[1] 白连德,邵明礼,尹永康,曾凡成,向钰鉥,屈卫华,薛松,刘国东. 2021. 松辽盆地中央古隆起带南部基岩储层特征及油气成藏模式. 世界地质, 40(2): 1-8. [Bai L D,Shao M L,Yin Y K,Zeng F C,Xiang Y S,Qu W H,Xue S,Liu G D.2021. Characteristics of basement rock reservoir in southern central paleo-uplift belt of Songliao Basin and its hydrocarbon accumulation models. Global Geology, 40(2): 1-8] [2] 操应长,葸克来,王健,远光辉,杨田. 2011. 砂岩机械压实与物性演化成岩模拟实验初探. 现代地质, 25(6): 1152-1158. [Cao Y C,Xi K L,Wang J,Yuan G H,Yang T.2011. Preliminary discussion of simulation experiments on the mechanical compaction and physical property evolution of sandstones. Geoscience, 25(6): 1152-1158] [3] 陈冬霞,庞雄奇,姜振学,张俊. 2006. 中国东部陆相盆地隐蔽油气藏成藏机理与模式. 石油勘探与开发, 33(2): 178-183. [Chen D X,Pang X Q,Jiang Z X,Zhang J.2006. Formation mechanism and model of subtle traps in continental basins of east China. Petroleum Exploration and Development, 33(2): 178-183] [4] 陈更新,王建功,杜斌山,刘应如,李艳丽,杨会洁,李志明,俞晓峰. 2020. 柴达木盆地尖北地区裂缝性基岩气藏储层特征. 岩性油气藏, 32(4): 36-47. [Chen G X,Wang J G,Du B S,Liu Y R,Li Y L,Yang H J,Li Z M,Yu X F.2020. Characteristics of fractured bedrock gas reservoir in Jianbei gas field,Qaidam Basin. Lithologic Reservoirs, 32(4): 36-47] [5] 陈广坡,王天奇,李林波,李书民,李娟. 2010. 箕状断陷湖盆湖底扇特征及油气勘探: 以二连盆地赛汉塔拉凹陷腾格尔组二段为例. 石油勘探与开发, 37(1): 63-69. [Chen G P,Wang T Q,Li L P,Li S M,Li J.2010. Characteristics of a sublacustrine fan in a half-graben rift lake basin and its petroleum prospects: case study on the second member of the Tenggeer Formation,Saihantala Sag,Erlian Basin. Petroleum Exploration and Development, 37(1): 63-69] [6] 陈蓉,田景春,王峰,冯强汉,蒙小灵. 2013. 鄂尔多斯盆地高桥地区盒8段砂岩储层评价. 成都理工大学学报(自然科学版), 40(1): 8-14. [Chen R,Tian J C,Wang F,Feng Q H,Meng X L.2013. Sandstone reservoir evaluation of Member 8 of Middle Permian Xiashihezi Formation in the Gaoqiao area of Ordos Basin,China. Journal of Chengdu University of Technology(Sci & Technol Ed), 40(1): 8-14] [7] 邓运华. 2015. 渤海大中型潜山油气田形成机理与勘探实践. 石油学报, 36(3): 253-261. [Deng Y H.2015. Formation mechanism and exploration practice of large-medium buried-hill oil fields in Bo-hai sea. Acta Petrolei Sinica, 36(3): 253-261] [8] 侯冠群,周文,王永诗. 2016. 车镇凹陷北部陡坡带深水浊积扇发育特征及控制因素: 以车66井区沙三段下亚段为例. 油气地质与采收率, 23(4): 27-33. [Hou G Q,Zhou W,Wang Y S.2016. Development features and controlling factors of deep-water turbiditefans in north slope of Chezhen sag: a case study of the block Che66 in the lower third member of Shahejie Formation. Petroleum Geology and Recovery Efficiency, 23(4): 27-33] [9] 胡潇,曲永强,胡素云,潘建国,尹路,许多年,滕团余,王斌. 2020. 玛湖凹陷斜坡区浅层油气地质条件及勘探潜力. 岩性油气藏, 32(2): 67-77. [Hu X,Qu Y Q,Hu S Y,Pan J G,Yin L,Xu D N,Teng T Y,Wang B.2020. Geological conditions and exploration potential of shallow oil and gas in slope area of Mahu Sag,Junggar Basin. Lithologic Reservoirs, 32(2): 67-77] [10] 胡鑫,丁晓琪,张歆妍,李雷,汪孝敬. 2021. 渤南北带沙三—沙四段砂砾岩储层特征及发育主控因素. 东北石油大学学报, 45(1): 55-61. [Hu X,Ding X Q,Zhang X Y,Li L,Wang X J.2021. Glutenite reservoir characteristics and main controlling factors of Es3-Es4 in northern zone of Bonan. Journal of Northeast Petroleum University, 45(1): 55-61] [11] 胡志伟,徐长贵,杨波,黄志,宿雯. 2017. 渤海海域蓬莱9-1油田花岗岩潜山储层成因机制及石油地质意义. 石油学报, 38(3): 274-285. [Hu Z W,Xu C G,Yang B,Huang Z,Su W.2017. Reservoir forming mechanism of Penglai 9-1 granite buried-hills and its oil geology significance in Bohai Sea. Acta Petrolei Sinica, 38(3): 274-285] [12] 姜晓宇,张研,甘利灯,宋涛,杜文辉,周晓越. 2020. 花岗岩潜山裂缝地震预测技术. 石油地球物理勘探, 55(3): 694-704. [Jiang X Y,Zhang Y,Gan L D,Song T,Du W H,Zhou X Y.2020. Seismic techniques for predicting fractures in granite buried hills. Oil Geophysical Prospecting, 55(3): 694-704] [13] 李建平,周心怀,王清斌. 2014. 表生喀斯特作用对蓬莱花岗岩潜山油田风化壳储层发育的控制作用. 成都理工大学学报(自然科学版),41(5):556-563. [Li J P,Zhou X H,Wang Q B.2014. Control of epigenic karstification over weathering crust reservoir development of Penglai granite buried hill oilfield. Journal of Chengdu University of Technology(Natural Science Edition),41(5):556-563] [14] 李江涛,付锁堂,王任一,刘应如,王海成,奧文博,马腾. 2020. 达木盆地阿尔金山前深层基岩气藏储集空间再认识与成储潜力区探讨. 天然气工业, 40(2): 90-96. [Li J T,Fu S T,Wang R Y,Liu Y R,Wang H C,Ao W B,Ma T.2020. Reservoir space and potential reservoir-formation areas in deep bedrock gas reservoirs in Altun forelands,Qaidam Basin: recognition and discussion. Natural Gas Industry, 40(2): 90-96] [15] 李丕龙,张善文,宋国奇,肖焕钦,王永诗. 2004. 断陷盆地隐蔽油气藏形成机制: 以渤海湾盆地济阳坳陷为例. 石油实验地质, 24(1): 3-10. [Li P L,Zhang S W,Song G Q,Xiao H Q,Wang Y S.2004. Forming mechanism of subtle oil pools in fault basins: taking the Jiyang Depression of the Bohaiwan Basin as an exampl. Petroleum Geology & Experiment, 24(1): 3-10] [16] 刘惠民. 2022. 济阳坳陷页岩油勘探实践与前景展望. 中国石油勘探, 27(1): 73-87. [Liu H M.2022. Exploration practice and prospect of shale oil in Jiyang Depression. China Petroleum Exploration, 27(1): 73-87] [17] 刘惠民,张顺,王学军,张鹏飞,李军亮,王勇,魏晓亮,银燕,朱德燕. 2022. 陆相断陷盆地页岩岩相组合类型及特征: 以济阳坳陷东营凹陷沙四上亚段页岩为例. 地球科学. http://kns.cnki.net/kcms/detail/42.1874.P.20220615.1440.002.html. [Liu H M,Zhang S, Wang X J,Zhang P F, Li J L, Wang Y, Wei X L, Yin Y, Zhu D Y.2022. Types and characteristics of shale lithofacies assemblages in continental fault basins: take the shale of upper Member 4 of Shahejie Formation in Dongying sag of Jiyang Depression as an example. Earth Science. https://kns.cnki.net/kcms/detail/42.1874.P.20220615.1440.002.html] [18] 刘明洁,刘震,王标,张旺,姚星,王新征,赵海燕. 2014. 成藏期砂岩孔隙度对油气分布的控制作用: 以东营凹陷牛庄洼陷沙三中亚段岩性油藏为例. 地质科学, 49(1): 147-160. [Liu M J,Liu Z,Wang B,Zhang W,Yao X,Wang X Z,Zhao H Y.2014. The controls of sandstone paleo-porosity in accumulation period to hydrocarbon distribution: a case study from Es3 middle in Niuzhuang Sag,Dongying Depression. Chinese Journal of Geology, 49(1): 147-160] [19] 刘震,赵阳,肖伟,杜金虎,张以民,易士威,刘俊榜. 2005. 内蒙古二连盆地岩性油藏形成与分布的优势性特征. 现代地质, 19(3): 570-578. [Liu Z,Zhao Y,Xiao W,Du J H,Zhang Y M,Yi S W,Liu J B.2005. Predominant characteristics of formation and distribution for lithologic petroleum reservoir in Erlian Basin,Inner Mongolia. Geoscience, 19(3): 570-578] [20] 刘震,赵政璋,赵阳,赵贤正,肖伟. 2006a. 含油气盆地岩性油气藏的形成和分布特征. 石油学报, 27(1): 17-23. [Liu Z, Zhao Z Z, Zhao Y, Zhao X Z, Xiao W.2006a. Predominant characteristics of formation and distribution for lithologic reservoirs in petroliferous basin. Acta Petrolei Sinica, 27(1): 17-23] [21] 刘震,赵阳,杜金虎,肖伟,金博,许晓明,梁全胜,郝琦. 2006b. 陆相断陷盆地岩性油气藏形成与分布的“多元控油—主元富集”特征. 地质科学, 41(10): 612-635. [Liu Z,Zhao Y,Du J H,Xiao W,Jin B,Xu X M,Liang Q S,Hao Q.2006b. Characteristics of “multi factor controlling and key factor entrapping”of formation and distribution of lithologic petroleum reservoirs in continental rift basin. Chinese Journal of Geology, 41(10): 612-635] [22] 刘震,赵贤正,赵阳,郝琦,刘俊榜,许晓明,梁全胜,肖伟. 2006c. 陆相断陷盆地“多元控油—主元成藏”概念及其意义. 中国石油勘探, 11(5): 13-20. [Liu Z,Zhao X Z,Zhao Y,Hao Q,Liu J B,Xu X M,Liang Q S,Xiao W.2006c. Concept and significance of “Multi-factors controlling and key-factors reservoring” for lithologic reservoirs in continental faulted-depression basins. China Petroleum Exploration, 11(5): 13-20] [23] 刘震,陈艳鹏,赵阳,郝奇,许晓明,常迈. 2007. 陆相断陷盆地油气藏形成控制因素及分布规律概述. 岩性油气藏, 19(2): 121-127. [Liu Z,Chen Y P,Zhao Y,Hao Q,Xu X M,Chang M.2007. Distribution and controlling factors of hydrocarbon reservoirs in continental fault basins. Lithologic Reservoirs, 19(2): 121-127] [24] 刘震,黄艳辉,潘高峰,刘静静,吴迅达,王菁,张胜斌. 2012. 低孔渗砂岩储层临界物性确定及其石油地质意义. 地质学报, 86(11): 1815-1825. [Liu Z,Huang Y H,Pan G F,Liu J J,Wu X D,Wang J,Zhang S B.2012. Determination of critical properties of low porosity and permeability sandstone reservoir and its significance in petroleum geology. Acta Geologica Sinica, 86(11): 1815-1825] [25] 马洪,王循,李欣,闫伟鹏,郭彬程,黄福喜,唐惠. 2012. 渤海湾盆地深层致密砂岩气勘探潜力浅析. 山东科技大学学报(自然科学版), 31(5): 63-70. [Ma H,Wang X,Li X,Yan W P,Guo B C,Huang F X,Tang H.2012. Analysis of exploration potential about tight sandstone gas in deep zone of Bohai Bay Basin. Journal of Shandong University of Science and Technology(Natural Science), 31(5): 63-70] [26] 马龙,刘全新,张景廉,卫平生,陈启林,张虎权. 2006. 论基岩的油气勘探前景. 天然气工业, 26(1): 41-46. [Ma L,Liu Q X,Zhang J L,Wei P S,Chen Q L,Zhang H Q.2006. The prospect of oil and gas exploration in bedrock. Natural Gas Industry, 26(1): 41-46] [27] 孟元林,潘雪梅,吴河勇,王成,李明明,张安达,修洪文,王正伟. 2010. 松辽盆地北部中浅层含油饱和度和孔隙度的关系与油气侵位对成岩作用的抑制. 矿物岩石地球化学通报, 29(1): 11-16. [Meng Y L,Pan X M,Wu H Y,Wang C,Li M M,Zhang A D,Xiu H W,Wang Z W.2010. Porosity and oil saturation correlation and diagenetic retardation of sandstone by hydrocarbon emplacement in the shallow-middle strata of the Northern Songliao Basin. Bulletin of Mineralogy, Petrology and Geochemistry, 29(1): 11-16] [28] 孟元林,刘文慧,孟凡晋,梁伯勋,王建伟,潘雪梅. 2011. 松辽盆地徐家围子断陷深层异常高孔带分布特征与成因分析. 古地理学报, 13(1): 75-84. [Meng Y L,Liu W H,Meng F J,Liang B X,Wang J W,Pan X M.2011. Distribution and origin of abnormal high porosity zones of the Xujiaweizi fault depression in Songliao Basin. Journal of Paleogeography(Chinese Edition), 13(1): 75-84] [29] 庞雄奇,李丕龙,张善文,陈冬霞,宋国奇,王永诗,张俊. 2007. 陆相断陷盆地相一势耦合控藏作用及其基本模式. 石油与天然气地质, 28(5): 641-652. [Pang X Q,Li P L,Zhang S W,Chen D X,Song G Q,Wang Y S,Zhang J.2007. Control of facies-potential coupling on hydrocarbon accumulation in continental faulted basins and its basic geological models. Oil & Gas Geology, 28(5): 641-652] [30] 秦伟军. 2006. 中国东部断陷盆地石油潜力资源量分布及转化探明储量潜力. 当代石油石化, 14(8): 21-22,25. [Qin W J.2006. Distribution of potential petroleum resources and invert potential of geologic reserves in the eastern fractured basins of China. Petroleum & Petrochemical Today, 14(8): 21-22,25] [31] 秦伟军,张中华. 2015. 中国东部断陷盆地油气勘探开发现状及技术需求. 石油科技论坛, 34(6): 42-45. [Qin W J,Zhang Z H.2015. Present conditions and technological demand of oil and gas exploration and development in China's eastern faulted basins. Petroleum Technology Forum, 34(6): 42-45] [32] 施和生,杨计海,张迎朝,甘军,杨金海. 2019. 琼东南盆地地质认识创新与深水领域天然气勘探重大突破. 中国石油勘探, 24(6): 691-698. [Shi H S,Yang J H,Zhang Y C,Gan J,Yang J H.2019. Geological understanding innovation and major breakthrough to natural gas exploration in deep water in Qiongdongnan Basin. China Petroleum Exploration, 24(6): 691-698] [33] 史基安,王金鹏,毛明陆,王琪,郭正权,郭雪莲,卢龙飞. 2003. 鄂尔多斯盆地西峰油田三叠系延长组长6—8段储层砂岩成岩作用研究. 沉积学报, 21(3): 373-380. [Shi J A,Wang J P,Mao M L,Wang Q,Guo Z Q,Guo X L,Lu L F.2003. Reservoir Sandstone Diagenesis of Member 6 to 8 in Yanchang Formation(Triassic),Xifeng Oilfield,Ordos Basin. Acta Sedimentologica Sinica, 21(3): 373-380] [34] 宋明水,刘惠民,王勇,刘雅利. 2020. 济阳坳陷古近系页岩油富集规律认识与勘探实践. 石油勘探与开发, 47(2): 225-235. [Song M S,Liu H M,Wang Y,Liu Y L.2020. Enrichment rules and exploration practices of Paleogene shale oil in Jiyang Depression,Bohai Bay Basin,China,Petroleum Exploration and Development, 47(2): 225-235] [35] 孙秀建,马峰,白亚东,王波,管斌,罗娜,魏顺科. 2020. 柴达木盆地阿尔金山山前带基岩气藏差异富集因素. 新疆石油地质, 41(4): 394-401. [Sun X J,Ma F,Bai Y D,Wang B,Guan B,Luo N,Wei S K.2020. Differentiated hydrocarbon enrichment factors of bedrock gas reservoir in piedmont belt of Altun mountain,Qaidam Basin. Xinjiang Petroleum Geology, 41(4): 394-401] [36] 王化爱,钟建华,杨少勇,张长好,王金华. 2009. 柴达木盆地乌南—绿草滩地区下油砂山组滩坝砂岩特征与储层评价. 石油地球物理勘探, 44(5): 597-602. [Wang H A,Zhong J H,Yang S Y,Zhang C H,Wang J H.2009. Lower Oil Sand Hill Formation beachbar sandstone characteristics and reservoir evaluation in Wunan Lvcaotan area. Oil Geophysical Prospecting, 44(5): 597-602] [37] 王景春,窦立荣,徐建国,魏小东,王中凡,陈洪芝. 2018. “两宽一高”地震资料在花岗岩潜山储层表征中的应用: 以乍得邦戈盆地为例. 石油地球物理勘探, 53(2): 320-328. [Wang J C,Dou L R,Xu J G,Wei X D,Wang Z F,Chen H Z.2018. Application of “two wide and one high” seismic data in the characterization of granite buried hill reservoirs: a case study of in the Bangor Basin. Petroleum Geophysical Exploration, 53(2): 320-328] [38] 王明臣,官大勇,刘朋波,张参,苏凯,任健. 2016. 渤海蓬莱9-1油藏花岗岩储层特征与成储化条件分析. 地质科技情报,35(6): 83-89. [Wang M C,Guan D Y,Liu P B,Zhang C,Su K,Ren J.2016. Characteristics and formation conditions of the Penglai 9-1 granite oil reservoir in Bohai Gulf Basin. Geological Science and Technology Information, 35(6): 83-89] [39] 王有智,毛毳,刘丽莉,李丹. 2020. 方正断陷白垩系含砂砾岩储层孔喉特征. 东北石油大学学报, 44(2): 36-45. [Wang Y Z,Mao C,Liu L L,Li D.2020. Pore throat characteristics of glutenite reservoirs in Cretaceous of Fangzheng Depression. Journal of Northeast Petroleum University, 44(2): 36-45] [40] 伍劲,高先志,周伟,张永庶,杨云,由超. 2018. 柴达木盆地东坪地区基岩风化壳与油气成藏. 新疆石油地质, 39(6): 666-672. [Wu J,Gao X Z,Zhou W,Zhang Y S,Yang Y,You C.2018. Base rock weathering crusts and petroleum accumulation in dongping area,Qaidam Basin. Xinjiang Petroleum Geology, 39(6): 666-672] [41] 鲜本忠,王永诗,周廷全,孙立东. 2007. 断陷湖盆陡坡带砂砾岩体分布规律及控制因素: 以渤海湾盆地济阳坳陷车镇凹陷为例. 石油勘探与开发, 34(4): 429-436. [Xian B Z,Wang Y S,Zhou T Q,Sun L D.2007. Distribution and controlling factors of glutinite bodies in the actic region of a rift basin: an example from Chezhen Sag,Bohai Bay Basin. Petroleum Exploration and Development, 34(4): 429-436] [42] 徐国盛,陈飞,周兴怀,王昕,李建平,王国芝,王霄,范蕾. 2016. 蓬莱9-1构造花岗岩古潜山大型油气田的成藏过程. 成都理工大学学报(自然科学版), 43(2): 153-162. [Xu G S,Chen F,Zhou X H,Wang X,Li J P,Wang G Z,Wang X,Fan L.2016. Hydrocarbon accumulation process of large scale oil and gas field of granite buried hill in Penglai 9-1 structure,Bohai,China. Journal of Chengdu University of Technology(Natural Science Edition), 43(2): 153-162] [43] 徐兴友,刘卫彬,白静,陈珊,李耀华. 2021. 松辽盆地南部青山口组一段页岩油富集地质特征及资源潜力. 地质与资源, 30(3): 296-305. [Xu X Y,Liu W B,Bai J,Chen S,Li Y H.2021. Enrichment characteristics and resource potential of shale oil in the first member of Qingshankou Formation in southern Songliao basin. Geology and Resources, 30(3): 296-305] [44] 徐兴友,刘卫彬,白静,陈珊,李耀华. 2022. 松辽盆地南部陆相页岩油气勘查突破及意义. 天然气工业, 42(3): 12-20. [Xu X Y,Liu W B,Bai J,Chen S,Li Y H.2022. Breakthroughs in continental shale oil and gas exploration in the southern Songliao Basin and its implications for carbon neutrality. Natural Gas Industry, 42(3): 12-20] [45] 徐长贵. 2013. 陆相断陷盆地源一汇时空耦合控砂原理: 基本思想、概念体系及控砂模式. 中国海上油气, 25(4): 1-11. [.Xu C G.2013. Controlling sand principle of source-sink coupling in time and space in continental rift basins: basic idea,conceptual systems and controlling sand models. China Offshore Oil and Gas, 25(4): 1-11] [46] 徐长贵,于海波,王军,刘晓健. 2019. 渤海海域渤中19-6大型凝析气田形成条件与成藏特征. 石油勘探与开发, 46(1): 25-38. [Xu C G,Yu H B,Wang J,Liu X J.2019. Formation conditions and accumulation characteristics of Bozhong 19-6 large condensate gas field in offshore Bohai Bay Basin. Petroleum Exploration and Development, 46(1): 25-38] [47] 许涵越. 2014. 松辽盆地南部青山口组页岩油资源潜力评价. 东北石油大学硕士论文. [Xu H Y.2014. Evaluation on shale oil resources in Qingshankou Formation of the southern Songliao basin. Masteral dissertation of Northeast Petroleum University] [48] 杨正明,张英芝,郝明强,刘先贵,单文文. 2006. 低渗透油田储层综合评价方法. 石油学报, 27(2): 64-67. [Yang Z M,Zhang Y Z,Hao M Q,Liu X G,Shan W W.2006. Comprehensive evaluation of reservoir in low-permeability oilfields. Acta Petrolei Sinica, 27(2): 64-67] [49] 易士威,李明鹏,徐淑娟,郭绪杰,崔宝文,蒙启安,程宏岗,武雪琼,崔俊峰,王立贤. 2020. 松辽盆地中央隆起潜山成藏条件及模式. 天然气地球科学, 31(12): 1663-1676. [Yi S W,Li M P,Xu S J,Guo X J,Cui B W,Meng Q A,Cheng H G,Wu X Q,Cui J F,Wang L X.2020. Accumulation condition and model of buried hill in the Central Uplift,Songliao Basin. Natural Gas Geoscience, 31(12): 1663-1676] [50] 尹昕,应文敏. 2013. 鄂尔多斯盆地大牛地气田上古生界低孔渗砂岩储层评价. 矿物岩石, 25(2): 104-109. [Yin X,Ying W M.2013. Reservoir evaluation for the low porosity and permeability sandstone of Upper Paleozoic in the Danidi gas field,Ordos Basin. Journal of Mineralogy and Petrology, 25(2): 104-109] [51] 于兴河,姜辉,李胜利,陈永峤. 2007. 中国东部中、新生代陆相断陷盆地沉积充填模式及其控制因素: 以济阳坳陷东营凹陷为例. 岩性油气藏, 19(1): 39-45. [Yu X H,Jiang H,Li S L,Chen Y Q.2007. Depositional filling models and controlling factors on Mesozoic and Cenozoic fault basins of terrestrial facies in eastern China: a case study of Dongying Sag of Jiyang Depression. Lithologic Reservoirs, 19(1): 39-45] [52] 袁东山,张枝焕,刘洪军. 2005. 油气充注对晚期碳酸盐矿物胶结作用的影响. 石油天然气学报(江汉石油学院学报), 27(2): 298-300. [53] 张抗,门相勇. 2014. 中国未开发石油储量分析和对策. 中国石油勘探, 19(5): 23-31. [Zhang K,Men X Y.2014. Analysis and strategy of China's undeveloped oil reserves. China Petroleum Exploration, 19(5): 23-31] [54] 张锐,纪友亮,岳文珍,齐立新. 2012. 陡坡带扇三角洲高分辨率层序地层学: 以柳赞油田北区沙三~3亚段下部砂层组为例. 科学技术与工程, 12(15): 3587-3590. [Zhang R,Ji Y L,Yue W Z,Qi L X.2012. High-resolution sequence stratigraphy for fan delta at steep slope belt: taking the lower sand groups of the Third-submember sedimentation of Member Ⅲ of Shahejie Formation in the north region of Liuzan oilfield as an example. Science Technology and Engineering, 12(15): 3587-3590] [55] 张顺,刘惠民,宋国奇,王永诗,陈世悦,张守鹏. 2016. 东营凹陷页岩油储集空间成因及控制因素. 石油学报, 37(12): 1495-1507, 1527. [Zhang S,Liu H M,Song G Q,Wang Y S,Chen S Y,Zhang S P.2016. Genesis and control factor of shale oil reserving in Dongying sag. Acta Petrolei Sinica, 37(12): 1495-1507, 1527] [56] 赵贤正,金凤鸣,刘震,张以明,王权,韩春元. 2007. 二连盆地地层岩性油藏“多元控砂—四元成藏—主元富集”与勘探实践(Ⅰ): “多元控砂”机理. 岩性油气藏, 19(2): 9-15. [Zhao X Z,Jin F M,Liu Z,Zhang Y M,Wang Q,Han C Y.2007. Multi-factor controlling,four-factor entrapping and key-factor enrichment”of stratigraphic-lithologic reservoirs and exploration practice in Erlian Basin(Ⅰ): “multi-factor controlling”mechanism. Lithological Reservoir, 19(2): 9-15] [57] 赵贤正,金凤鸣,王权,韩春元,康如坤. 2011. 陆相断陷盆地洼槽聚油理论及其应用: 以渤海湾盆地冀中坳陷和二连盆地为例. 石油学报, 32(1): 18-24. [Zhao X Z,Jin F M,Wang Q,Han C Y,Kang R K.2011. Theory of hydrocarbon accumulation in troughs within continental faulted basins and its application: a case study in Jizhong Depression and Erlian Basin. Acta Petrolei Sinica, 32(1): 18-24] [58] 赵贤正,周立宏,蒲秀刚,肖敦清,姜文亚,韩文中,陈长伟,邹磊落,郭淑文. 2017. 断陷湖盆斜坡区油气富集理论与勘探实践: 以黄骅坳陷古近系为例. 中国石油勘探, 22(2): 13-23. [Zhao X Z,Zhou L H,Pu X G,Xiao D Q,Jiang W Y,Han W Z,Chen C W,Zou L L,Guo S W.2017. Hydrocarbon enrichment theory and exploration practice in the slope of fault lake basin: a case study of Paleogene in Huanghua depression. China Petroleum Exploration, 22(2): 13-23] [59] 赵贤正,周立宏,蒲秀刚,金凤鸣,姜文亚,肖敦清,韩文中,时战楠. 2018. 断陷盆地洼槽聚油理论的发展与勘探实践: 以渤海湾盆地沧东凹陷古近系孔店组为例. 石油勘探与开发, 45(6): 1092-1102. [Zhao X Z,Zhou L H,Pu X G,Jin F M,Jiang W Y,Xiao D Q,Han W Z,Shi Z N.2018. Development and exploration practice of the concept of hydrocarbon accumulation in rifted-basin troughs: a case study of Paleogene Kongdian Formation in Cangdong Sag,Bohai Bay Basin. Petroleum Exploration and Development, 45(6): 1092-1102] [60] Cao Y,Wang Y,Gluyas J G.2018. Depositional model for lacustrine nearshore subaqueous fans in a rift basin: the Eocene Shahejie Formation,Dongying Sag,Bohai Bay Basin,China. Sedimentology, 65(6): 2117-2148. [61] Henstra G A,Gawthorpe R L,Helland-Hansen W.2017. Depositional systems in multiphase rifts: seismic case study from the Lofoten margin,Norway. Basin Research, 29(4): 447-469. [62] Leverson A I.2006. Geology of Petroleum(2nd ed). CBS Publisher & Distributors. [63] Powers M C.1967. Fluid-release mechanisms in compacting marine mudrocks and their importance in oil exploration. AAPG Bulletin, 51(7): 1240-1254. [64] Selley R C.1978. Porosity gradients in North Sea oil-bearing sandstones. Journal of the Geological Society, 135(1): 119-132. [65] Zhao X Z,Jin F M, Wang Q. 2011. Hydrocarbon accumulation principles in troughs within faulted depressions and their significance in exploration. Petroleum Science, 8(1): 1-10. |