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现代地质 ›› 2018, Vol. 32 ›› Issue (06): 1161-1172.DOI: 10.19657/j.geoscience.1000-8527.2018.06.05

• 石油地质学 • 上一篇    下一篇

乌石凹陷南陡坡带流二段源-汇系统及物性差异性分析

何卫军(), 徐万兴, 刘娟, 刘芳, 焦祥燕   

  1. 中海石油(中国)有限公司 湛江分公司,广东 湛江 524057
  • 收稿日期:2018-01-10 修回日期:2018-06-17 出版日期:2018-12-10 发布日期:2018-12-20
  • 作者简介:何卫军,男,工程师,1979年出生,矿物学、岩石学、矿床学专业,主要从事油气勘探与沉积层序研究工作。Email:hewj@cnooc.com.cn
  • 基金资助:
    国家科技重大专项“南海西部海域低渗油藏勘探开发关键技术”(2016ZX05024-006)

Source-to-sink System and Reservoir Property Variation of the Second Member of Liushagang Formation in the Southern Steep Slope, Wushi Sag

HE Weijun(), XU Wanxing, LIU Juan, LIU Fang, JIAO Xiangyan   

  1. Zhanjiang Branch Company of CNOOC Ltd., Zhanjiang, Guangdong 524057, China
  • Received:2018-01-10 Revised:2018-06-17 Online:2018-12-10 Published:2018-12-20

摘要:

乌石凹陷南陡坡带流二段是近年北部湾盆地油气勘探的重要层系。为明确砂体及有利储层的分布规律,以钻井、地震、分析化验等资料为基础,逐一对流二段沉积体系源-汇系统各要素进行精细解剖,并结合断裂体系的分析,探讨了断裂-物源耦合控砂模式及有利储层分布主控因素。研究表明:区域性湖退促使了流二段中亚段扇三角洲体系的形成;F7断裂展布及活动特征控制了砂体的分布,总结建立了3种类型的断裂控砂模式,断坡带和断裂转换带控制了大-中型扇三角洲体系的发育;母岩类型的差异是储层溶蚀强弱不同的主要原因,中-西区母岩以磁铁矿型花岗岩为主,沉积物中含较多的钾长石等不稳定矿物,溶蚀孔发育,后期的溶蚀作用极大地改善了储层物性。综合以上分析,认为中-西区因大-中型扇三角洲体系发育且储层物性较好,是有利的勘探区域。

关键词: 乌石凹陷, 流二段, 源-汇系统, 沉积体系, 物性差异, 溶蚀作用

Abstract:

In recent years, the southern steep slope of the Wushi Sag has become an important oil-gas exploration target in the Beibuwan Basin, in which the second member of the Liushagang Formation is considered as the main target layer. To identify the distribution pattern of sand and favorable reservoirs, we conducted detailed source-to-sink and fracture system analyses, discussed the coupled fracture-provenance deposition controls and the main factors of favorable reservoir distribution, based on comprehensive analyses of drilling and seismic data. The results reveal an obvious lake retreat in the middle bed of the Liushagang Formation second member, which developed a fan delta system. The slope-break and F7 fault zone likely controlled the development of medium-large fan delta systems in this area, and we have summarized three types of structurally deposition control patterns. Parent lithologic differences are likely the main cause for the reservoir dissolution. The main parent rock type in the central and western districts is magnetite granite. Its sediments contain less stable minerals such as K-feldspar, which formed dissolved pores and improved the physical properties of the reservoir. The above analysis shows that the central and western districts are favorable exploration areas due to the large fan delta development and good reservoir physical properties.

Key words: Wushi Sag, the second member of Liushagang Formation, source-to-sink system, sedimentary system, reservoir property variation, dissolution

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