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作 者:付彦辉[1,2] 吕福亮 袁圣强[2,4] 马玉波[2,4] 吴时国[1,2]
机构地区:[1]中国石油大学(华东),山东东营257061 [2]中国科学院海洋研究所中国科学院海洋地质与环境重点实验室,山东青岛266071 [3]中石油杭州地质研究院,浙江杭州310023 [4]中国科学院研究生院,北京100049
出 处:《热带海洋学报》2009年第4期87-92,共6页Journal of Tropical Oceanography
基 金:国家重点基础发展计划项目(2007CB411703)";中国科技部863项目(2006AA09Z349)
摘 要:水道-天然堤体系作为油气储集圈闭日益引起沉积学家和勘探家的重视。地震相特征是识别深水水道的有效途径,本文基于高分辨率2D、3D地震资料的地震相分析,在琼东南盆地陆坡区深水盆地中识别出早中新世、上新世和第四纪多期深水水道体系。早中新世深水水道在地震剖面上具有强、弱振幅交替反射和相互叠置的地震反射特征,局部具有杂乱反射特点;上新世水道整体表现为强振幅,横向上连续或者半连续,纵向上为强振幅的叠加;第四纪水道在地震剖面上具有典型下切反射特点,该水道整体振幅相对较弱,但其水道轴部充填具有典型的强反射特征,这与世界典型地区的水道轴部粗粒充填强振反射一致。这几期深水水道都发育于低水位时期,为上部物源搬运引起的浊流事件而形成。Characteristics of seismic facies is important for identifing submarine channels. Using 2D and 3D high- resolution seismic data, the authors are able to identify three submarine channels that developed in Pliocene, Miocene and Quaternary on the slope of the Qiongdongnan Basin. The channel that formed in Miocene mainly has such seismic characters as strong amplitude alternating with weak amplitude, reciprocal overlying, and partly developing clutter reflection. The channel that formed in Pliocene mainly has such seismic characters as high amplitude reflections, continuous or semi-continuous transversely, overlying high amplitude reflections vertically. The channel in Quaternary is characterized by classic lower cutting reflections in seismic profile, with low amplitude reflections on the whole but classic High Amplitude Reflections (HARs) at channel axis. These submarine channels should be related with the turbidity current occurring at the Lowstand System Tract (LST) .
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