[1] 陈东阳,王峰,陈洪德,等. 2019. 鄂尔多斯盆地东部府谷天生桥剖面上古生界下石盒子组8段辫状河储层构型表征[J]. 石油与天然气地质,40(2):335-345.

Chen Dongyang, Wang Feng, Chen Hongde, et al. 2019. Characterization of braided river reservoir architecture of the Upper Paleozoic He 8 member on Fugu Tianshengqiao outcrop, eastern Ordos Basin[J]. Oil & Gas Geo-logy, 40(2): 335-345.
[2] 付晶,吴胜和,王哲,等. 2015. 湖盆浅水三角洲分流河道储层构型模式:以鄂尔多斯盆地东缘延长组野外露头为例[J]. 中南大学学报(自然科学版),46(11):4174-4182.

Fu Jing, Wu Shenghe, Wang Zhe, et al. 2015. Architecture model of shallow-water delta distributary channel in lake basin: A case study of the Yanchang Formation outcrops in the eastern margin of Ordos Basin[J]. Journal of Central South University (Science and Technology), 46(11): 4174-4182.
[3] 何维领,李少华,王濡岳,等. 2024. 砂质辫状河储层构型特征及沉积演化:以山西大同侏罗系云冈组露头为例[J]. 沉积学报,42(5):1699-1710.

He Weiling, Li Shaohua, Wang Ruyue, et al. 2024. Sandy braided river architecture characteristics and evolution: A case study from outcrops in the Middle Jurassic Yungang Formation, Datong, Shanxi province[J]. Acta Sedimentologica Sinica, 42(5): 1699-1710.
[4] 胡晨林,张元福,姜在兴,等. 2015. 风浪作用下鄱阳湖现代滨岸滩坝的形态变化[J]. 石油学报,36(12):1543-1552.

Hu Chenlin, Zhang Yuanfu, Jiang Zaixing, et al. 2015. Morphologic changes in modern onshore beach bar of Poyang Lake under wind and wave actions[J]. Acta Petrolei Sinica, 36(12): 1543-1552.
[5] 纪友亮,卢欢,刘玉瑞. 2013. 苏北盆地高邮凹陷古近系阜宁组一段浅水三角洲和滩坝沉积模式[J]. 古地理学报,15(5):729-740.

Ji Youliang, Lu Huan, Liu Yurui. 2013. Sedimentary model of shallow water delta and beach bar in the member 1 of Paleogene Funing Formation in Gaoyou Sag, Subei Basin[J]. Journal of Palaeogeography, 15(5): 729-740.
[6] 姜在兴,刘晖. 2010. 古湖岸线的识别及其对砂体和油气的控制[J]. 古地理学报,12(5):589-598.

Jiang Zaixing, Liu Hui. 2010. Lacustrine palaeoshoreline and its controls on sandbodies and hydrocarbon[J]. Journal of Palaeogeography, 12(5): 589-598.
[7] 姜在兴,王俊辉,张元福. 2015. 滩坝沉积研究进展综述[J]. 古地理学报,17(4):427-440.

Jiang Zaixing, Wang Junhui, Zhang Yuanfu. 2015. Advances in beach-bar research: A review[J]. Journal of Palaeogeography, 17(4): 427-440.
[8] 李君,康颖,尹春英,等. 2016. 青岛—崂山南部海岸形成的控制因素及与构造线方向的几何分类[J]. 海洋湖沼通报,38(3):55-61.

Li Jun, Kang Ying, Yin Chunying, et al. 2016. Qingdao-Laoshan formation on the south coast of control factors and classification and the direction of the tectonic line geometry[J]. Transactions of Oceanology and Limnology, 38(3): 55-61.
[9] 李维禄. 2016. 塔里木盆地东河砂岩体储层构型成因模式研究[D]. 北京:中国石油大学(北京):87-96.

Li Weilu. 2016. Genetic model of the reservoir architechture within the 'Donghe sandstones' in Tarim Basin[D]. Beijing: China University of Petroleum (Beijing): 87-96.
[10] 廖卫华. 1995. 论东河塘组的时代[J]. 新疆地质,13(3):195-201.

Liao Weihua. 1995. On the age of Donghetang Formation in Tarim Basin[J]. Xinjiang Geology, 13(3): 195-201.
[11] 林煜,吴胜和,岳大力,等. 2013. 扇三角洲前缘储层构型精细解剖:以辽河油田曙2-6-6区块杜家台油层为例[J]. 天然气地球科学,24(2):335-344.

Lin Yu, Wu Shenghe, Yue Dali, et al. 2013. Fine anatomizing reservoir architecture of fan-delta front: A case study on Dujiatai reservoir in Shu2-6-6 block, Liaohe oilfield[J]. Natural Gas Geoscienc, 24(2): 335-344.
[12] 凌东明. 2008. 轮古东地区地层岩性圈闭地震识别技术[D]. 青岛:中国石油大学(华东):28-29.

Ling Dongming. 2008. Seismic recognization techniques of stratigraphic and lithologic traps in the eastern Lungu area[D]. Qingdao: China University of Petroleum (East China): 28-29.
[13] 刘强虎,朱红涛,舒誉,等. 2015. 珠江口盆地恩平凹陷古近系恩平组物源体系及其对滩坝的控制[J]. 石油学报,36(3):286-299.

Liu Qianghu, Zhu Hongtao, Shu Yu, et al. 2015. Provenance systems and their control on the beach-bar of Paleogene Enping Formation, Enping Sag, Pearl River Mouth Basin[J]. Acta Petrolei Sinica, 36(3): 286-299.
[14] 刘钰铭,侯加根,王连敏,等. 2009. 辫状河储层构型分析[J]. 中国石油大学学报(自然科学版),33(1):7-11,17.

Liu Yuming, Hou Jiagen, Wang Lianmin, et al. 2009. Architecture analysis of braided river reservoir[J]. Journal of China University of Petroleum, 33(1): 7-11, 17.
[15] 罗碧华,何杰,姜平,等. 2019. 北部湾盆地涠西南凹陷古近系流二段滩坝沉积特征及控制因素[J]. 地质科技情报,38(1):186-196.

Luo Bihua, He Jie, Jiang Ping, et al. 2019. Sedimentary characteristics of lacustrine beach-bars and their formation of the Second member of Liushagang Formation in the Paleogene Weixinan Depression of Beibuwan Basin[J]. Geological Science and Technology Information, 38(1): 186-196.
[16] 马立祥,邓宏文,林会喜,等. 2009. 济阳坳陷三种典型滩坝相的空间分布模式[J]. 地质科技情报,28(2):66-71.

Ma Lixiang, Deng Hongwen, Lin Huixi, et al. 2009. Three kinds of spatiotemporal models of typical beach and bar sedimentary facies in Jiyang Depression[J]. Geological Science and Technology Information, 28(2): 66-71.
[17] 孟凡昌,李本霞. 2017. 裂流的研究综述[J]. 海洋预报,34(1):82-89.

Meng Fanchang, Li Benxia. 2017. Review on the study of the rip current[J]. Marine Forecasts, 34(1): 82-89.
[18] 牛博,高兴军,赵应成,等. 2015. 古辫状河心滩坝内部构型表征与建模:以大庆油田萨中密井网区为例[J]. 石油学报,36(1):89-100.

Niu Bo, Gao Xingjun, Zhao Yingcheng, et al. 2015. Architecture characterization and modeling of channel bar in paleo-braided river: A case study of dense well pattern area of Sazhong in Daqing oilfield[J]. Acta Petrolei Sinica, 36(1): 89-100.
[19] 邱隆伟,李欣,杨勇强,等. 2022. 湖泊碎屑岩沙坝成因机制及构型表征研究进展[J]. 古地理学报,24(2):191-209.

Qiu Longwei, Li Xin, Yang Yongqiang, et al. 2022. Research progresses of the genetic mechanism and architecture characterization on lake bars[J]. Journal of Palaeogeography, 24(2): 191-209.
[20] 商建霞,张乔良,叶青,等. 2025. 滨岸相储层构型界面表征及其对剩余油分布的控制:以珠江口盆地A油田为例[J]. 沉积学报,43(4):1336-1343.

Shang Jianxia, Zhang Qiaoliang, Ye Qing, et al. 2025. Architecture interface characterization of littoral facies reservoir and the remaining oil distribution: A case study from the Wenchang a oilfield in the Pearl River Mouth Basin[J]. Acta Sedimentologica Sinica, 43(4): 1336-1343.
[21] 申银民,贾进华,齐英敏,等. 2011. 塔里木盆地上泥盆统—下石炭统东河砂岩沉积相与哈得逊油田的发现[J]. 古地理学报,13(3):279-286.

Shen Yinmin, Jia Jinhua, Qi Yingmin, et al. 2011. Sedimentary facies of Donghe sandstone in the Upper Devonian-Lower Carboniferous and discovery of Hadexun oilfield in Tarim Basin[J]. Journal of Palaeogeography, 13(3): 279-286.
[22] 孙天建,穆龙新,吴向红,等. 2014. 砂质辫状河储层构型表征方法:以苏丹穆格莱特盆地Hegli油田为例[J]. 石油学报,35(4):715-724.

Sun Tianjian, Mu Longxin, Wu Xianghong, et al. 2014. A quantitative method for architectural characterization of sandy braided-river reservoirs: Taking Hegli oilfield of Muglad Basin in Sudan as an example[J]. Acta Petrolei Sinica, 35(4): 715-724.
[23] 王俊辉,姜在兴,鲜本忠,等. 2021. 利用滩坝砂体规模研究古风力的定量恢复[J]. 古地理学报,23(5):937-950.

Wang Junhui, Jiang Zaixing, Xian Benzhong, et al. 2021. Determination of palaeo-wind strength by using scale of beach-bar sand bodies[J]. Journal of Palaeogeography, 23(5): 937-950.
[24] 王秀娟,陈冬霞,郭文杰,等. 2022. 拗陷湖盆“古湖岸线”“古深湖线”位置判别方法:以鄂尔多斯盆地上三叠统延长组长6油层组为例[J]. 西北大学学报(自然科学版),52(3):495-507.

Wang Xiujuan, Chen Dongxia, Guo Wenjie, et al. 2022. Location discrimination methods of "ancient lake shoreline" and "ancient deep lake line" in continental lacustrine basin: Taking Chang 6 layers of Yanchang Formation in Ordos Basin as an example[J]. Journal of Northwest University (Natural Science Edition), 52(3): 495-507.
[25] 吴胜和,纪友亮,岳大力,等. 2013. 碎屑沉积地质体构型分级方案探讨[J]. 高校地质学报,19(1):12-22.

Wu Shenghe, Ji Youliang, Yue Dali, et al. 2013. Discussion on hierarchical scheme of architectural units in clastic deposits[J]. Geological Journal of China Universities, 19(1): 12-22.
[26] 吴胜和,李宇鹏. 2007. 储层地质建模的现状与展望[J]. 海相油气地质,12(3):53-60.

Wu Shenghe, Li Yupeng. 2007. Reservoir modeling: Current situation and development prospect[J]. Marine Origin Petroleum Geology, 12(3): 53-60.
[27] 徐汉林,江同文,顾乔元,等. 2008. 塔里木盆地哈得逊油田成藏研究探讨[J]. 西南石油大学学报(自然科学版),30(5):17-21.

Xu Hanlin, Jiang Tongwen, Gu Qiaoyuan, et al. 2008. Probe into hydrocarbon accumulations in the Hadson oilfield, Tarim Basin[J]. Journal of Southwest Petroleum University (Science & Technology Edition), 30(5): 17-21.
[28] 徐丽强,李胜利,于兴河,等. 2016. 辫状河三角洲前缘储层构型分析:以彩南油田彩9井区三工河组为例[J]. 油气地质与采收率,23(5):50-57,82.

Xu Liqiang, Li Shengli, Yu Xinghe, et al. 2016. Analysis of reservoir architecture in the braided river delta front: A case study of the Sangonghe Formation in block Cai9 of Cainan oilfield[J]. Petroleum Geology and Recovery Efficiency, 23(5): 50-57, 82.
[29] 闫百泉,张鑫磊,于利民,等. 2014. 基于岩心及密井网的点坝构型与剩余油分析[J]. 石油勘探与开发,41(5):597-604.

Yan Baiquan, Zhang Xinlei, Yu Limin, et al. 2014. Point bar configuration and residual oil analysis based on core and dense well pattern[J]. Petroleum Exploration and Development, 41(5): 597-604.
[30] 杨勇强,邱隆伟,姜在兴,等. 2011. 陆相断陷湖盆滩坝沉积模式:以东营凹陷古近系沙四上亚段为例[J]. 石油学报,32(3):417-423.

Yang Yongqiang, Qiu Longwei, Jiang Zaixing, et al. 2011. A depositional pattern of beach bar in continental rift lake basins: A case study on the upper part of the Fourth member of the Shahejie Formation in the Dongying Sag[J]. Acta Petrolei Sinica, 32(3): 417-423.
[31] 于兴河. 2012. 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,19(2):1-14.

Yu Xinghe. 2012. Existing problems and sedimentogenesis-based methods of reservoir characterization during the middle and later periods of oilfield development[J]. Earth Science Frontiers, 19(2): 1-14.
[32] 余义常,徐怀民,高兴军,等. 2018. 海相碎屑岩储层不同尺度微观剩余油分布及赋存状态:以哈得逊油田东河砂岩为例[J]. 石油学报,39(12):1397-1409.

Yu Yichang, Xu Huaimin, Gao Xingjun, et al. 2018. Distribution and occurrence status of microscopic remaining oil at different scales in marine clastic reservoirs: A case study of Donghe sandstone in Hadeson oilfield[J]. Acta Petrolei Sinica, 39(12): 1397-1409.
[33] 袁丙龙,张辉,叶青,等. 2021. 基于三角洲复合砂体构型的流动单元划分及剩余油分布模式[J]. 沉积学报,39(5):1253-1263.

Yuan Binglong, Zhang Hui, Ye Qing, et al. 2021. Flow-unit classification based on compound sand-body architecture of delta and distribution pattern of remaining oil[J]. Acta Sedimentologica Sinica, 39(5): 1253-1263.
[34] 张辉,王怀厂,刘新社,等. 2015. 古湖岸线确定及其对优质储集层控制:以鄂尔多斯盆地北部地区盒8段为例[J]. 沉积学报,33(2):348-356.

Zhang Hui, Wang Huaichang, Liu Xinshe, et al. 2015. Determination of lacustrine palaeoshore line and its controls on the high quality reservoir: A case from the 8th member of Shihezi Formation in north Ordos Basin[J]. Acta Sedimentologica Sinica, 33(2): 348-356.
[35] 张自力,李琦,朱筱敏,等. 2022. 陆相断陷湖盆滩坝沉积特征与地震沉积学响应:以渤海湾盆地霸县凹陷古近系沙河街组一段为例[J]. 石油与天然气地质,43(4):970-989.

Zhang Zili, Li Qi, Zhu Xiaomin, et al. 2022. Sedimentary characteristics and seismic sedimentologic responses of beach-bar deposits in a downfaulted lacustrine basin: A case study of Es 1 in the Palaeogene Baxian Sag, Bohai Bay Basin[J]. Oil & Gas Geology, 43(4): 970-989.
[36] 赵俊威,徐怀民,江同文,等. 2018. 海平面变化对海相临滨储层微观非均质性的控制作用:以塔里木盆地哈得4油田东河砂岩为例[J]. 中国矿业大学学报,47(5):1068-1080.

Zhao Junwei, Xu Huaimin, Jiang Tongwen, et al. 2018. The controlling effect of sea level changing on the microscopic heterogeneity of marine reservoir: Taking shoreface subfacies reservoir of Donghe sandstone in Hade 4 oilfield as an example[J]. Journal of China University of Mining & Technology, 47(5): 1068-1080.
[37] 赵俊威,徐怀民,徐朝晖,等. 2016. 中高渗油藏开发流体势对剩余油分布控制机理[J]. 中国矿业大学学报,45(3):535-543.

Zhao Junwei, Xu Huaimin, Xu Zhaohui, et al. 2016. Controlling mechanism on remaining oil distribution by development fluid potential in middle-high permeability reservoir[J]. Journal of China University of Mining & Technology, 45(3): 535-543.
[38] 赵晓明,刘飞,葛家旺,等. 2023. 深水水道沉积构型单元分级与结构样式[J]. 沉积学报,41(1):37-51.

Zhao Xiaoming, Liu Fei, Ge Jiawang, et al. 2023. Sedimentary architecture unit classification and structural style of deep-water channels[J]. Acta Sedimentologica Sinica, 41(1): 37-51.
[39] 周淋,吕传炳,纪友亮,等. 2019. 远源浅水辫状河三角洲前缘储层构型模式研究:以冀中坳陷饶阳凹陷留西油田L18断块为例[J]. 古地理学报,21(6):959-970.

Zhou Lin, Chuanbing Lü, Ji Youliang, et al. 2019. Reservoir architecture pattern analysis of distal shallow water braided delta front: A case study of L18 fault block, Liuxi oilfield, Raoyang Sag, Jizhong Depression[J]. Journal of Palaeogeography, 21(6): 959-970.
[40] 周新源,杨海军,蔡振忠,等. 2007. 中国海相油气田勘探实例之十:塔里木盆地哈得逊海相砂岩油田的勘探与发现[J]. 海相油气地质,12(4):51-60.

Zhou Xinyuan, Yang Haijun, Cai Zhenzhong, et al. 2007. Cases of discovery and exploration of marine fields in China (Part 10): Hadexun sandstone oilfield in Tarim Basin[J]. Marine Origin Petroleum Geology, 12(4): 51-60.
[41] 朱筱敏,信荃麟,张晋仁. 1994. 断陷湖盆滩坝储集体沉积特征及沉积模式[J]. 沉积学报,12(2):20-28.

Zhu Xiaomin, Xin Quanlin, Zhang Jinren. 1994. Sedimentary characteristics and models of the beach-bar reservoirs in faulted down lacustrine basins[J]. Acta Sedimentologica Sinica, 12(2): 20-28.
[42] Clifton H E. 2006. A reexamination of facies models for clastic shorelines[M]//Posamentier H W, Walker R G. Facies models revisited. Tulsa: SEPM Society for Sedimentary Geology: 293-338.
[43] Edmonds D A, Slingerland R L. 2010. Significant effect of sediment cohesion on delta morphology[J]. Nature Geoscience, 3(2): 105-109.
[44] Friedman G M, Sanders J E. 1978. Principles of sedimentology[M]. New York: John Wiley & Sons: 488-490.
[45] Heward A P. 1981. A review of wave-dominated clastic shoreline deposits[J]. Earth-Science Reviews, 17(3): 223-276.
[46] Komar P D. 1998. Beach processes and sedimentation[M]. 2nd ed. Upper Saddle River, New Jersey: Prentice Hall: 543.
[47] Miall A D. 1985. Architectural-element analysis: A new method of facies analysis applied to fluvial deposits[J]. Earth-Science Reviews, 22(4): 261-308.
[48] Peterson C D, Vanderburgh S, Roberts M C, et al. 2010. Composition, age, and depositional rates of shoreface deposits under barriers and beach plains of the Columbia River littoral cell, USA[J].Marine Geology, 273(1/2/3/4): 62-82.
[49] Price T D, Ruessink B G. 2011. State dynamics of a double sandbar system[J]. Continental Shelf Research, 31(6): 659-674.