation of unconventional shale reservoirs[J]. Interpretation, 2017, 6(1): SC15-SC27.
[22] 黎茂稳,金之钧,董明哲,等. 陆相页岩形成演化与页岩油富集机理研究进展[J]. 石油实验地质,2020,42(4):489-505.

Li Maowen, Jin Zhijun, Dong Mingzhe, et al. Advances in the basic study of lacustrine shale evolution and shale oil accumulation[J]. Petroleum Geology & Experiment, 2020, 42(4): 489-505.
[23] 姜在兴,孔祥鑫,杨叶芃,等. 陆相碳酸盐质细粒沉积岩及油气甜点多源成因[J]. 石油勘探与开发,2021,48(1):26-37.

Jiang Zaixing, Kong Xiangxin, Yang Yepeng, et al. Multi-source genesis of continental carbonate-rich fine-grained sedimentary rocks and hydrocarbon sweet spots[J]. Petroleum Exploration and Development, 2021, 48(1): 26-37.
[24] 单衍胜. 辽河坳陷古近系页岩油气聚集条件与分布[D]. 北京:中国地质大学(北京),2013.

Shan Yansheng. Shale oil and gas accumulation conditions and distribution in Liaohe Depression[D]. Beijing: China University of Geosciences (Beijing), 2013.
[25] 邹才能,陶士振,袁选俊,等. 连续型油气藏形成条件与分布特征[J]. 石油学报,2009,30(3):324-331.

Zou Caineng, Tao Shizhen, Yuan Xuanjun, et al. The formation conditions and distribution characteristics of continuous petroleum accumulations[J]. Acta Petrolei Sinica, 2009, 30(3): 324-331.
[26] 邹才能,董大忠,王社教,等. 中国页岩气形成机理、地质特征及资源潜力[J]. 石油勘探与开发,2010,37(6):641-653.

Zou Caineng, Dong Dazhong, Wang Shejiao, et al. Geological characteristics, formation mechanism and resource potential of shale gas in China[J]. Petroleum Exploration and Development, 2010, 37(6): 641-653.
[27] 卢双舫,黄文彪,陈方文,等. 页岩油气资源分级评价标准探讨[J]. 石油勘探与开发,2012,39(2):249-256.

Lu Shuangfang, Huang Wenbiao, Chen Fangwen, et al. Classification and evaluation criteria of shale oil and gas resources: Discussion and application[J]. Petroleum Exploration and Development, 2012, 39(2): 249-256.
[28] 傅成玉. 非常规油气资源勘探开发[M]. 北京:中国石化出版社,2015.

Fu Chengyu. Exploration and development for unconventional hydrocarbons[M]. Beijing: China Petrochemical Press, 2015.
[29] 张金川,林腊梅,李玉喜,等. 页岩油分类与评价[J]. 地学前缘,2012,19(5):322-331.

Zhang Jinchuan, Lin Lamei, Li Yuxi, et al. Classification and evaluation of shale oil[J]. Earth Science Frontiers, 2012, 19(5): 322-331.
[30] 邹才能,朱如凯,吴松涛,等. 常规与非常规油气聚集类型、特征、机理及展望:以中国致密油和致密气为例[J]. 石油学报,2012,33(2):173-187.

Zou Caineng, Zhu Rukai, Wu Songtao, et al. Types, characteristics, genesis and prospects of conventional and unconventional hydrocarbon accumulations: Taking tight oil and tight gas in China as an instance[J]. Acta Petrolei Sinica, 2012, 33(2): 173-187.
[31] 全国石油天然气标准化技术委员会. GB/T 38718—2020 页岩油地质评价方法 [S]. 北京:中国标准出版社,2020.

National Technical Committee of Petroleum and Natural Gas Standardization. GB/T 38718-2020 Geological evaluating methods for shale oil [S]. Beijing: China Standards Press, 2020.
[32] 杨智,邹才能. “进源找油”:源岩油气内涵与前景[J]. 石油勘探与开发,2019,46(1):173-184.

Yang Zhi, Zou Caineng. “Exploring petroleum inside source kitchen”: Connotation and prospects of source rock oil and gas[J]. Petroleum Exploration and Development, 2019, 46(1): 173-184.
[33] 李国欣,罗凯,石德勤. 页岩油气成功开发的关键技术、先进理念与重要启示:以加拿大都沃内项目为例[J]. 石油勘探与开发,2020,47(4):739-749.

Li Guoxin, Luo Kai, Shi Deqin. Key technologies, engineering management and important suggestions of shale oil/gas development: Case study of a Duvernay shale project in western Canada sedimentary basin[J]. Petroleum Exploration and Development, 2020, 47(4): 739-749.
[34] 胡素云,赵文智,侯连华,等. 中国陆相页岩油发展潜力与技术对策[J]. 石油勘探与开发,2020,47(4):819-828.

Hu Suyun, Zhao Wenzhi, Hou Lianhua, et al. Development potential and technical strategy of continental shale oil in China[J]. Petroleum Exploration and Development, 2020, 47(4): 819-828.
[35] 刘姝君,操应长,梁超. 渤海湾盆地东营凹陷古近系细粒沉积岩特征及沉积环境[J]. 古地理学报,2019,21(3):479-489.

Liu Shujun, Cao Yingchang, Liang Chao. Lithologic characteristics and sedimentary environment of fine-grained sedimentary rocks of the Paleogene in Dongying Sag, Bohai Bay Basin[J]. Journal of Palaeogeography, 2019, 21(3): 479-489.
[36] 董桂玉,陈洪德,何幼斌,等. 陆源碎屑与碳酸盐混合沉积研究中的几点思考[J]. 地球科学进展,2007,22(9):931-939.

Dong Guiyu, Chen Hongde, He Youbin, et al. Some problems on the study of the mixed siliciclastic-carbonate sediments[J]. Advances in Earth Science, 2007, 22(9): 931-939.
[37] 葸克来,操应长,朱如凯,等. 吉木萨尔凹陷二叠系芦草沟组致密油储层岩石类型及特征[J]. 石油学报,2015,36(12):1495-1507.

Xi Kelai, Cao Yingchang, Zhu Rukai, et al. Rock types and characteristics of tight oil reservoir in Permian Lucaogou Formation, Jimsar Sag[J]. Acta Petrolei Sinica, 2015, 36(12): 1495-1507.
[38] 刘惠民,孙善勇,操应长,等. 东营凹陷沙三段下亚段细粒沉积岩岩相特征及其分布模式[J]. 油气地质与采收率,2017,24(1):1-10.

Liu Huimin, Sun Shanyong, Cao Yingchang, et al. Lithofacies characteristics and distribution model of fine-grained sedimentary rock in the lower Es3 member, Dongying Sag[J]. Petroleum Geology and Recovery Efficiency, 2017, 24(1): 1-10.
[39] 刘惠民,于炳松,谢忠怀,等. 陆相湖盆富有机质页岩微相特征及对页岩油富集的指示意义:以渤海湾盆地济阳坳陷为例[J]. 石油学报,2018,39(12):1328-1343.

Liu Huimin, Yu Bingsong, Xie Zhonghuai, et al. Characteristics and implications of micro-lithofacies in lacustrine-basin organic-rich shale: A case study of Jiyang Depression, Bohai Bay Basin[J]. Acta Petrolei Sinica, 2018, 39(12): 1328-1343.
[40] 吴靖,姜在兴,梁超. 东营凹陷沙河街组四段上亚段细粒沉积岩岩相特征及与沉积环境的关系[J]. 石油学报,2017,38(10):1110-1122.

Wu Jing, Jiang Zaixing, Liang Chao. Lithofacies characteristics of fine-grained sedimentary rocks in the upper submember of member 4 of Shahejie Formation, Dongying Sag and their relationship with sedimentary environment[J]. Acta Petrolei Sinica, 2017, 38(10): 1110-1122.
[41] 杜学斌,刘晓峰,陆永潮,等. 陆相细粒混合沉积分类、特征及发育模式:以东营凹陷为例[J]. 石油学报,2020,41(11):1324-1333.

Du Xuebin, Liu Xiaofeng, Lu Yongchao, et al. Classification, characteristics and development models of continental fine-grained mixed sedimentation: A case study of Dongying Sag[J]. Acta Petrolei Sinica, 2020, 41(11): 1324-1333.
[42] 印森林,李弘林,许长福,等. 吉木萨尔凹陷芦草沟组混积岩元素特征及水平井导向控制点技术[J]. 长江大学学报(自然科学版),2021,18(2):16-27.

Yin Senlin, Li Honglin, Xu Changfu, et al. Element characteristics of mixed rocks and horizontal well geosteering control point technique of Lucaogou Formation in Jimusar Sag[J]. Journal of Yangtze University (Natural Science Edition), 2021, 18(2): 16-27.
[43] 滕建彬,刘惠民,邱隆伟,等. 东营凹陷古近系湖相细粒混积岩沉积成岩特征[J]. 地球科学,2020,45(10):3808-3826.

Teng Jianbin, Liu Huimin, Qiu Longwei, et al. Sedimentary and diagenetic characteristics of lacustrine fine-grained hybrid rock in Paleogene Formation in Dongying Sag[J]. Earth Science, 2020, 45(10): 3808-3826.
[44] Schieber J, Zimmerle W, Sethi P. Shales and mudstones: Basin studies, sedimentology, and paleontology[M]. Stuttgart: Schweizerbart’sche Verlagsbuchhandlung, 1998, 1: 13-20.
[45] Bowker K A. Barnett Shale gas production, Fort Worth Basin: Issues and discussion[J]. AAPG Bulletin, 2007, 91(4): 523-533.
[46] 葸克来,李克,操应长,等. 鄂尔多斯盆地三叠系延长组 长 7 3 亚段富有机质页岩纹层组合与页岩油富集模式[J]. 石油勘探与开发,2020,47(6):1244-1255.

Xi Kelai, Li Ke, Cao Yingchang, et al. Laminae combination and shale oil enrichment patterns of C h a n g 7 3 sub-member organic-rich shales in the Triassic Yanchang Formation, Ordos Basin, NW China[J]. Petroleum Exploration and Development, 2020, 47(6): 1244-1255.
[47] 柳波,孙嘉慧,张永清,等. 松辽盆地长岭凹陷白垩系青山口组一段页岩油储集空间类型与富集模式[J]. 石油勘探与开发,2021,48(3):521-535.

Liu Bo, Sun Jiahui, Zhang Yongqing, et al. Reservoir space and enrichment model of shale oil in the first member of Cretaceous Qingshankou Formation in the Changling Sag, southern Songliao Basin, NE China[J]. Petroleum Exploration and Development, 2021, 48(3): 521-535.
[48] 刘占国,张永庶,宋光永,等. 柴达木盆地英西地区咸化湖盆混积碳酸盐岩岩相特征与控储机制[J]. 石油勘探与开发,2021,48(1):68-80.

Liu Zhanguo, Zhang Yongshu, Song Guangyong, et al. Mixed carbonate rocks lithofacies features and reservoirs controlling mechanisms in the saline lacustrine basin in Yingxi area, Qaidam Basin, NW China[J]. Petroleum Exploration and Development, 2021, 48(1): 68-80.
[49] 支东明,宋永,何文军,等. 准噶尔盆地中—下二叠统页岩油地质特征、资源潜力及勘探方向[J]. 新疆石油地质,2019,40(4):389-401.

Zhi Dongming, Song Yong, He Wenjun, et al. Geological characteristics, resource potential and exploration direction of shale oil in Middle-Lower Permian, Junggar Basin[J]. Xinjiang Petroleum Geology, 2019, 40(4): 389-401.
[50] Picard M D. Classification of fine-grained sedimentary rocks[J]. Journal of Sedimentary Research, 1971, 41(1): 179-195.
[51] Stow D A V, Huc A Y, Bertrand P. Depositional processes of black shales in deep water[J]. Marine and Petroleum Geology, 2001, 18(4): 491-498.
[52] 邹才能,陶士振,侯连华,等. 非常规油气地质[M]. 2版. 北京:地质出版社,2013.

Zou Caineng, Tao Shizhen, Hou Lianhua, et al. Unconventional petroleum geology[M]. 2nd ed. Beijing: Geological Publishing House, 2013.
[53] 李书琴,印森林,高阳,等. 准噶尔盆地吉木萨尔凹陷芦草沟组混合细粒岩沉积微相[J]. 天然气地球科学,2020,31(2):235-249.

Li Shuqin, Yin Senlin, Gao Yang, et al. Study on sedimentary microfacies of mixed fine-grained rocks in Lucaogou Formation, Jimsar Sag, Junggar Basin[J]. Natural Gas Geoscience, 2020, 31(2): 235-249.
[54] 匡立春,唐勇,雷德文,等. 准噶尔盆地二叠系咸化湖相云质岩致密油形成条件与勘探潜力[J]. 石油勘探与开发,2012,39(6):657-667.

Kuang Lichun, Tang Yong, Lei Dewen, et al. Formation conditions and exploration potential of tight oil in the Permian saline lacustrine dolomitic rock, Junggar Basin, NW China[J]. Petroleum Exploration and Development, 2012, 39(6): 657-667.
[55] 马克,侯加根,刘钰铭,等. 吉木萨尔凹陷二叠系芦草沟组咸化湖混合沉积模式[J]. 石油学报,2017,38(6):636-648.

Ma Ke, Hou Jiagen, Liu Yuming, et al. The sedimentary model of saline lacustrine mixed sedimentation in Permian Lucaogou Formation, Jimsar Sag[J]. Acta Petrolei Sinica, 2017, 38(6): 636-648.
[56] 支东明,唐勇,何文军,等. 准噶尔盆地玛湖凹陷风城组常规—非常规油气有序共生与全油气系统成藏模式[J]. 石油勘探与开发,2021,48(1):38-51.

Zhi Dongming, Tang Yong, He Wenjun, et al. Orderly coexistence and accumulation models of conventional and unconventional hydrocarbons in Lower Permian Fengcheng Formation, Mahu Sag, Junggar Basin[J]. Petroleum Exploration and Development, 2021, 48(1): 38-51.
[57] 付金华,李士祥,牛小兵,等. 鄂尔多斯盆地三叠系长7段页岩油地质特征与勘探实践[J]. 石油勘探与开发,2020,47(5):870-883.

Fu Jinhua, Li Shixiang, Niu Xiaobing, et al. Geological characteristics and exploration of shale oil in Chang 7 member of Triassic Yanchang Formation, Ordos Basin, NW China[J]. Petroleum Exploration and Development, 2020, 47(5): 870-883.
[58] 赵贤正,蒲秀刚,韩文中,等. 细粒沉积岩性识别新方法与储集层甜点分析:以渤海湾盆地沧东凹陷孔店组二段为例[J]. 石油勘探与开发,2017,44(4):492-502.

Zhao Xianzheng, Pu Xiugang, Han Wenzhong, et al. A new method for lithology identification of fine grained deposits and reservoir sweet spot analysis: A case study of Kong 2 member in Cangdong Sag, Bohai Bay Basin, China[J]. Petroleum Exploration and Development, 2017, 44(4): 492-502.
[59] 匡立春,孙中春,欧阳敏,等. 吉木萨尔凹陷芦草沟组复杂岩性致密油储层测井岩性识别[J]. 测井技术,2013,37(6):638-642.

Kuang Lichun, Sun Zhongchun, Ouyang Min, et al. Complication lithology logging identification of the Lucaogou tight oil reservoir in Jimusaer Depression[J]. Well Logging Technology, 2013, 37(6): 638-642.
[60] 邹才能,潘松圻,荆振华,等. 页岩油气革命及影响[J]. 石油学报,2020,41(1):1-12.

Zou Caineng, Pan Songqi, Jing Zhenhua, et al. Shale oil and gas revolution and its impact[J]. Acta Petrolei Sinica, 2020, 41(1): 1-12.
[61] 裘亦楠. 石油开发地质方法论(一)[J]. 石油勘探与开发,1996(2):43-47,115.

Qiu Yinan. The methodology of petroleum development geology (Ⅰ)[J]. Petroleum Exploration and Development, 1996(2): 43-47, 115.
[62] 吴胜和,杨延强. 地下储层表征的不确定性及科学思维方法[J]. 地球科学与环境学报,2012,34(2):72-80.

Wu Shenghe, Yang Yanqiang. Uncertainty and scientific methodology in subsurface reservoir characterization[J]. Journal of Earth Sciences and Environment, 2012, 34(2): 72-80.
[63] 于兴河. 油气储层表征与随机建模的发展历程及展望[J]. 地学前缘,2008,15(1):1-15.

Yu Xinghe. A review of development course and prospect of petroleum reservoir characterization and stochastic modeling[J]. Earth Science Frontiers, 2008, 15(1): 1-15.
[64] 岳大力,王军,王延忠,等. 古河道储层构型层次分析法:以孤岛油田馆陶组曲流河为例[J]. 地质科学,2010,45(3):832-843.

Yue Dali, Wang Jun, Wang Yanzhong, et al. Hierarchy analysis in paleochannel reservoir architecture: A case study of meandering river reservoir of Guantao Formation, Gudao oilfield[J]. Chinese Journal of Geology, 2010, 45(3): 832-843.
[65] 马世忠,张永清. 应用遥感信息图像研究现代水下分流河道河流类型[J]. 地学前缘,2012,19(2):24-31.

Ma Shizhong, Zhang Yongqing. Research on the channel pattern of present subaqueous distributary channel by remote sensing image[J]. Earth Science Frontiers, 2012, 19(2): 24-31.
[66] 张昌民,刘江艳,潘进,等. 玛湖凹陷百口泉组砂砾岩建筑结构要素层次分析[J]. 新疆石油地质,2018,39(1):23-34.

Zhang Changmin, Liu Jiangyan, Pan Jin, et al. Hierarchical architectural element analysis for sandy conglomerate deposits of Baikouquan Formation, Mahu Sag[J]. Xinjiang Petroleum Geology, 2018, 39(1): 23-34.
[67] 印森林,吴胜和,冯文杰,等. 冲积扇储集层内部隔夹层样式:以克拉玛依油田一中区克下组为例[J]. 石油勘探与开发,2013,40(6):757-763.

Yin Senlin, Wu Shenghe, Feng Wenjie, et al. Patterns of inter-layers in the alluvial fan reservoirs: A case study on Triassic Lower Karamay Formation, Yizhong area, Karamay oilfield, NW China[J]. Petroleum Exploration and Development, 2013, 40(6): 757-763.
[68] 吴胜和,冯文杰,印森林,等. 冲积扇沉积构型研究进展[J]. 古地理学报,2016,18(4):497-512.

Wu Shenghe, Feng Wenjie, Yin Senlin, et al. Research advances in alluvial fan depositional architecture[J]. Journal of Palaeogeography, 2016, 18(4): 497-512.
[69] 于兴河. 油田开发中后期储层面临的问题与基于沉积成因的地质表征方法[J]. 地学前缘,2012,19(2):1-14.

Yu Xinghe. Existing problems and sedimentogenesis-based methods of reservoir characterization during the middle and later periods of oilfield development[J]. Earth Science Frontiers, 2012, 19(2): 1-14.
[70] 印森林,陈恭洋,戴春明,等. 河口坝内部储层构型及剩余油分布特征:以大港油田枣南断块长轴缓坡辫状河三角洲为例[J]. 石油与天然气地质,2015,36(4):630-639.

Yin Senlin, Chen Gongyang, Dai Chunming, et al. Reservoir architecture and remaining oil distribution in mouth bar:A case study on the braided delta of long-axis gentle slope in Zaonan fault block of Dagang oilfield[J]. Oil & Gas Geology, 2015, 36(4): 630-639.
[71] 商晓飞,段太忠,侯加根,等. 湖泊滨岸砂坝沉积砂泥空间配置关系及其地质意义[J]. 石油勘探与开发,2019,46(5):902-915.

Shang Xiaofei, Duan Taizhong, Hou Jiagen, et al. Spatial configuration of sand and mud in the lacustrine nearshore sand bar deposits and its geological implications[J]. Petroleum Exploration and Development, 2019, 46(5): 902-915.
[72] 张佳佳,吴胜和. 海底扇朵叶沉积构型研究进展[J]. 中国海上油气,2019,31(5):88-106.

Zhang Jiajia, Wu Shenghe. Research progress on the depositional architecture of submarine-fan lobes[J]. China Offshore Oil and Gas, 2019, 31(5): 88-106.
[73] Miall A D. Architectural-element analysis: A new method of facies analysis applied to fluvial deposits[J]. Earth-Science Reviews, 1985, 22(4): 261-308.
[74] Miall A D. Architectural elements and bounding surfaces in fluvial deposits: Anatomy of the Kayenta Formation (Lower Jurassic), Southwest Colorado[J]. Sedimentary Geology, 1988, 55(3/4): 233-262.
[75] 印森林,高阳,胡张明,等. 基于无人机倾斜摄影的露头多点地质统计模拟:以山西吕梁坪头乡石盒子组为例[J]. 石油学报,2021,42(2):198-216.

Yin Senlin, Gao Yang, Hu Zhangming, et al. Multiple-point geostatistical simulation of outcrop based on UAV oblique photographic data: A case study of Shihezi Formation in Pingtou township, Lvliang city, Shanxi[J]. Acta Petrolei Sinica, 2021, 42(2): 198-216.