[1] 林畅松,潘元林,肖建新,等.“构造坡折带”:断陷盆地层序分析和油气预测的重要概念[J].地球科学,2000,25(3):260-266.

Lin Changsong, Pan Yuanlin, Xiao Jianxin, et al. Structural slope-break zone: Key concept for stratigraphic sequence analysis and petroleum forecasting in fault subsidence basins [J]. Earth Science, 2000, 25(3): 260-266.
[2] 张善文,王英民,李群. 应用坡折带理论寻找隐蔽油气藏[J]. 石油勘探与开发,2003,30(3):5-7.

Zhang Shanwen, Wang Yingmin, Li Qun. Searching subtle traps using the theory of slope break[J]. Petroleum Exploration and Development, 2003, 30(3): 5-7.
[3] Galloway W E. Siliciclastic slope and base-of-slope depositional systems: Component facies, stratigraphic architecture, and classification[J]. AAPG Bulletin, 1998, 82(4): 569-595.
[4] 黄文凯,邱燕,彭学超,等. 南海北部海域中东部陆架坡折带类型与迁移演化及成因[J]. 海洋地质与第四纪地质,2021,41(3): 1-11.

Huang Wenkai, Qiu Yan, Peng Xuechao, et al. Types and migration of shelf-breaks in the central and eastern parts of the northern South China Sea and their origin[J]. Marine Geology & Quaternary Geology, 2021,41(3): 1-11.
[5] Xiang C F, Pang X Q, Yang W J, et al. Hydrocarbon migration and accumulation along the fault intersection zone—A case study on the reef-flat systems of the No.1 slope break zone in the Tazhong area, Tarim Basin[J]. Petroleum Science, 2010, 7(2): 211-225.
[6] 王英民,金武弟,刘书会,等. 断陷湖盆多级坡折带的成因类型、展布及其勘探意义[J]. 石油与天然气地质,2003,24(3):199-203,214.

Wang Yingmin, Jin Wudi, Liu Shuhui, et al. Genetic types, distribution and exploration significance of multistage slope breaks in rift lacustrine basin[J]. Oil & Gas Geology, 2003, 24(3): 199-203, 214.
[7] 李相博,刘化清,陈启林,等. 大型坳陷湖盆沉积坡折带特征及其对砂体与油气的控制作用:以鄂尔多斯盆地三叠系延长组为例[J]. 沉积学报,2010,28(4):717-729.

Li Xiangbo, Liu Huaqing, Chen Qilin, et al. Characteristics of slope break belt in large depression lacustrine basin and its controlling effect on sandbody and petroleum: Taking the Triassic Yanchang Formation in the Ordos Basin as an example[J]. Acta Sedimentologica Sinica, 2010, 28(4): 717-729.
[8] 宋广增,王华,甘华军,等. 东营凹陷郑南地区沙四上亚段坡折带对层序、沉积与油气成藏控制[J]. 中南大学学报(自然科学版),2013,44(8):3415-3424.

Song Guangzeng, Wang Hua, Gan Huajun, et al. Slope-break and its control on sequence, sedimentation and hydrocarbon accumulation of upper Es4 in Zhengnan area, Dongying Sag[J]. Journal of Central South University (Science and Technology), 2013, 44(8): 3415-3424.
[9] 任建业,张青林,陆永潮. 东营凹陷弧形断裂坡折带系统及其对低位域砂体的控制[J]. 沉积学报,2004,22(4):628-635.

Ren Jianye, Zhang Qinglin, Lu Yongchao. Arc-shaped fault break slope system and its control on low stand systems sandbodies in Dongying Depression[J]. Acta Sedimentologica Sinica, 2004, 22(4): 628-635.
[10] 葛家旺,朱筱敏,黎明,等. 陆丰凹陷东部缓坡带层序地层样式及控制因素[J]. 中国矿业大学学报,2017,46(3):563-577.

Ge Jiawang, Zhu Xiaomin, Li Ming, et al. Sequence architecture and controlling factors of the Wenchang Formation in the gentle slope of eastern Lufeng Depression, Pearl River Mouth Basin[J]. Journal of China University of Mining & Technology, 2017, 46(3): 563-577.
[11] 冯有良,徐秀生. 同沉积构造坡折带对岩性油气藏富集带的控制作用:以渤海湾盆地古近系为例[J]. 石油勘探与开发,2006,33(1):22-25,31.

Feng Youliang, Xu Xiusheng. Syndepositional structural slope break zone controls on lithologic reservoirs- A case from Paleogene Bohai Bay Basin[J]. Petroleum Exploration and Development, 2006, 33(1): 22-25, 31.
[12] 卫平生. 论坳陷盆地“坡折带”及“湖岸线”对岩性地层油气藏的控制作用:以松辽盆地南部西部斜坡为例[D]. 青岛:中国科学院海洋研究所,2005:53-70.

Wei Pingsheng. Discussing lithostratigraphic reservoir controlled by slope break and shore line in depression-Take a example for the west slope in the south of Songliao Basin[D]. Qingdao: The Institute of Oceanology, Chinese Academy of Sciences, 2005: 53-70.
[13] 单祥,徐洋,郭华军,等. 准噶尔盆地玛湖凹陷北斜坡玛131井区块三叠系百口泉组储层敏感性评价[J]. 地质科技情报,2017,36(1):176-182.

Shan Xiang, Xu Yang, Guo Huajun, et al. Reservoir sensitivity evaluation of the Triassic Baikouquan Formation in Ma13l block of Mabei slope in Mahu Depression, Junggar Basin[J]. Geological Science and Technology Information, 2017, 36(1): 176-182.
[14] 卢红刚,罗焕宏,骆飞飞,等. 玛湖凹陷MH1井区上乌尔禾组扇控大面积成藏条件与成藏模式[J]. 特种油气藏,2021,28(1):42-50.

Lu Honggang, Luo Huanhong, Luo Feifei, et al. Fan controlled large-area accumulation conditions and mode of upper Wuerhe Formation in MH1 well zone of Mahu Sag[J]. Special Oil & Gas Reservoirs, 2021, 28(1): 42-50.
[15] 唐勇,郭文建,王霞田,等. 玛湖凹陷砾岩大油区勘探新突破及启示[J]. 新疆石油地质,2019,40(2):127-137.

Tang Yong, Guo Wenjian, Wang Xiatian, et al. A new breakthrough in exploration of large conglomerate oil province in Mahu Sag and its implications[J]. Xinjiang Petroleum Geology, 2019, 40(2): 127-137.
[16] 陈新发,杨学文,薛新克,等. 准噶尔盆地西北缘复式油气成藏理论与精细勘探实践[M]. 北京:石油工业出版社,2014.

Chen Xinfa, Yang Xuewen, Xue Xinke, et al. Theory and fine exploration practice of composite oil & gas accumulation in northwestern margin of Junggar Basin[M]. Beijing: Petroleum Industry Press, 2014.
[17] 雷德文,陈刚强,刘海磊,等. 准噶尔盆地玛湖凹陷大油(气)区形成条件与勘探方向研究[J]. 地质学报,2017,91(7):1604-1619.

Lei Dewen, Chen Gangqiang, Liu Hailei, et al. Study on the forming conditions and exploration fields of the Mahu giant oil (gas) province, Junggar Basin[J]. Acta Geologica Sinica, 2017, 91(7): 1604-1619.
[18] 陈建平,王绪龙,邓春萍,等. 准噶尔盆地油气源、油气分布与油气系统[J]. 地质学报,2016,90(3):421-450.

Chen Jianping, Wang Xulong, Deng Chunping, et al. Oil and gas source, occurrence and petroleum system in the Junggar Basin, northwest China[J]. Acta Geologica Sinica, 2016, 90(3): 421-450.
[19] 杨帆,卫延召,阿布力米提·依明,等 .准噶尔盆地环玛湖凹陷中—上二叠统有利储盖组合优选[J]. 新疆石油地质,2016,37(2):131-137.

Yang Fan, Wei Yanzhao, Abulimiti, et al. Optimization of favorable reservoir-caprock assemblages of Middle-Upper Permian in Mahu Sag, Junggar Basin[J]. Xinjiang Petroleum Geology, 2016, 37(2): 131-137.
[20] 支东明. 玛湖凹陷百口泉组准连续型高效油藏的发现与成藏机制[J]. 新疆石油地质,2016,37(4):373-382.

Zhi Dongming. Discovery and hydrocarbon accumulation mechanism of quasi-continuous high-efficiency reservoirs of Baikouquan Formation in Mahu Sag, Junggar Basin[J]. Xinjiang Petroleum Geology, 2016, 37(4): 373-382.
[21] 支东明,唐勇,郑孟林,等. 玛湖凹陷源上砾岩大油区形成分布与勘探实践[J]. 新疆石油地质,2018,39(1):1-8,22.

Zhi Dongming, Tang Yong, Zheng Menglin, et al. Discovery, distribution and exploration practice of large oil provinces of above-source conglomerate in Mahu Sag[J]. Xinjiang Petroleum Geology, 2018, 39(1): 1-8, 22.
[22] 邹妞妞,张大权,史基安,等. 准噶尔西北缘玛北地区扇三角洲砂砾岩岩相分类及储集意义[J]. 地质学报,2017,91(2):440-452.

Zou Niuniu, Zhang Daquan, Shi Ji’an, et al. Lithofacies classification of glutenite in the fan delta of the Mabei area in the northwestern Junggar Basin and its reservoir significance[J]. Acta Geologica Sinica, 2017, 91(2): 440-452.
[23] 唐勇,徐洋,李亚哲,等. 玛湖凹陷大型浅水退覆式扇三角洲沉积模式及勘探意义[J]. 新疆石油地质,2018,39(1):16-22.

Tang Yong, Xu Yang, Li Yazhe, et al. Sedimentation model and exploration significance of large-scaled shallow retrogradation fan delta in Mahu Sag[J]. Xinjiang Petroleum Geology, 2018, 39(1): 16-22.
[24] 王振宇,林伯韬,于会永,等. 克拉玛依油田七区八道湾组砂砾岩油藏地应力特征[J]. 新疆石油地质,2020,41(3):314-320.

Wang Zhenyu, Lin Botao, Yu Huiyong, et al. Characteristics of in-situ stress in sandy conglomerate reservoir of Badaowan Formation in district No.7, Karamay oilfield[J]. Xinjiang Petroleum Geology, 2020, 41(3): 314-320.
[25] 刘文锋,张小栓,刘谨铭,等. AH5井区八道湾组砂质和砾质储层孔隙结构特征及评价[J]. 现代地质,2021,35(6):1844-1853.

Liu Wenfeng, Zhang Xiaoshuan, Liu Jinming, et al. Evaluation and characteristics of pore structures in sand and conglomerate reservoirs of Badaowan Formation in the AH5 well block[J]. Geoscience, 2021, 35(6): 1844-1853.
[26] 孟家峰,郭召杰,方世虎. 准噶尔盆地西北缘冲断构造新解[J]. 地学前缘,2009,16(3):171-180.

Meng Jiafeng, Guo Zhaojie, Fang Shihu. A new insight into the thrust structures at the northwestern margin of Junggar Basin[J]. Earth Science Frontiers, 2009, 16(3): 171-180.
[27] 蔡忠贤,陈发景,贾振远. 准噶尔盆地的类型和构造演化[J]. 地学前缘,2000,7(4):431-440.

Cai Zhongxian, Chen Fajing, Jia Zhenyuan. Types and tectonic evolution of Junger Basin[J]. Earth Science Frontiers, 2000, 7(4): 431-440.
[28] 庞宏,尤新才,胡涛,等. 准噶尔盆地深部致密油藏形成条件与分布预测:以玛湖凹陷西斜坡风城组致密油为例[J]. 石油学报,2015,36(增刊2):176-183.

Pang Hong, You Xincai, Hu Tao, et al. Forming conditions and distribution prediction of deep tight reservoir in Junggar Basin: A case study from tight reservoir of Fengcheng Formation in the west slope of Mahu Sag[J]. Acta Petrolei Sinica, 2015, 36(Suppl.2): 176-183.
[29] 支东明,吴孔友,阿布力米提·依明,等. 玛湖凹陷西斜坡断裂结构及其对油气成藏的控制作用[M]. 北京:石油工业出版社,2017.

Zhi Dongming, Wu Kongyou, Abulimiti, et al. Fault zone architecture and its controlling effects on hydrocarbon in the western slope of Mahu Depression[M]. Beijing: Petroleum Industry Press, 2017.
[30] 孟祥超,周伯玉,陈扬,等. 含煤岩系中煤层的差异沉积响应与油气勘探:以玛湖斜坡区侏罗系八道湾组为例[J/OL].沉积学报. https://doi.org/10.14027/j.issn.1000-0550.2022.033. doi:  10.14027/j.issn.1000-0550.2022.033

Meng Xiangchao, Zhou Boyu, Chen Yang, et al. Differential sedimentary response of coal seams in coal-bearing rock series and oil and gas exploration: A case study of the J1 b Formation in the Mahu slope area[J]. Acta Sedimentologica Sinica. https://doi.org/10.14027/j.issn.1000-0550.2022.033. doi:  10.14027/j.issn.1000-0550.2022.033
[31] 刘晓丽. 准噶尔盆地玛湖凹陷八道湾组一段沉积微相特征:以TX1井区为例[J]. 沉积与特提斯地质,2021,41(1):100-105.

Liu Xiaoli. Sedimentary microfacies of the First member of Badaowan Formation in Mahu Sag, Dzungar Basin: Taking well TX1 as an example[J]. Sedimentary Geology and Tethyan Geology, 2021, 41(1): 100-105.