Liu Yurui. Sediment sources and slope belt controlling fan systems in the Dainan Formation in Gaoyou Sag, North Jiangsu Basin[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2016, 38(1): 23-31. doi: 10.11781/sysydz201601023
Citation: Liu Yurui. Sediment sources and slope belt controlling fan systems in the Dainan Formation in Gaoyou Sag, North Jiangsu Basin[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2016, 38(1): 23-31. doi: 10.11781/sysydz201601023

Sediment sources and slope belt controlling fan systems in the Dainan Formation in Gaoyou Sag, North Jiangsu Basin

doi: 10.11781/sysydz201601023
  • Received Date: 2015-05-15
  • Rev Recd Date: 2015-12-10
  • Publish Date: 2016-01-28
  • The Gaoyou Sag is a typical half graben of the Dainan Formation which is derived from the disintegration of an unified fault depression of the Taizhou and Funing formations in the North Jiangsu and South Yellow Sea basins. There are 3 genetic types of slope belt including fault slope, erosion slope and bending slope and 2 plane patterns comprising flange and concave edge slope belts which can be classified to 10 types. Sediment sources of the Dainan Formation consist of the rocks in the Taizhou and Funing formations and the basement of the North Jiangsu Basin. The former source contains a large set of mudstones and deeply influences the depositional system of the Dainan Formation. After careful consideration of the rock facies concept, a new type of facies named mud debris flow fan was discovered. Underwater alluvial fan, mud debris flow fan, debris flow fan, fan delta, delta and braided delta are the main facies types in the Dainan Formation. The type, distribution and evolution of sedimentary system in steep slope, gentle slope and depression area of LST, TST and HST in the Dainan Formation are addressed in detail. The relationship among sediment sources, slope belts, fan system and sand body and the main controlling factors of sand distribution are determined. Sand-rich fan systems usually develop along the flange edge slope belt, and mud-rich fans lie along the concave edge.

     

  • [1]
    蔡希源,李思田.陆相盆地高精度层序地层学(基础理论篇)[M].北京:地质出版社,2003. Cai Xiyuan,Li Sitian.High resolution sequence stratigraphy of continental basins[M].Beijing:Geological Publishing House,2003.
    [2]
    林畅松,潘元林,肖建新,等."构造坡折带":断陷盆地层序分析和油气预测的重要概念[J].地球科学:中国地质大学学报,2000,25(3):260-266. Lin Changsong,Pan Yuanlin,Xiao Jianxin,et al.Structural slope-break zone:key concept for stratigraphic sequence analysis and petroleum forecasting in fault subsidence basins[J].Earth Science:Journal of China University of Geosciences,2000,25(3):260-266.
    [3]
    王英民,金武弟,刘书会,等.断陷湖盆多级坡折带的成因类型、展布及其勘探意义[J].石油与天然气地质,2003,24(3):199-203. Wang Yingmin,Jin Wudi,Liu Shuhui,et al.Genetic types,distribution and exploration significance of multistage slope breaks in rift lacustrine basin[J].Oil & Gas Geology,2003,24(3):199-203.
    [4]
    周立宏,蒲秀刚,周建生,等.黄骅坳陷岐口凹陷古近系坡折体系聚砂控藏机制分析[J].石油实验地质,2011,33(4):372-377. Zhou Lihong,Pu Xiugang,Zhou Jiansheng,et al.Sand-gathering and reservoir-controlling mechanisms of Paleogene slope-break system in Qikou Sag,Huanghua Depression,Bohai Bay Basin[J].Petroleum Geology & Experiment,2011,33(4):372-377.
    [5]
    张善文.济阳坳陷第三系隐蔽油气藏勘探理论与实践[J].石油与天然气地质,2006,27(6):731-740. Zhang Shanwen.Exploration theory and practice of the Tertiary subtle reservoirs in Jiyang depression[J].Oil & Gas Geology,2006,27(6):731-740.
    [6]
    朱筱敏,康安,王贵文.陆相坳陷型和断陷型湖盆层序地层样式探讨[J].沉积学报,2003,21(2):284-287. Zhu Xiaomin,Kang An,Wang Guiwen.Sequence stratigraphic models of depression and faulted-down lake basins[J].Acta Sedimentologica Sinica,2003,21(2):284-287.
    [7]
    顾家裕,郭彬程,张兴阳.中国陆相盆地层序地层格架及模式[J].石油勘探与开发,2005,32(5):11-15. Gu Jiayu,Guo Bincheng,Zhang Xingyang.Sequence stratigraphic framework and model of the continental basins in China[J].Petroleum Exploration and Development,2005,32(5):11-15.
    [8]
    霍志鹏,庞雄奇,范凯,等.济阳坳陷典型岩性油气藏相-势耦合控藏作用解剖及应用[J].石油实验地质,2014,36(5):574-582. Huo Zhipeng,Pang Xiongqi,Fan Kai,et al.Anatomy and application of facies-potential coupling on hydrocarbon accumulation in typical lithologic reserviors in Jiyang depression[J].Petroleum Geology & Experiment,2014,36(5):574-582.
    [9]
    王永利,陈树光.渤中坳陷沙北地区构造-沉积分析[J].油气地质与采收率,2015,22(4):26-32. Wang Yongli,Chen Shuguang.Tectonic-sedimentary analysis of Shabei area in Bozhong depression[J].Petroleum Geology and Recovery Efficiency,2015,22(4):26-32.
    [10]
    王力,胡斌,廖文婷,等.高邮凹陷断阶带古新统断裂特征与形成机制[J].特种油气藏,2014,21(6):28-32. Wang Li,Hu Bin,Liao Wenting,et al.Features and forming mechanisms of Paleocene faults in the southern fault terrace zone of Gaoyou Sag[J].Special Oil & Gas Reservoirs,2014,21(6):28-32.
    [11]
    吴崇筠,薛叔浩.中国含油气盆地沉积学[M].北京:石油工业出版社,1992. Wu Chongyun,Xue Shuhao.The sedimentology of petroliferous basins in China[M].Beijing:Petroleum Industry Press,1992.
    [12]
    张喜林,朱筱敏,钟大康,等.苏北盆地高邮凹陷古近系戴南组沉积相及其对隐蔽油气藏的控制[J].古地理学报,2005,7(2):207-218. Zhang Xilin,Zhu Xiaomin,Zhou Dakang,et al.Sedimentary fa-cies and its controlling on subtle oil and gas reservoirs of the Dainan Formation of Paleogene in Gaoyou Sag,Subei Basin[J].Journal of Palaeogeography,2005,7(2):207-218.
    [13]
    伊伟,王伟锋,辛也.高邮凹陷深凹带南部戴南组沉积演化研究[J].复杂油气藏,2010,3(2):13-16. Yi Wei,Wang Weifeng,Xin Ye.Study on the sedimentary evolution of Dainan Formation in south of the deep sag area in Gaoyou Sag[J].Complex Hydrocarbon Reservoirs,2010,3(2):13-16.
    [14]
    高丽坤,林春明,姚玉来,等.苏北盆地高邮凹陷古近系戴南组沉积相及沉积演化[J].沉积学报,2010,28(4):706-716. Gao Likun,Lin Chunming,Yao Yulai,et al.Sedimentary facies and evolution of Paleogene Dainan Formation in Gaoyou Sag,Subei Basin[J].Acta Sedimentologica Sinica,2010,28(4):706-716.
    [15]
    杨彦敏,奥立德,刘金华,等.高邮凹陷深凹带戴一段古水体特征[J].油气地质与采收率,2012,19(4):27-30. Yang Yanmin,Ao Lide,Liu Jinhua,et al.Study on characteristics of connate water in the first member of Dainan Formation,deep concave belt of Gaoyou Sag[J].Petroleum Geology and Recovery Efficiency,2012,19(4):27-30.
    [16]
    周健,林春明,张霞,等.江苏高邮凹陷古近系戴南组一段物源体系和沉积相[J].古地理学报,2011,13(2):161-174. Zhou Jian,Lin Chunming,Zhang Xia,et al.Provenance system and sedimentary facies of the Member 1 of Paleogene Dainan Formation in Gaoyou Sag,Jiangsu province[J].Journal of Palaeogeography,2011,13(2):161-174.
    [17]
    纪友亮,王勇,李清山,等.高邮凹陷古近系戴南组戴一段物源分析[J].同济大学学报:自然科学版,2012,40(9):1406-1413. Ji Youliang,Wang Yong,Li Qingshan, et al.Sediments provenance of Gaoyou depression during sedimentation of first member of Dainan Formation of Paleogene[J].Journal of Tongji University:Natural Science,2012,40(9):1406-1413.
    [18]
    董桂玉,邱旭明,刘玉瑞,等.陆相复杂断陷盆地隐蔽油气藏砂体预测:以苏北高邮凹陷为例[M].北京:石油工业出版社,2013. Dong Guiyu,Qiu Xuming,Liu Yurui,et al.Sand-exploring for the subtle reservoirs of continental and complex-rift basins,for Gaoyou Sag,Subei Basin[M].Beijing:Petroleum Industry Press,2013.
    [19]
    纪友亮,李清山,王勇,等.高邮凹陷古近系戴南组扇三角洲沉积体系及其沉积相模式[J].地球科学与环境学报,2012,34(1):9-19. Ji Youliang,Li Qingshan,Wang Yong,et al.Fan delta sedimentary system and facies models of Dainan Formation of Paleogene in Gaoyou Sag[J].Journal of Earth Sciences and Environment,2012,34(1):9-19.
    [20]
    刘金华,廖光明,奥立德,等.高邮凹陷真武油田转换式沉积演化模式[J].油气地质与采收率,2014,21(1):6-9. Liu Jinhua,Liao Guangming,Ao Lide,et al.Study on transformation style of sedimentary evolution model in Zhenwu oilfield,Gaoyou sag[J].Petroleum Geology and Recovery Efficiency,2014,21(1):6-9.
    [21]
    姜辉,于兴河,陈永峤,等.东营凹陷和高邮凹陷古近系沉积特征对比研究[J].资源与产业,2006,8(6):102-106. Jiang Hui,Yu Xinghe,Chen Yongqiao,et al.The comparative study on depositional characteristics of Dongying depression and Gaoyou depression in Palaeogene[J].Resources & Industries,2006,8(6):102-106.
    [22]
    刘玉瑞.苏北后生断陷阜四段高位域的发现及其意义[J].复杂油气藏,2011,4(2):9-13. Liu Yurui.Discovery and significance of E1f4 highstand systems tracks in Subei Epigenetic-faulted Basin[J].Complex Hydrocarbon Reservoirs,2011,4(2):9-13.
    [23]
    刘玉瑞.苏北后生断陷层序地层格架与沉积体系[J].复杂油气藏,2010,3(1):10-14. Liu Yurui.Sequence-stratigraphic framework and depositional system in Subei Epigenetic-faulted Basin[J].Complex Hydrocarbon Reservoirs,2010,3(1):10-14.
    [24]
    徐健.高邮凹陷北斜坡韦码地区阜宁组油气富集差异分析[J].石油实验地质,2015,37(2):164-171. Xu Jian.Petroleum accumulation diversity of Funing Formation in Weima area,northern slope belt of Gaoyou Sag[J].Petroleum Geology & Experiment,2015,37(2):164-171.
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