[1] 崔世凌,杨泽蓉,李鑫,等. 惠民凹陷构造样式及分布规律研究[J]. 石油物探,2010,49(2):187-197.

Cui Shiling,Yang Zerong,Li Xin,et al. Study on structural styles and distribution of Huimin Depression[J]. Geophysical Prospecting for Petroleum,2010,49(2): 187-197.
[2] 吴孔友,赵仲祥,崔世凌,等. 夏口断层对惠民南部地区油气成藏的控制作用[J]. 地质力学学报,2012,18(1):32-41.

Wu Kongyou,Zhao Zhongxiang,Cui Shiling,et al. Controlling of Xiakou fault on hydrocarbon accumulation in the southern part of Huimin Depression[J]. Journal of Geomechanics,2012,18(1): 32-41.
[3] 朱光有,金强,张水昌,等. 惠民断陷湖盆演化过程与油气生成[J]. 新疆石油地质,2006,27(1):27-31.

Zhu Guangyou,Jin Qiang,Zhang Shuichang,et al. Evolution of faulted lacustrine basin and hydrocarbon accumulation in Huimin Sag[J]. Xinjiang Petroleum Geology,2006,27(1): 27-31.
[4] 张小莉,查明. 惠民凹陷临邑洼陷岩性油藏控制因素分析[J]. 沉积学报,2006,24(2):289-293.

Zhang Xiaoli,Zha Ming. Analysis of the controls on lithologic oil reservoir in Linyi subsag,Huimin Sag[J]. Acta Sedimentologica Sinica,2006,24(2): 289-293.
[5] 刘佳庚,王艳忠,操应长,等. 惠民凹陷大芦家地区沙一中亚段沉积特征及储层评价[J]. 沉积学报,2023,41(3):855-866.

Liu Jiageng,Wang Yanzhong,Cao Yingchang,et al. Sedimentary characteristics and reservoir evaluation in the middle part of the First member of the Shahejie Formation,Dalujia area,Huimin Sag[J]. Acta Sedimentologica Sinica,2023,41(3):855-866.
[6] 宋维琪,仝兆歧,信荃麟,等. 惠民凹陷江家店地区隐蔽油藏储集层预测[J]. 石油勘探与开发,2000,27(6):6-8.

Song Weiqi,Tong Zhaoqi,Xin Quanlin,et al. Subtle trap reservoir prediction in Jiangjiadian area of Huimin Sag[J]. Petroleum Exploration and Development,2000,27(6): 6-8.
[7] 石秀,董长安,陈吴金. 惠民凹陷江家店地区滩坝砂岩特征与储层预测[J]. 海洋地质前沿,2013,29(6):32-36.

Shi Xiu,Dong Chang’an,Chen Wujin. Reservoir description and prediction for beach-bar sandbodies in Jiangjiadian area of Huimin Sag[J]. Marine Geology Frontiers,2013,29(6): 32-36.
[8] 郭显令,熊敏,周秦,等. 烃源岩生排烃动力学研究:以惠民凹陷临南洼陷沙河街组烃源岩为例[J]. 沉积学报,2009,27(4):723-731.

Guo Xianling,Xiong Min,Zhou Qin,et al. Petroleum generation and expulsion kinetics: A case study of the Shahejie Formation source rocks from Linnan Sag of Huimin Depression[J]. Acta Sedimentologica Sinica,2009,27(4): 723-731.
[9] 范立勇. 临盘油田大芦家地区沙河街组二段下亚段精细油藏描述[D]. 广州:中国科学院研究生院(广州地球化学研究所),2007.
[10] 曾庆辉. 临南洼陷烃源岩油气生成的动力学模拟与成藏体系研究[D]. 广州:中国科学院研究生院(广州地球化学研究所),2006.
[11] 王克,查明,吴孔友,等. 烃源岩与输导体系配置规律研究:以济阳坳陷临南洼陷为例[J]. 石油实验地质,2006,28(2):129-133.

Wang Ke,Zha Ming,Wu Kongyou,et al. Configuration rule of source rocks and migration system: An example from the Linnan Sag in the Jiyang Depression of the Bohaiwan Basin[J]. Petroleum Geology & Experiment,2006,28(2): 129-133.
[12] 王亚琳. 惠民凹陷夏口走滑正断层封堵能力差异性及其成因动力学机制[J]. 特种油气藏,2018,25(3):23-27.

Wang Yalin. Sealing difference of the Xiakou strike-slip normal fault in Huimin Sag and its dynamic mechanism[J]. Special Oil and Gas Reservoirs,2018,25(3): 23-27.
[13] 赵蕾,倪金龙,隋岩刚,等. 惠民凹陷临商断层封闭性特征[J]. 山东科技大学学报(自然科学版),2010,29(2):20-25.

Zhao Lei,Ni Jinlong,Sui Yan’gang,et al. The sealing performance of Linshang faults in Huimin Sag[J]. Journal of Shandong University of Science and Technology (Natural Science),2010,29(2): 20-25.
[14] 付金华. 惠民凹陷夏口断裂带油气成藏机制研究[J]. 石油实验地质,2002,24(2):136-140.

Fu Jinhua. Pool-forming mechanism of the Xiakou faulted zone in the Huimin Depression[J]. Petroleum Geology & Experiment,2002,24(2): 136-140.
[15] 刘跃卫. 临盘江家店油田构造建模及其构造特征[J].内蒙古石油化工,,2013,39 (12):144-145.

Liu Yuewei. Structural modeling and structural characteristics of the Jiangjiadian oilfield in Linpan[J]. lnner Mongolia Petrochemical Industry,2013,39(12):144-145.
[16] 操应长,王艳忠,徐涛玉,等. 特征元素比值在沉积物物源分析中的应用:以东营凹陷王58井区沙四上亚段研究为例[J]. 沉积学报,2007,25(2):230-238.

Cao Yingchang,Wang Yanzhong,Xu Taoyu,et al. Application of the ratio of characteristic elements in provenance analysis: A case study from the upper part of the Fourth member of the Shahejie Fm. in the W58 area,Dongying Depression[J]. Acta Sedimentologica Sinica,2007,25(2): 230-238.
[17] 曾俊杰,李康宁,严康,等. 西秦岭下三叠统江里沟组构造环境和物源特征:来自碎屑岩地球化学、锆石U-Pb年代学的约束[J]. 地质论评,2021,67(1):69-83.

Zeng Junjie,Li Kangning,Yan Kang,et al. Tectonic setting and provenance characteristics of the Lower Triassic Jiangligou Formation in West Qinling: Constraints from geochemistry of clastic rocks and U-Pb geochronology of detrital zircon[J]. Geological Review,2021,67(1): 69-83.
[18] 杜一帆,朱筱敏,高园,等. 饶阳凹陷蠡县斜坡古近系沙河街组一段物源特征研究[J]. 地学前缘,2021,28(1):115-130.

Du Yifan,Zhu Xiaomin,Gao Yuan,et al. Sedimentary provenance of the First member of the Shahejie Formation,Lixian slope,Raoyang Sag[J]. Earth Science Frontiers,2021,28(1): 115-130.
[19] Bhatia M R. Plate tectonics and geochemical composition of sandstones[J]. The Journal of Geology,1983,91(6): 611-627.
[20] Morton A C,Hallsworth C R. Identifying provenance-specific features of detrital heavy mineral assemblages in sandstones[J]. Sedimentary Geology,1994,90(3/4): 241-256.
[21] Dickinson W R,Suczek C A. Plate tectonics and sandstone compositions[J]. AAPG Bulletin,1979,63(12): 2164-2182.
[22] Clift P D,Lee J I,Clark M K,et al. Erosional response of South China to arc rifting and monsoonal strengthening; A record from the South China Sea[J]. Marine Geology,2002,184(3/4): 207-226.
[23] 孟祥梅. 在江家店地区利用特征元素分析物源[J]. 内蒙古石油化工,2005,31(8):146-148.

Meng Xiangmei. Using characteristic elements to analyze the provenance system in the Jiangjiadian area[J]. Inner Mongolia Petrochemical Industry,2005,31(8): 146-148.
[24] Embry A F,Johannessen E P. T-R sequence stratigraphy,facies analysis and reservoir distribution in the uppermost Triassic-Lower Jurassic succession,western Sverdrup Basin,Arctic Canada[J]. Norwegian Petroleum Society Special Publications,1993,2: 121-146.
[25] 高志卫,回春,肖勇. 临南洼陷江家店地区沙河街组沉积体系研究[J]. 西部探矿工程,2006,18(3):113-115.

Gao Zhiwei,Hui Chun,Xiao Yong. Study of sedimentary system in Shahejie Formation in Jiangjiadian area,Linnan Sag[J]. West-China Exploration Engineering,2006,18(3): 113-115.
[26] 袁静,梁绘媛,谭明友,等. 惠民凹陷南坡沙四上亚段滩坝砂体沉积特征及形成条件[J]. 石油与天然气地质,2014,35(3):410-416.

Yuan Jing,Liang Huiyuan,Tan Mingyou,et al. Sedimentary characteristics and forming conditions of beach-bar sandbodies in the upper Fourth member of the Shahejie Formation in the south slope of the Huimin Sag[J]. Oil & Gas Geology,2014,35(3): 410-416.
[27] 张春明,姜在兴,王俊辉,等. 惠民凹陷临南地区古近系沙三下亚段沉积特征[J]. 东北石油大学学报,2014,38(6):37-45.

Zhang Chunming,Jiang Zaixing,Wang Junhui,et al. Sedimentary characteristics analysis of the lower part of the Third member of Paleogene Shahejie Formation,Linnan area,Huimin Depression[J]. Journal of Northeast Petroleum University,2014,38(6): 37-45.
[28] 张春明,姜在兴,王俊辉,等. 断陷湖盆洪水—漫湖—下切谷沉积模式:以惠民凹陷临南地区古近系沙三下亚段为例[J]. 中南大学学报(自然科学版),2015,46(8):3003-3012.

Zhang Chunming,Jiang Zaixing,Wang Junhui,et al. Flood-overlake-incised valley deposition model in faulted lake basin: An example from the lower part of the Third member of Paleogene Shahejie Formation,Linnan area,Huimin Depression[J]. Journal of Central South University (Science and Technology),2015,46(8): 3003-3012.
[29] 杨守业,李从先,李徐生,等. 长江下游下蜀黄土化学风化的地球化学研究[J]. 地球化学,2001,30(4):402-406.

Yang Shouye,Li Congxian,Li Xusheng,et al. Geochemical records of chemical weathering of the Xiashu loess in the lower reaches of the Changjiang River[J]. Geochimica,2001,30(4): 402-406.
[30] 韩德亮. 莱州湾E孔中更新世末期以来的地球化学特征[J]. 海洋学报,2001,23(2):79-85.

Han Deliang. Geochemistry of core E in the Laizhou Bay since late stage of Middle Pleistocene[J]. Acta Oceanologica Sinica,2001,23(2): 79-85.
[31] 徐振中,陈世悦,姚军,等. 济阳坳陷中生代物源方向与沉积体系[J]. 沉积与特提斯地质,2008,28(2):83-88.

Xu Zhenzhong,Chen Shiyue,Yao Jun,et al. Provenance and depositional systems of the Mesozoic deposits in the Jiyang Depression[J]. Sedimentary Geology and Tethyan Geology,2008,28(2): 83-88.
[32] 姜在兴. 沉积学[M]. 北京:石油工业出版社,2003.

Jiang Zaixing. Sedimentology[M]. Beijing: Petroleum Industry Press,2003.
[33] 林红梅,刘鹏,王彤达,等. 基于母岩类型差异的深层砂砾岩储集体成岩演化机制:以渤海湾盆地车镇凹陷沙河街组三段下亚段为例[J]. 石油学报,2019,40(10):1180-1191.

Lin Hongmei,Liu Peng,Wang Tongda,et al. Diagenetic evolution mechanism of deep glutenite reservoirs based on differences in parent rock types: A case study of lower submember of member 3 of Shahejie Formation in Chezhen Sag,Bohai Bay Basin[J]. Acta Petrolei Sinica,2019,40(10): 1180-1191.
[34] 蔡来星. 梨树断陷营城组物源体系、沉积体系特征研究[D]. 青岛:中国石油大学(华东),2012.
[35] 胡宗全,朱筱敏,彭勇民. 准噶尔盆地西北缘车排子地区侏罗系物源及古水流分析[J]. 古地理学报,2001,3(3):49-54.

Hu Zongquan,Zhu Xiaomin,Peng Yongmin. Analysis of provenance and palaeocurrent direction of Jurassic at Chepaizi region in northwest edge of Junggar Basin[J]. Journal of Palaeogeography,2001,3(3): 49-54.
[36] 苏朝光,仲维苹. 准噶尔盆地车排子凸起新近系沙湾组物源分析[J]. 石油与天然气地质,2010,31(5):648-655.

Su Chaoguang,Zhong Weiping. An analysis on the provenance of the Neogene Shawan Formation in the Chepaizi uplift of the Junggar Basin[J]. Oil & Gas Geology,2010,31(5): 648-655.
[37] 张鹏飞,刘惠民,王永诗,等. 济阳坳陷太古界潜山储集体发育模式[J]. 中国石油大学学报(自然科学版),2017,41(6):20-29.

Zhang Pengfei,Liu Huimin,Wang Yongshi,et al. Development model of Archaeozoic buried hill reservoir in Jiyang Depression[J]. Journal of China University of Petroleum,2017,41(6): 20-29.
[38] 曾涵钰. 渤海湾盆地下古生界沉积特征研究[D]. 青岛:中国石油大学(华东),2019.
[39] 侯中帅,陈世悦,桑树勋,等. 渤海湾盆地上古生界泥岩地球化学特征[J]. 煤炭学报,2020,45(4):1457-1472.

Hou Zhongshuai,Chen Shiyue,Sang Shuxun,et al. Geochemical characteristics of Upper Paleozoic mudstone in Bohai Bay Basin[J]. Journal of China Coal Society,2020,45(4): 1457-1472.
[40] 吴智平,侯旭波,李伟. 华北东部地区中生代盆地格局及演化过程探讨[J]. 大地构造与成矿学,2007,31(4):385-399.

Wu Zhiping,Hou Xubo,Li Wei. Discussion on Mesozoic basin patterns and evolution in the eastern North China Block[J]. Geotectonica et Metallogenia,2007,31(4): 385-399.
[41] 时秀朋,李理. 鲁西隆起中—新生代伸展构造演化的模拟试验[J]. 中国石油大学学报(自然科学版),2010,34(3):25-29,33.

Shi Xiupeng,Li Li. Modeling experiments of structural evolution since Late Mesozoic in West Shandong uplift,China[J]. Journal of China University of Petroleum,2010,34(3): 25-29, 33.
[42] 许承武,李忠,韩登林. 鲁西隆起北侧博兴洼陷新生界碎屑重矿物的物源示踪分析[J]. 岩石学报,2015,31(9):2737-2744.

Xu Chengwu,Li Zhong,Han Denglin. The geological implications of the Cenozoic heavy minerals in Boxing Sag,north of the West Shandong rise[J]. Acta Petrologica Sinica,2015,31(9): 2737-2744.
[43] 王国光. 惠民凹陷西部古近系沙三段物源特征与沉积体系分布研究[D]. 广州:中国科学院研究生院(广州地球化学研究所),2007.
[44] 冯有良,周海民,任建业,等. 渤海湾盆地东部古近系层序地层及其对构造活动的响应[J]. 中国科学(D辑):地球科学,2010,40(10):1356-1376.

Feng Youliang,Zhou Haimin,Ren Jianye,et al. Paleogene sequence stratigraphy in the east of the Bohai Bay Basin and its response to structural movement[J]. Science China (Seri. D): Earth Sciences,2010,40(10): 1356-1376.