西非下刚果盆地刚果扇A区块中新统深水水道分类及演化

作    者:熊浩浩1,王振奇2,付 欢3,郑 勇4,贺小林5
单    位:1 中国石化西北油田分公司;2 长江大学地球科学学院;3 中国石油新疆油田公司重油开发公司; 4 中国石化河南油田分公司研究院海外所;5 中国石化河南油田分公司石油物探技术研究院
基金项目:受国家科技重大专项(编号:2011ZX05030-003-001)资助
摘    要:
以高精度三维地震资料为基础,结合深水水道成因机制和水道截面形态特征,将下刚果盆地A区块中新统深水水道分为侵蚀型、侵蚀加积型和加积型三类,并进一步细分为九种亚类。该分类体现了A区块深水水道从近源至远源方向的横向展布特征。从近源至远源,流体动力条件逐渐减弱,水道形态演化过程为限制性-非限制性-限制性-前端朵叶,水道宽深比和弯曲度均逐渐变大。通过对每个三级层序均方根振幅属性图的分析,并结合海平面升降和构造抬升作用,可见刚果扇不断由南向北迁移及向盆地方向进积,层序自下而上并由南向北,整体由加积水道和远端朵叶沉积向侵蚀加积水道和侵蚀水道沉积转变。
关键词:下刚果盆地;中新统;海底扇;深水水道;水道分类;沉积演化

Classification and Evolution of Deep Water Channels at Block A in Miocene Congo Fan, Lower Congo Basin

Author's Name: Xiong Haohao, Wang Zhenqi, Fu Huan, Zheng Yong, He Xiaolin
Institution: SINOPEC Northwest Oilfield Branch Company
Abstract:
Combined with high-resolution three-dimensional seismic data and the genetic mechanism of deep-water channels and the morphology of channel cross-sections at the studied Block A in Miocene Congo fan, Lower Congo Basin, it is shown that the deep-water channels can be divided into erosional, erosion-aggradational and aggradational channels, which can be further divided into nine subtypes. This classification indicates the lateral variations of these deep water channels from proximal to distal source at the Block A. From proximal to distal source, the channels display an evolutional process in morphology along with the hydrodynamic condition of these channels gradually decreases, that is, from limit, through unlimit and limit, to frontal splay, which results in the width/depth ratio and the sinuosity of the channels gradually increase. Based on the RMS amplitude diagram of per third-order sequence, considering of both sea level changes and tectonic uplift, it is claimed that the Miocene Congo fan migrates from south to north, and progresses toward the basin. The whole sedimentary sequence represent, from lower to upper and from south to north, that the aggradational channel and the distant fan are replaced by erosion-aggradational channels and erosional channels.
Keywords: Miocene; Sea floor fan; Deep water channel; Classification of channel; Sedimentary evolution; Lower Congo Basin
投稿时间: 2012-11-16  
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