[1] 庞军刚,杨友运,郝磊. 湖盆古水深恢复研究现状综述[J]. 长江大学学报(自然科学版)理工卷,2012,9(9):42-45.

Pang Jungang,Yang Youyun,Hao Lei. Summary of research status of ancient water depth restoration in lake basin[J]. Journal of Yangtze University (Natural Science Edition) Science & Engineering,2012,9(9): 42-45.
[2] 高振中,段太忠. 湘西黔东寒武纪深水碳酸盐重力沉积[J]. 沉积学报,1985,3(3):7-22.

Gao Zhenzhong,Duan Taizhong. Gravity-displaced deposits of Cambrian deep-water carbonates in west Hunan and east Guizhou[J]. Acta Sedimentologica Sinica,1985,3(3): 7-22.
[3] van der Zwaan G J,Jorissen F J,de Stigter H C. The depth dependency of planktonic/benthic foraminiferal ratios: Constraints and applications[J]. Marine Geology,1990,95(1): 1-16.
[4] 李学杰. 珠江口盆地表层沉积物浮游有孔虫含量与水深关系定量研究[J]. 海洋地质与第四纪地质,1994,14(3):79-84.

Li Xuejie. Quantitative research of planktonic foraminifera content (in the surficial sediment) related to water depth in the Zhujiang (Pearl) River Mouth Basin[J]. Marine Geology & Quaternary Geology,1994,14(3): 79-84.
[5] Hohenegger J. Depth estimation by proportions of living larger foraminifera[J]. Marine Micropaleontology,1995,26(1/2/3/4): 31-47.
[6] Hohenegger J. Estimation of environmental paleogradient values based on presence/absence data: A case study using benthic foraminifera for paleodepth estimation[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,2005,217(1/2): 115-130.
[7] Campeau S,Pienitz R,Héquette A. Diatoms as quantitative paleodepth indicators in coastal areas of the southeastern Beaufort Sea,Arctic Ocean[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,1999,146(1/2/3/4): 67-97.
[8] 吴智平,马在平,周瑶琪. 济源盆地三叠系与侏罗系界线地层沉积相及元素地球化学特征[J]. 石油大学学报(自然科学版),2002,26(3):20-25.

Wu Zhiping,Ma Zaiping,Zhou Yaoqi. Geochemical characters of sedimentary system in the Triassic-Jurassic boundary section of Jiyuan Basin[J]. Journal of the University of Petroleum,China,2002,26(3): 20-25.
[9] 董军社,陈平富,万晓樵. 南海北部崖19-1-1井晚第三纪有孔虫动物群演替与古水深变化[J]. 现代地质,2000,14(3):291-294.

Dong Junshe,Chen Pingfu,Wan Xiaoqiao. Evolution of Late Tertiary foraminifera and palaeowater depth of core Y19-1-1 from the northern part of South China Sea[J]. Geoscience,2000,14(3): 291-294.
[10] 邹欣庆,葛晨东. 海岸水体中颗石在古水深定量研究中的运用:以黄海辐射沙洲海区为例[J]. 现代地质,2000,14(3):263-266.

Zou Xinqing,Ge Chendong. Coccolith method for the quantitative study of former water depth: Submarine sand ridges of the Yellow Sea as an example[J]. Geoscience,2000,14(3): 263-266.
[11] 李学杰,陈芳,刘坚,等. 南海西部表层沉积物碳酸盐分布特征及其溶解作用[J]. 地球化学,2004,33(3):254-260.

Li Xuejie,Chen Fang,Liu Jian,et al. Distribution and its dissolution of carbonate in seafloor surface sediment in the western South China Sea[J]. Geochimica,2004,33(3): 254-260.
[12] Chazottes V,Cabioch G,Golubic S,et al. Bathymetric zonation of modern microborers in dead coral substrates from New Caledonia: Implications for paleodepth reconstructions in Holocene corals[J]. Palaeogeography,Palaeoclimatology,Palaeoecology,2009,280(3/4): 456-468.
[13] 魏亚琼,王昌勇,孟祥豪,等. 青海湖布哈河口区表层沉积物有机质分析及其比较沉积学意义[J]. 湖泊科学,2017,29(5):1254-1264.

Wei Yaqiong,Wang Changyong,Meng Xianghao,et al. Organic matter analysis of surface sediment in Buha estuary region and its comparative sedimentology significance[J]. Journal of Lake Science,2017,29(5): 1254-1264.
[14] 薛力园,丁旋,裴人傑,等. 南海北部陆丰凹陷LF14井中新世古水深变化及沉降特征[J]. 热带海洋学报,2018,37(2):72-83.

Xue Liyuan,Ding Xuan,Pei Renjie,et al. Miocene evolution of paleo-water depth and subsidence revealed in well LF14 from Lufeng Sag,northern South China Sea[J]. Journal of Tropical Oceanography,2018,37(2): 72-83.
[15] Avnaim-Katav S,Milker Y,Schmiedl G,et al. Impact of eustatic and tectonic processes on the southeastern Mediterranean shelf during the last one million years: Quantitative reconstructions using a foraminiferal transfer function[J]. Marine Geology,2016,376: 26-38.
[16] 郭秋麟,倪丙荣. 利用化石群分异度探讨古水深[J]. 石油大学学报(自然科学版),1990,14(2):1-7.

Guo Qiulin,Ni Bingrong. Determination of palaeodepth with diversity of fossil community[J]. Journal of the University of Petroleum,China,1990,14(2): 1-7.
[17] 吴灏,丁奕,金幸生,等. 浙江义乌上白垩统金华组滨湖相红层中的遗迹化石[J]. 地层学杂志,2020,44(4):428-438.

Wu Hao,Ding Yi,Jin Xingsheng,et al. Ichnofossils from the lacustrine red beds of the Upper Cretaceous Jinhua Formation in Yiwu,Zhejiang,East China[J]. Journal of Stratigraphy,2020,44(4): 428-438.
[18] 董刚,何幼斌. 根据地层厚度恢复古水深的研究[J]. 长江大学学报(自然科学版)理工卷,2010,7(3):484-486.

Dong Gang,He Youbin. Study on paleo-water-depth restoration according based on stratum thickness[J]. Journal of Yangtze University (Natural Science Edition) Science & Engineering,2010,7(3): 484-486.
[19] 庞军刚,李文厚,肖丽. 陕北地区延长组坳陷湖盆浅湖与深湖亚相的识别特征[J]. 兰州大学学报(自然科学版),2009,45(6):36-40.

Pang Jungang,Li Wenhou,Xiao Li. Identifying characteristics of shallow lake and deep lake of Yanchang Formation depressed type lacustrine basin in Shanbei area[J]. Journal of Lanzhou University (Natural Sciences),2009,45(6): 36-40.
[20] 李浩,陆建林,李瑞磊,等. 长岭断陷下白垩统湖相烃源岩形成古环境及主控因素[J]. 地球科学,2017,42(10):1774-1786.

Li Hao,Lu Jianlin,Li Ruilei,et al. Generation paleo environment and its controlling factors of Lower Cretaceous lacustrine hydrocarbon source rocks in Changling Depression,south Songliao Basin[J]. Earth Science,2017,42(10): 1774-1786.
[21] 张永生,杨玉卿,漆智先,等. 江汉盆地潜江凹陷古近系潜江组含盐岩系沉积特征与沉积环境[J]. 古地理学报,2003,5(1):29-35.

Zhang Yongsheng,Yang Yuqing,Qi Zhixian,et al. Sedimentary characteristics and environments of the salt-bearing series of Qianjiang Formation of the Paleogene in Qianjiang Sag of Jianghan Basin[J]. Journal of Palaeogeography,2003,5(1): 29-35.
[22] 王春连,刘成林,胡海兵,等. 江汉盆地江陵凹陷南缘古新统沙市组四段含盐岩系沉积特征及其沉积环境意义[J]. 古地理学报,2012,14(2):165-175.

Wang Chunlian,Liu Chenglin,Hu Haibing,et al. Sedimentary characteristics and its environmental significance of salt-bearing strata of the member 4 of Paleocene Shashi Formation in southern margin of Jiangling Depression,Jianghan Basin[J]. Journal of Palaeogeography,2012,14(2): 165-175.
[23] Jones B,Manning D A C. Comparison of geochemical indices used for the interpretation of palaeoredox conditions in ancient mudstones[J]. Chemical Geology,1994,111: 111-129.
[24] 张才利,高阿龙,刘哲,等. 鄂尔多斯盆地长7油层组沉积水体及古气候特征研究[J]. 天然气地球科学,2011,22(4):582-587.

Zhang Caili,Gao Along,Liu Zhe,et al. Study of character on sedimentary water and palaeoclimate for Chang7 oil layer in Ordos Basin[J]. Natural Gas Geoscience,2011,22(4): 582-587.
[25] 毛琼,邹光富,郑荣才,等. 四川龙门山前陆盆地上三叠统小塘子组、须家河组高分辨率层序地层学特征[J]. 资源与产业,2006,8(2):119-124.

Mao Qiong,Zou Guangfu,Zheng Rongcai,et al. High-resolution sequence stratigraphic characteristics of Xiaotangzi Formation and Xujiahe Formation in Upper Triassic of Longmenshan foreland basin,western Sichuan,China[J]. Resources & Industries,2006,8(2): 119-124.
[26] 郑荣才,李国晖,戴朝成,等. 四川类前陆盆地盆—山耦合系统和沉积学响应[J]. 地质学报,2012,86(1):170-180.

Zheng Rongcai,Li Guohui,Dai Chaocheng,et al. Basin-mountain coupling system and its sedimentary response in Sichuan analogous foreland basin[J]. Acta Geologica Sinica,2012,86(1): 170-180.
[27] 郑荣才,何龙,梁西文,等. 川东地区下侏罗统大安寨段页岩气(油)成藏条件[J]. 天然气工业,2013,33(12):30-40.

Zheng Rongcai,He Long,Liang Xiwen,et al. Forming conditions of shale gas (oil) plays in the Lower Jurassic Da'anzhai member in the eastern Sichuan Basin[J]. Natural Gas Industry,2013,33(12): 30-40.
[28] 梅冥相. 上扬子地区晚三叠世层序地层格架:扬子地台消亡与上扬子前陆盆地形成的地层学效应[J]. 地质学报,2014,88(10):1944-1969.

Mei Mingxiang. The sequence-stratigraphic framework of the Late Triassic in the Upper Yangtze region,South China: Stratigraphic forcing for the death of the Yangtze Platform and the birth of the Upper-Yangtze foreland basin[J]. Acta Geologica Sinica,2014,88(10): 1944-1969.
[29] 王昌勇,郑荣才,李爽,等. 四川盆地东部上三叠统须家河组地层划分与对比:以卧新双地区为例[J]. 地层学杂志,2017,41(1):94-102.

Wang Changyong,Zheng Rongcai,Li Shuang,et al. Stratigraphic subdivision and correlation of the Early Triassic Xujiahe Formation,east Sichuan Basin: A case study of the Woxinshuang area[J]. Journal of Stratigraphy,2017,41(1): 94-102.
[30] 王小娟,王昌勇,陈小二,等. 川西—川中地区上三叠统地层对比及沉积充填特征[J]. 沉积学报,2023,41(2):435-449.

Wang Xiaojuan,Wang Changyong,Chen Xiaoer,et al. Stratigraphic correlation of the Upper Triassic and its sedimentary filling characteristics in the western and central Sichuan Basin[J]. Acta Sedimentologica Sinica,2023,41(2):435-449.
[31] 蒋晓光,彭大钧,钟子川,等. 川东北地区侏罗系含油气砂体横向预测研究[J]. 西南石油学院学报,2006,28(1):1-4.

Jiang Xiaoguang,Peng Dajun,Zhong Zichuan,et al. Research of Jurassic hydrocarbonic sandston horizontal prediction in the north-east Sichuan Basin[J]. Journal of Southwest Petroleum Institute,2006,28(1): 1-4.
[32] 胡东风,蔡勋育. 川东南地区官9井侏罗系原油地球化学特征[J]. 天然气工业,2007,27(12):152-154.

Hu Dongfeng,Cai Xunyu. Geochemical features of crude oil from Jurassic well Guan-9 in southeast Sichuan Basin[J]. Natural Gas Industry,2007,27(12): 152-154.
[33] 李建林,王威,罗爱军,等. 川东五宝场地区沙溪庙组沉积相及储层物性[J]. 断块油气田,2008,15(3):23-26.

Li Jianlin,Wang Wei,Lou Aijun,et al. 2008. Sedimentary facies and reservoir physical property of Shaximiao Formation in Wubaochang area,east Sichuan[J]. Fault-Block Oil & Gas Field,2008,15(3): 23-26.
[34] 屈红军,董云鹏,马强,等. 重庆云阳晚三叠世—侏罗纪古流向反转及其构造意义[J]. 西北大学学报(自然科学版),2009,39(3):528-532.

Qu Hongjun,Dong Yunpeng,Ma Qiang,et al. Reversion of paleocurrent directions and its tectonic significance in the Late Triassic and Jurassic Period in Yunyang,Chongqing[J]. Journal of Northwest University (Natural Science Edition),2009,39(3): 528-532.
[35] 李军,陶士振,汪泽成,等. 川东北地区侏罗系油气地质特征与成藏主控因素[J]. 天然气地球科学,2010,21(5):732-741.

Li Jun,Tao Shizhen,Wang Zecheng,et al. Characteristics of Jurassic petroleum geology and main factors of hydrocarbon accumulation in NE Sichuan Basin[J]. Natural Gas Geoscience,2010,21(5): 732-741.
[36] 王炜,刘若冰,倪凯. 川东北侏罗系千佛崖组页岩气勘探潜力分析[J]. 西安石油大学学报(自然科学版),2012,27(6):36-41.

Wang Wei,Liu Ruobing,Ni Kai. Analysis of the exploration potential of shale gas in Jurassic Qianfoya Formation in northeast Sichuan Basin[J]. Journal of Xi'an Shiyou University (Natural Science Edition),2012,27(6): 36-41.
[37] 吴因业,张天舒,陶士振,等. 深水湖盆沉积砂体的层序地层分析:以四川侏罗系为例[J]. 沉积学报,2013,31(5):798-806.

Wu Yinye,Zhang Tianshu,Tao Shizhen,et al. Sequence stratigraphy of depositional sandbodies in the deep-water lake basin: A case from Jurassic Sichuan[J]. Acta Sedimentologica Sinica,2013,31(5): 798-806.
[38] 高健,林良彪,任天龙,等. 川北地区下侏罗统东岳庙段页岩气富集主控因素研究[J]. 岩性油气藏,2016,28(5):67-75.

Gao Jian,Lin Liangbiao,Ren Tianlong,et al. Controlling factors for shale gas enrichment of the Lower Jurassic Dongyuemiao member in the northern Sichuan Basin[J]. Lithologic Reservoirs,2016,28(5): 67-75.
[39] 张天舒,陶士振,吴因业,等. 层序演化对三角洲—滩坝沉积体系有利储层类型与分布的控制作用:以四川盆地中部侏罗系凉高山组为例[J]. 天然气地球科学,2019,30(9):1286-1300.

Zhang Tianshu,Tao Shizhen,Wu Yinye,et al. Control of sequence stratigraphic evolution on the types and distribution of favorable reservoir in the delta and beach-bar sedimentary system: Case study of Jurassic Lianggaoshan Formation in central Sichuan Basin,China[J]. Natural Gas Geoscience,2019,30(9): 1286-1300.
[40] 曾允孚,夏文杰. 沉积岩石学[M]. 北京:地质出版社,1984:44-47.

Zeng Yunfu,Xia Wenjie. Sedimentary petrology[M]. Beijing: Geological Publishing House,1984: 44-47.
[41] 邓燕,黄东,米鸿,等. 四川盆地侏罗系大安寨段湖相含云质储层成因研究[J]. 中国地质,2017,44(1):75-85.

Deng Yan,Huang Dong,Mi Hong,et al. Research on the origin of lacustrine dolomitic reservoir in Jurassic Da'anzhai Formation of Sichuan Basin[J]. Geology in China,2017,44(1): 75-85.
[42] 王全伟,梁斌,阚泽忠. 四川盆地下侏罗统自流井组湖相碳酸盐岩的碳、氧同位素特征及其古湖泊学意义[J]. 矿物岩石,2006,26(2):87-91.

Wang Quanwei,Liang Bin,Kan Zezhong. Carbon and oxygen isotopic compositions of lacustrine carbonates of the Early Jurassic Ziliujing Formation in the Sichuan Basin and their paleolimnological significance[J]. Journal of Mineralogy and Petrology,2006,26(2): 87-91.
[43] 郭来源,张士万,解习农,等. 鄂西—渝东地区下侏罗统东岳庙段泥岩地球化学特征及有机质富集模式[J]. 地球科学,2017,42(7):1235-1246.

Guo Laiyuan,Zhang Shiwan,Xie Xinong,et al. Geochemical characteristics and organic matter enrichment of the Dongyuemiao member mudstone of Lower Jurassic in the western Hubei-eastern Chongqing[J]. Earth Science,2017,42(7): 1235-1246.
[44] 卢双舫,薛海涛,钟宁宁. 地史过程中烃源岩有机质丰度和生烃潜力变化的模拟计算[J]. 地质论评,2003,49(3):292-297.

Lu Shuangfang,Xue Haitao,Zhong Ningning. Simulating calculation of the variations of organic matter abundance and hydrocarbon-generating potential during geological processes[J]. Geological Review,2003,49(3): 292-297.
[45] 薛叔浩,刘雯林,薛良清,等. 湖盆沉积地质与油气勘探[M]. 北京:石油工业出版社,2002:62-65.

Xue Shuhao,Liu Wenlin,Xue Liangqing,et al. Sedimentary geology and petroleum exploration of lake basin[M]. Beijing: Petroleum Industry Press,2002: 62-65.
[46] 黄隆基,首祥云,王端平. 自然伽马能谱测井原理及应用[M]. 北京:石油工业出版社,1995:48-55,179-183,193-194.

Huang Longji,Shou Xiangyun,Wang Duanping. The principle and application of natural gamma spectroscopy logging[M]. Beijing: Petroleum Industry Press,1995: 48-55,179-183,193-194.
[47] 郑大中. 铀的迁移富集机理新探索[J]. 四川地质学报,2003,23(2):77-86.

Zheng Dazhong. A new approach to the migration-enrichment mechanism for uranium[J]. Acta Geologica Sichuan,2003,23(2): 77-86.
[48] 王学军,王志欣,刘显阳,等. 利用铀的测井响应恢复鄂尔多斯盆地古水深[J]. 天然气工业,2008,28(7):46-48.

Wang Xuejun,Wang Zhixin,Liu Xianyang,et al. Restoring palaeo-depth of the Ordos Basin by using uranium response from GR logging[J]. Natural Gas Industry,2008,28(7): 46-48.
[49] 代大经,唐正松,陈鑫堂,等. 铀的地球化学特征及其测井响应在油气勘探中的应用[J]. 天然气工业,1995,15(5):21-24,99-100.

Dai Dajing,Tang Zhengsong,Chen Xintang,et al. Ugeochemical characteristics and the application of U logging response to oil-gas exploration[J]. Natural Gas Industry,1995,15(5): 21-24,99-100.
[50] 王峰,刘玄春,邓秀芹,等. 鄂尔多斯盆地纸坊组微量元素地球化学特征及沉积环境指示意义[J]. 沉积学报,2017,35(6):1265-1273.

Wang Feng,Liu Xuanchun,Deng Xiuqin,et al. Geochemical characteristics and environmental implications of trace elements of Zhifang Formation in Ordos Basin[J]. Acta Sedimentologica Sinica,2017,35(6): 1265-1273.
[51] 吴家喜,李苹,王健培. 水声测量浮标水面垂直振动分析[J]. 声学与电子工程,2009(4):44-45.

Wu Jiaxi,Li Ping,Wang Jianpei. Analysis of vertical surface vibration of underwater acoustic measuring buoy[J]. Acoustics and Electronics Engineering,2009(4): 44-45.
[52] 张怡辉,胡维平,魏庆菲,等. 长荡湖水生植被修复地形重塑方案研究[J]. 人民长江,2020,51(10):73-79.

Zhang Yihui,Hu Weiping,Wei Qingfei,et al. Study on topographic reconstruction of aquatic vegetation restoration in Changdang Lake[J]. Yangtze River,2020,51(10): 73-79.
[53] 吴胜和,徐振华,刘钊. 河控浅水三角洲沉积构型[J]. 古地理学报,2019,21(2):202-215.

Wu Shenghe,Xu ZhenHua,Liu Zhao. Depositional architecture of fluvial-dominated shoal water delta[J]. Journal of Palaeogeography,2019,21(2): 202-215.
[54] 史冀忠,崔海峰,许伟,等. 银额盆地巴隆乌拉白垩系巴音戈壁组黑色页岩沉积环境及有机质富集模式[J]. 地质通报,2023,41(8):1430-1444.

Shi Jizhong,Cui Haifeng,Xu Wei,et al. Sedimentary environment and organic matter enrichment model of black shale from Cretaceous Bayingebi Formation in Balongwula,Yingen-Ejin Banner Basin[J]. Geological Bulletin of China,2023,41(8):1430-1444.