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西非裂谷系Termit裂谷盆地地质结构及成因机制 被引量:4
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作者 王涛 袁圣强 +4 位作者 李传新 毛凤军 庞思晨 姜虹 郑凤云 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2022年第6期1157-1167,共11页
基于地震和钻井资料,利用地震剖面解析与平衡剖面恢复等方法,对西非裂谷系Termit裂谷盆地的地质结构与运动学过程开展研究,探讨其成因机制。研究认为:①Termit盆地整体为狭长裂谷,以伸展构造为主,兼有伸展走滑及挤压性构造;平面上表现... 基于地震和钻井资料,利用地震剖面解析与平衡剖面恢复等方法,对西非裂谷系Termit裂谷盆地的地质结构与运动学过程开展研究,探讨其成因机制。研究认为:①Termit盆地整体为狭长裂谷,以伸展构造为主,兼有伸展走滑及挤压性构造;平面上表现为“南宽北窄,向南撒开”结构,自北向南由地堑向半地堑逐渐过渡;北部发育边界断裂控制的地堑,南部以断超式半地堑为特征。纵向上,该盆地可以划分出5套地质构造层:以发育先存断裂为特征的前白垩系基底、下白垩统裂陷层、上白垩统坳陷层、古近系裂陷层和新近系-第四系后裂谷期坳陷层。②Termit盆地的形成受控于泛非构造基底;早白垩世受南大西洋张裂影响,基底的泛非构造薄弱带活化,Termit盆地发育裂陷Ⅰ期,形成盆地雏形;晚白垩世活动性减弱,以坳陷为主;古近纪主要受新特提斯洋俯冲汇聚的远程效应影响,Termit盆地发生强烈构造分异,发育裂陷Ⅱ期,形成近南北向系列断裂,逐渐形成现今隆坳格局。 展开更多
关键词 西非裂谷系 Termit盆地 白垩纪 裂谷盆地 盆地地质结构 成因机制 尼日尔
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西非裂谷系Grein坳陷构造几何学与运动学特征 被引量:1
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作者 庞思晨 李传新 +4 位作者 毛凤军 王涛 袁圣强 何松高 师晨一 《现代地质》 CAS CSCD 北大核心 2023年第2期328-339,共12页
西非裂谷系由一系列中—新生代裂谷盆地组成,Grein坳陷位于西非裂谷系北部,对其开展构造特征及形成演化过程研究对认识西非裂谷系形成演化具有重要意义。本文基于最新二维地震数据,对Grein坳陷开展构造几何学特征解析,在此基础上运用构... 西非裂谷系由一系列中—新生代裂谷盆地组成,Grein坳陷位于西非裂谷系北部,对其开展构造特征及形成演化过程研究对认识西非裂谷系形成演化具有重要意义。本文基于最新二维地震数据,对Grein坳陷开展构造几何学特征解析,在此基础上运用构造平衡恢复方法进行了构造运动学恢复,结合区域大地构造背景,对Grein坳陷的成因机制进行探讨。研究结果表明:(1)Grein坳陷整体呈缓坡断阶型半地堑结构,具有明显的“东断西超”特征。坳陷南北差异较大,北部呈断阶形态,南部为凹陷形态;(2)Grein坳陷白垩纪—第四纪构造演化包括两期裂谷作用,可划分为5个阶段,即早白垩世断陷沉积期(Ⅰ),晚白垩世稳定沉积期(Ⅱ),白垩纪末构造反转期(Ⅲ),古近纪断陷沉积期(Ⅳ)和新近纪—第四纪稳定沉积期(Ⅴ);(3)Grein坳陷白垩纪末构造反转期主要受非洲—阿拉伯板块与欧亚板块碰撞影响,板块碰撞使非洲板块内部发生了两次强烈构造事件,分别为晚白垩世圣通期(Santonian)和马斯特里赫特期(Maastrichtian),其中马斯特里赫特期(Maastrichtian)构造活动在Grein坳陷内部表现明显,该时期坳陷发生构造反转,西北部被抬升,使得上白垩统地层发生剥蚀。 展开更多
关键词 Grein坳陷 构造几何学 运动学 构造反转 西非裂谷系
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Geological structure and dynamic mechanism of the Termit rift basin in West African rift system
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作者 WANG Tao YUAN Shengqiang +4 位作者 LI Chuanxin MAO Fengjun pang sichen JIANG Hong ZHENG Fengyun 《Petroleum Exploration and Development》 CSCD 2022年第6期1339-1350,共12页
Based on seismic and drilling data in the study area,the geological structure and kinematic process of the Termit rift basin were studied using seismic profile interpretation and balanced restoration to find out the d... Based on seismic and drilling data in the study area,the geological structure and kinematic process of the Termit rift basin were studied using seismic profile interpretation and balanced restoration to find out the dynamic mechanism of the basin.(1)The geological structure of the Termit Basin is represented as a narrow rift basin,with development of series of structural styles in extensional,extensional strike-slip and compressional stress setting.On plane,it is narrow in the north and wide in the south,and transitions from graben to half-graben from north to south;it features a graben controlled by the boundary faults in the north and a fault-overlapped half-graben in the south.(2)Before the Cretaceous,a series of hidden faults developed in the West African rift system,which laid the foundation for the development location and distribution direction of the Termit Basin;during the Cretaceous to Paleogene periods,the basin experienced two phases of rifting in Early Cretaceous and Paleogene,which controlled the initial structure and current structural shape of the basin respectively;during the Neogene to Quaternary,the basin was subjected to weak transformation.(3)In the Precambrian,the Pan-African movement gave rise to a narrow and long weak zone within the African plate,which provided the pre-existing structural conditions for the formation of the Termit Basin.In the Early Cretaceous,affected by the South Atlantic rifting,the Pan African weak zone was reactivated,resulting in the first stage of rifting and the basic structural framework of the Termit Basin.In the Paleogene,affected by the subduction and convergence of the Neo-Tethys Ocean,the African-Arabian plate extended in near E-W trending,and the Termit Basin experienced the second stage of rifting.The oblique extension in this period caused intense structural differentiation,and the current structural pattern of alternate uplifts and depressions took shape gradually. 展开更多
关键词 West African rift system Termit Basin CRETACEOUS rift basin basin geological structure dynamic mechanism NIGER
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