[1] 操应长,徐琦松,王健. 2018. 沉积盆地“源-汇”系统研究进展. 地学前缘, 25(4): 116-131. [Cao Y C,Xu Q S,Wang J.2018. Progress in “Source-to-Sink”system research. Earth Science Frontiers, 25(4): 116-131] [2] 郭涛,李慧勇,石文龙,王思权,涂翔. 2015. 渤海海域埕北低凸起及周围地区构造沉积特征与有利勘探目标. 油气地质与采收率, 22(2): 28-32. [Guo T,Li H Y,Shi W L,Wang S Q,Tu X.2015. Tectonic sedimentary characteristics and favorable exploration targets in the Chengbei low uplift and neighboring regions in Bohai Sea area. Petroleum Geology & Recovery Efficiency, 22(2): 28-32] [3] 杜晓峰,加东辉,王启明,宋章强. 2017a. 盆内局部物源体系及其油气勘探意义: 以渤海海域古近系为例. 中国海上油气, 29(4): 19-27. [Du X F,Jia D H,Wang Q M,Song Z Q.2017a. Local provenance system and its oil and gas exploration siginificance: A case study of the Paleogene in Bohai Sea Area. China Offshore Oil & Gas, 29(4): 19-27] [4] 杜晓峰,庞小军,王清斌,宋章强,马正武. 2017b. 石臼坨凸起东段围区沙一二段古物源恢复及其对储层的控制. 地球科学, 42(11): 1871-1882. [Du X F,Pang X J,Wang Q B,Song Z Q,Ma Z W.2017b. Restoration of the paleo-provenance of the Es1-2 in the eastern of Shijiutuo Uplift and its control on reservoir. Earth Science, 42(11): 1871-1882] [5] 李顺利,朱筱敏,李慧勇,刘强虎,石文龙. 2017. 源-汇系统要素定量表征及耦合模式: 以沙垒田凸起与沙南凹陷沙河街组为例. 中国海上油气, 29(4): 39-50. [Li S L,Zhu X M,Li H Y,Liu Q H,Shi W L.2017. Quantitative characterization of elements and coupling mode in source-to-sink System: A case study of the Shahejie Formation between the Shaleitian uplift and Shanan sag,Bohai sea. China Offshore Oil & Gas, 29(4): 39-50] [6] 林畅松,郑和荣,任建业,刘景彦,邱以刚. 2003. 渤海湾盆地东营、沾化凹陷早第三纪同沉积断裂作用对沉积充填的控制. 中国科学: 地球科学, 33(11): 1025-1036. [Lin C S,Zheng H R,Ren J Y,Liu J Y,Qiu Y G.2003. Early Tertiary syndepositinal faults control on deposition infilling in Dongying and Zhanhua Depressions. Science in China(Series D): Earth Sciences, 33(11): 1025-1036] [7] 林畅松,夏庆龙,施和生,周心怀. 2015. 地貌演化、源-汇过程与盆地分析. 地学前缘, 22(1): 9-20. [Lin C S,Xia Q L,Shi H S,Zhou X H.2015. Geomorphological evolution,source to sink system and basin analysis. Earth Science Frontiers, 22(1): 9-20] [8] 刘建平,鲜本忠,王璐,路智勇,李宇志,刘赛君,蒋健. 2016. 渤海湾盆地东营凹陷始新世三角洲供给型重力流地震沉积学研究. 古地理学报, 18(6): 961-975. [Liu J P,Xian B Z,Wang L,Lu Z Y,Li Y Z,Liu S J,Jiang J.2016. Seismic sedimentology of delta-fed turbidites of the Eocene in Dongying sag,Bohai Bay Basin. Journal of Palaeogeography(Chinese Edition), 18(6): 961-975] [9] 刘强虎,朱筱敏,李顺利,徐长贵,杜晓峰,李慧勇,石文龙. 2017. 沙垒田凸起西部断裂陡坡型源-汇系统. 地球科学—中国地质大学学报, 11(11): 1883-1896. [Liu Q H,Zhu X M,Li S L,Xu C G,Du X F,Li H Y,Shi W L.2017. Source-to-sink System of the sleep slope fault in the Western Shaleitian Uplift. Earth Science-Journal of China University of Geosciences, 11(11): 1883-1896] [10] 施和生. 2015. 油气勘探“源-汇—聚”评价体系及其应用: 以珠江口盆地珠一坳陷为例. 中国海上油气, 27(5): 1-12. [Shi H S.2015. “Source-migration-accumulation”evaluation system and its application in hydrocarbon exploration: A case study of Zhu I depression in Pearl river Mouth basin. China Offshore Oil & Gas, 27(5): 1-12] [11] 王家豪,王华,肖敦清,韦阿娟,廖远涛. 2008. 伸展构造体系中传递带的控砂作用: 储层预测的新思路. 石油与天然气地质, 29(1): 19-25. [Wang J H,Wang H,Xiao D Q,Wei A J,Liao Y T.2008. Control of transfer zone on sandbodies in the extensional structure system: A new approach to reservoir prediction. Oil & Gas Geology, 29(1): 19-25] [12] 王启明,黄晓波,宛良伟,王改伟,徐伟. 2017. 石臼坨凸起东倾末端沙一、二段汇聚体系特征及砂体展布规律. 中国海上油气, 29(4): 60-67. [Wang Q M,Huang X B,Wang L W,Wang G W,Xu W.2017. Characteristics of accumulation system and distribution regularity of sand body in Es1-2 in eastern pitching end of Shijiutuo uplift,Bohaisea. China Offshore Oil & Gas, 29(4): 60-67] [13] 王星星,朱筱敏,宋爽,吴陈冰洁,贺敬聪,曹刚. 2016. 渤海湾盆地车西洼陷陡坡带古近系沙河街组沙三下段“源-汇”系统. 古地理学报, 18(1): 65-79. [Wang X X,Zhu X M,Song S,Wu C B J,He J C,Cao G.2016. “Source-to-sink”system of the Lower Member 3 of Paleogene Shahejie Formation in steep slope zone of Western Chezhen sub-sag,Bohai Bay Basin. Journal of Palaeogeography(Chinese Edition), 18(1): 65-79] [14] 吴冬,朱筱敏,刘常妮,李雨彤. 2015. “源-汇”体系主导下的断陷湖盆陡坡带扇三角洲发育模式探讨: 以苏丹Muglad盆地Fula凹陷为例. 高校地质学报, 21(4): 653-663. [Wu D,Zhu X M,Liu C N,Li Y D.2015. Discussion on depositional models of fan deltas in steep slope belt of the rift basin under the guidance of source-to-sink system theory: A case study from the Fula Sub-basin,Muglad Basin,Sudan. Geological Journal of China Universities, 21(4): 653-663] [15] 徐长贵. 2013. 陆相断陷盆地源-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 & Gas, 25(4): 1-11] [16] 徐长贵,赖维成. 2005. 渤海古近系中深层储层预测技术及其应用. 中国海上油气, 17(4): 231-236. [Xu C G,Lai W C.2005. Predication technologies of Paleogene mid-deep reservoir and their application in Bohai Sea. China Offshore Oil & Gas, 17(4): 231-236] [17] 徐长贵,杜晓峰. 2017. 陆相断陷盆地源-汇理论工业化应用初探: 以渤海海域为例. 中国海上油气, 29(4): 9-18. [Xu C. G,Du X F.2017. Industrial application of source-to-sink theory in continental rift basin: A case study of Bohai sea area. Oil and Gas Geology, 29(4): 9-18] [18] 徐长贵,杜晓峰,徐伟,赵梦. 2017a. 沉积盆地“源-汇”系统研究新进展. 石油与天然气地质, 38(1): 1-11. [Xu C G,Du X F,Xu W,Zhao M.2017a. New advances of the “Source-to-Sink”system research in sedimentary basin. Oil and Gas Geology, 38(1): 1-11] [19] 徐长贵,加东辉,宛良伟. 2017b. 渤海走滑断裂对古近系源-汇体系的控制作用. 地球科学—中国地质大学学报, 42(11): 1871-1882. [Xu C G,Jia D H,Wan L W.2017b. Control of the strike-slip fault to the source-to-sink system of the Paleogene in Bohai Sea Area. Earth Science-Journal of China University of Geosciences, 42(11): 1871-1882] [20] 张在振,张卫平,李照延,陆友明,施明华,王艳珍. 2014. 渤海湾盆地埕北低凸起潜山断裂特征及其控藏机制. 海相油气地质, 19(2): 8-14. [Zhang Z Z,Zhang W P,Li Z Y,Lu Y M,Shi M H,Wang Y Z.2014. Characteristics and control of fault on hydrocarbon accumulation in buried hill reservoir in Chengbei arch,Bohaiwan basin. Marine Origin Petroleum Geology, 19(2): 8-14] [21] 祝彦贺,朱伟林,徐强,吴景富. 2011. 珠江口盆地13.8 Ma陆架边缘三角洲与陆坡深水扇的“源-汇”关系. 中南大学学报(自然科学版), 42(12): 3827-3834. [Zhu Y H,Zhu W L,Xu Q,Wu J F.2011. Sedimentary response to shelf-edge delta and slope deep-water fan in 13.8 Ma of Miocene epoch in Pearl River Mouth Basin. Journal of Central South University, 42(12): 3827-3834] [22] 朱红涛,杨香华,周心怀,李建平,王德英,李敏. 2013. 基于地震资料的陆相湖盆物源通道特征分析: 以渤中凹陷西斜坡东营组为例. 地球科学, 38(1): 121-129. [Zhu H T,Yang X H,Zhou X H,Li J P,Wang D Y,Li M.2013. Sediment transport pathway characteristics of continental lacustrine basins based on 3-d seismic data: An example from Dongying Formation of Western Slope of Bozhong Sag. Earth Science, 38(1): 121-129] [23] Allen P A.2008. From landscapes into geological history. Nature, 451(17): 274-276. [24] Anthony E J,Julian M.1999. Source-to-sink sediment transfers,environmental engineering and hazard mitigation in the steep Var River catchment,French Riviera,southeastern France. Geomorphology, 31(1-4): 337-354. |