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琼东南盆地中央峡谷西段莺歌海组沉积演化及储层预测 被引量:11

Evolution and Reservoir Prediction of Yinggehai Formation in western Central Canyon in Qiongdongnan Basin
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摘要 发育于琼东南盆地乐东凹陷、陵水凹陷、松南低凸起的中央峡谷西段,早期充填了厚达700m的深海重力流沉积。基于两口钻井和两块三维地震资料,对研究区内中央峡谷早期的沉积演化进行了研究。通过分析地震剖面波组特征和对比井震资料,将峡谷充填划分为5个沉积期次;在井震对比的基础上,结合反射特征、地震切片及属性分析,识别出四种主要的沉积类型:水道复合体、水道一天然堤、浊积席状砂、块体流。沉积期次l主要为水道复合体,沉积期次2和3主要为水道一天然堤,沉积期次4主要为块体流和水道一天然堤,沉积期次5主要为块体流和浊积席状砂。峡谷DSI-DS3主要受轴向物源控制,以浊流沉积为主,富砂;DS4~DS5逐渐受北部陆坡物源控制,以块体流沉积为主,富泥。浊流沉积是峡谷内优良的储集体,普遍发育于峡谷充填下部,与上部块体流沉积可以形成良好的储盖组合,具有较好的油气勘探潜力。 The west segment of Central Canyon in Qiongdongnan Basin, which wanders from Ledong, Lingshui de- pression to Songnan low uplift, received over 700 m of gravity flow deposits in the early stage. Mainly based on 2 wells and 2 blocks of 3D seismic data, this paper studied the sedimentary architectures and evolution stages of Yinggehai Formation in the canyon. The canyon infill were divided into 5 depositional sets (DS) vertically according to seismic wave group and seismic-well tie; 4 significant depositional types were recognized by analyzing reflection features, seis- mic slice and attribute analysis: channel complex (CC), channel-levee ( C-L), sheet-like turbidity sand (STS) and mass transport deposits (MTDs). DS1 was primarily CC, DS2 and DS3 were mainly C-L, DS4 consisted of both MTDs and C-L while DS5 was mostly MTDs and STS. During early stages (DS1- DS3) , the canyon was dominated by axial sand-rich turbidity currents, while in later stages (DS4-DS5 ), the canyon was gradually controlled by mass transport deposits from northern slope and rich in mud. Turbidite deposits are ideal reservoir which lays in the lower parts of the canyon, together with the upper MTDs can form perfect reservoir-seal assemblage, thus shows great potential for hy- drocarbon exploration.
出处 《沉积学报》 CAS CSCD 北大核心 2015年第4期809-816,共8页 Acta Sedimentologica Sinica
基金 国家自然科学基金重点项目(批准号:91028009) 教育部高等学校博士学科点博导类科研基金项目(编号:20100-145110002) 中国博士后科学基金(编号:2013M542088) 构造与油气资源教育部重点实验室开放基金项目(编号:TPR-2012-07)联合资助
关键词 中央峡谷 莺歌海组 沉积演化 沉积期次 琼东南盆地 Central Canyon Yinggehai Formation sedimentary evolution depositional sets Qiongdongnan Basin
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  • 1Shepard F P. Submarine canyons: multiple causes and long-time persistence[J]. AAPG Bulletin, 1981, 65(6): 1062-1077. 被引量:1
  • 2Normark W R, Carlson P R. Giant submarine canyons: Is size any clue to their importance in the rock record?[C]// Chan M A, Archer A W. Extreme Depositional Environments: Mega End Members in Geological Time. Boulder, Colorado: Geological Society of America, 2003, 370: 175-190. 被引量:1
  • 3Harris P T, Whiteway T. Global distribution of large submarine canyons: Geomorphic differences between active and passive continental margins[J]. Marine Geology, 2011, 285(1/4): 69-86. 被引量:1
  • 4Babonneau N, Savoye B, Cremer M, et al. Morphology and architecture of the present canyon and channel system of the Zaire deep-sea fan[J]. Marine and Petroleum Geology, 2002, 19(4): 445-467. 被引量:1
  • 5Mayal M, Lonergan L, Bowman A, et al. The response of turbidite slope channels to growth-induced seabed topography[J]. AAPG Bulletin, 2010, 94(7): 1011-1030. 被引量:1
  • 6苏明,解习农,王振峰,姜涛,张成,何云龙.南海北部琼东南盆地中央峡谷体系沉积演化[J].石油学报,2013,34(3):467-478. 被引量:63
  • 7He Y L, Xie X N, Kneller B C, et al. Architecture and controlling factors of canyon fills on the shelf margin in the Qiongdongnan Basin, northern South China Sea[J]. Marine and Petroleum Geology, 2013, 41: 264-276. 被引量:1
  • 8袁圣强..南海北部陆坡区深水水道沉积体系研究[D].中国科学院海洋研究所,2009:
  • 9苏明,李俊良,姜涛,田姗姗,张成,解习农.琼东南盆地中央峡谷的形态及成因[J].海洋地质与第四纪地质,2009,29(4):85-93. 被引量:80
  • 10王振峰.深水重要油气储层——琼东南盆地中央峡谷体系[J].沉积学报,2012,30(4):646-653. 被引量:84

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