Geologic Exploration

Sedimentary Model and Its Architectural Characteristics of Delta under the Control of Fault-Rupture-Sag Coupling in Wushi Sag

  • Wang Yu ,
  • Zhang Hui ,
  • Yang Chaoqiang ,
  • Qi Zhi ,
  • Ma Huashuai ,
  • Wang Meng ,
  • Chen Jian
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  • CNOOC Hainan Branch, Haikou, Hainan 570300, China

Received date: 2021-03-23

  Revised date: 2022-01-05

  Online published: 2023-01-10

Abstract

In view of the problems of complex fault structure and unclear understanding of flagstone distribution and connectivity of the reservoirs in Member 2, Liushagang Formation, Wushi Oilfield Cluster, the deposition patterns and architecture characteristics of delta in Wushi Sag were more understood on basis of comprehensive interpretation and application of core, well logging and seismic data. It was found in the study that the sedimentary development in the study area was affected by multiple factors such as base level change, fault development, and paleo-geomorphology, and mainly develops the delta sediment was mainly formed by fault-rupture-sag coupling under the control of base level; constrained by the sedimentary model, the characteristics of typical sedimentary microfacies were identified, and it was determined that the base level has experienced the lacustrine-delta front-delta shrinking sediment in the process of first falling and then rising; it was clarified that the delta sand body in Member 2 of Liushagang Formation was characterized by the lateral superposition of multiple underwater distributary channels, with such superposition styles as lateral, docking and isolated superposition; finally an architecture model suitable for the study area was established, and the influence of various environmental factors on sandbody distribution was determined. The results can effectively guide the analysis of sandbody connectivity. The results of the study lay a foundation for the efficient development of Wushi Oilfield Cluster, and can be used as a reference for the study of sedimentary models and internal structures of similar complex block-faulted oil and gas fields.

Cite this article

Wang Yu , Zhang Hui , Yang Chaoqiang , Qi Zhi , Ma Huashuai , Wang Meng , Chen Jian . Sedimentary Model and Its Architectural Characteristics of Delta under the Control of Fault-Rupture-Sag Coupling in Wushi Sag[J]. Special Oil & Gas Reservoirs, 2022 , 29(2) : 34 -41 . DOI: 10.3969/j.issn.1006-6535.2022.02.005

References

[1] 柳永杰,赵志刚,李建红,等.乌石凹陷成藏组合划分及主控因素分析[J].中国海上油气,2008,20(2):82-86.
LIU Yongjie,ZHAO Zhigang,LI Jianhong,et al.Hydrocarbon play division and major control analysis in Wushi Sag,Beibuwan Basin[J].China Offshore Oil and Gas,2008,20(2):82-86.
[2] 胡林,杨希冰,徐雪丰,等.南海北部湾盆地乌石凹陷成藏主控因素与成藏模式[J].海洋地质与第四纪地质,2016,36(2):121-127.
HU Lin,YANG Xibing,XU Xuefeng,et al.Main controlling factors and accumulation models of hydrocarbon in Wushi Sag,Beibu Gulf Basin,South China Sea[J].Marine Geology & Quaternary Geology,2016,36(2):121-127.
[3] LIN Changsong.Seguence architecture depositional systems and controls on development of lacustrine basin fills in part of the Erlian Basin,northesat China[J].Bulletion AAPG,2001,85(11):2017-2043.
[4] 冯有良.断陷湖盆沟谷及构造坡折带对砂体的控制作用[J].石油学报, 2006,27(1):13-16.
FENG Youliang.Control of valley and tectonic slope-break zone on sand bodies in rift-subsidence basin[J].Acta Petrolei Sinica,2006,27(1):13-16.
[5] 王英民, 刘豪, 李立诚,等.准噶尔大型坳陷湖盆坡折带的类型和分布特征[J].地球科学——中国地质大学学报,2002,27(6):683-688.
WANG Yingmin,LIU Hao,LI Licheng,et al.Types and distribution characteristics of slope breaks of large-type down-warped lake basins[J].Earth Science(Journal of China University of Geosciences),2002,27(6):683-688.
[6] 鲍志东,赵立新,王勇,等.断陷湖盆储集砂体发育的主控因素:以辽河西部凹陷古近系为例[J].现代地质,2009,23(4): 676-682.
BAO Zhidong,ZHAO Lixin,WANG Yong,et al.The main control factors of sandbody reservoir development in rift-subsidence lake basin:an example from the Paleogene West Sag of Liaohe Basin[J].Geoscience,2009,23(4):676-682.
[7] 董桂玉,何幼斌.陆相断陷盆地基准面调控下的古地貌要素耦合控砂机制[J].石油勘探与开发,2016,43(4):529-539.
DONG Guiyu,HE Youbin.Mechanism of sand body prediction in a continental rift basin by coupling paleogeomorphic elements under the control of base level[J].Petroleum Exploration and Development,2016,43(4):529-539.
[8] 胡德胜,邓勇,张建新,等.乌石凹陷东区古近系断裂系统与油气成藏[J].西南石油大学学报(自然科学版),2016,38(4):27-36.
HU Desheng,DENG Yong,ZHANG Jianxin,et al.Palaeogene fault system and hydrocarbon accumulation in east Wushi Sag[J].Journal of Southwest Petroleum University(Science & Technology Edition),2016,38(4):27-36.
[9] 袁晓蔷,姚光庆,姜平,等.北部湾盆地乌石凹陷东部流沙港组物源分析[J].地球科学,2017,42(11):2040-2054.
YUAN Xiaoqiang,YAO Guangqing,JIANG Ping,et al.Provenance analysis for Liushagang Formation of Wushi Depression,Beibuwan Basin,the South China Sea[J].Earth Science,2017,42(11):2040-2054.
[10] 孙伟,樊太亮,赵志刚,等.乌石凹陷古近系层序地层及沉积体系[J].天然气工业 ,2008,28(4):26-29.
SUN Wei,FAN Tailiang,ZHAO Zhigang, et al.Paleogene sequence stratigraphy and sedimentary system in Wushi Sag[J].Natural Gas Industry,2008,28(4):26-29.
[11] 钟泽红,刘娟,徐万兴,等.北部湾盆地乌石凹陷流二段孢粉相与三角洲-湖底扇沉积体系[J].科学技术与工程,2017,17(3):7-15.
ZHONG Zehong,LIU Juan,XU Wanxing,et al.Palynofacies and sedimentary systems of the delta and the sublacustrine fan in the 2nd Member of Liushagang Formation of Wushi Sag,Beibuwan Basin[J].Science Technology and Engineering,2017,17(3):7-15.
[12] 胡朝伟, 胡广, 张玺华,等 .川西北地区茅口组上部黑色岩系的层位、沉积环境及生烃潜力评价[J].石油实验地质,2020,42(2):202-214.
HU Chaowei, HU Guang, ZHANG Xihua,et al .Sedimentary environment, hydrocarbon potential and development of black rocks in upper Maokou Formation, northwestern Sichuan[J].Petroleum Geology & Experiment,2020,42(2):202-214.
[13] 钱一雄,储呈林,李曰俊,等.新疆若羌县红柳沟新元古界平洼沟组原生白云岩特征、沉积环境及年代厘定[J].石油与天然气地质,2021,42(3):570-586.
QIAN Yixiong,CHU Chenglin,LI Yuejun,et al.Characteristics,enviornment and geological dating of primary dolomite in the Neoproterozoic Pingwagou Formation at Hongliugou,Ruoqiang County,Xinjiang[J].Oil & Gas Geology,2021,42(3):570-586.
[14] 易定鑫,田景春,井翠,等. 五峰组—龙马溪组笔石带划分与沉积环境的意义:以重庆武隆接龙剖面为例[J]. 东北石油大学学报,2019,43(6):33-43.
YI Dingxin,TIAN Jingchun,JING Cui,et al. Graptolite biostratigraphy and sedimentary environment significance:a case study from the Wufeng Formation-Longmaxi Formation of Jielong Sectionin in Wulong,southeastern Chongqing[J].Journal of Northeast Petroleum University,2019,43(6):33-43.
[15] 杨希冰,谌志远,满勇,等.乌石东区流沙港组地层断裂控砂机制[J].断块油气田,2017, 24(3):342-345.
YANG Xibing,CHEN Zhiyuan,MAN Yong,et al.Sand distribution mechanism of Liushagang Formation in eastern Wushi Area[J].Fault-Block Oil & Gas Field,2017,24(3):342-345.
[16] 徐雪丰, 胡林, 满勇,等.乌石凹陷东区走向斜坡控砂模式与勘探实践[J].西南石油大学学报(自然科学版),2017,39(3):77-84.
XU Xuefeng,HU Lin,MAN Yong,et al.Sand control model and exploration practice for east Wushi Sag Strike Slope[J].Journal of Southwest Petroleum University(Science & Technology Edition),2017,39(3):77-84.
[17] 王玉,漆智,杨朝强,等.浅海重力流储层沉积模式新认识[J].地质科技情报,2019,38(4) :96-102.
WANG Yu,QI Zhi,YANG Chaoqiang,et al.New understanding of sedimentary model of gravity flow reservoir in shallow sea[J].Bulletin of Geological Science and Technology,2019,38(4):96-102.
[18] 王巍, 范廷恩, 胡光义,等. A油田断裂调节构造-坡折带特征及其控砂模式[J].西南石油大学学报(自然科学版),2015,37(6):39-46.
WANG Wei,FAN Tingen,HU Guangyi,et al.Characteristics of fault accommodation structure-slope break zone and the sand control pattern in A Oilfield[J].Journal of Southwest Petroleum University(Science & Technology Edition),2015,37(6):39-46.
[19] 崔龙涛, 张倩萍. 坡折带-物源耦合控砂模式在湖相盆地储层预测中的探讨——以松辽盆地西斜坡地区白垩系储层为例[J].石油地质与工程, 2018,32(4):10-15.
CUI Longtao, ZHANG Qianping.Discussion on reservoir prediction controlled by slope break belt-source coupling sand bodies in lacustrine basin: taking cretceous reservoir in west Slope area of Songliao Basin as an example[J].Petroleum Geology & Engineering,2018,32(4):10-15.
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