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Control of normalfault interaction on the distribution of major neogene sedimentary depocenters,lake tanganyika,east african rift

机译:正断层相互作用对主要新近系沉积沉积中心分布的控制,坦the尼喀湖,东非裂谷

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The Tanganyika continental rift basin is one of the most important structural features of the East African rift systemand provides an opportunity to observe the early stages of rift basin development unobscured by postrift deformation and erosion.The geometry of half grabens and their zones of linkage have a great influence on rift development and depositional environments.Topographic features associated with zones of linkage between half grabens exert a direct control on drainage basin evolution,sediment supply,and synrift stratigraphy.Previous structural studies,basedon widely spaced(aprox 15 km) seismic reflection profiles,focused mainly on large-scale geometrical fault descriptions and not on the spatial and temporal linkage of the individaul border faults controlling each half graben.Inthis article,using newly available basin age estimates,multichannel seismic reflection data,high-resolution single-channel sparkerseismic data,and onshore structural data (remote directioning and microstructural field obsevations),we have constructed a detailed late Miocene-Holocene kinematic model for the evolution of the northern part of the Lake Tanganyika rift basin.A classification of fault interaction geometry is proposed to describe the initiation and development through time of major depocenters.Fault correlation lessons are provided for exploration seismic interpretersin extensional settings.The development of the depocenters of northern Lake Tanganyika is complex,and this article clearly shows that antecedent structures control subbasin initiationa nd development.As the rift evolves,border faults become dominant,producing more contuous and elongate depocenters,although the influence of transverse structures is still evident.
机译:坦any尼喀大陆裂谷盆地是东非裂谷系统最重要的结构特征之一,它为观察裂谷盆地早期发展提供了机会,而裂谷盆地的早期发育并未受到裂谷后的变形和侵蚀的影响。对裂谷发育和沉积环境的影响很大。与半grab缝之间的联系带有关的地形特征直接控制了流域的演化,沉积物供应和同化地层。以前的结构研究是基于大间距(约15 km)地震反射剖面,主要侧重于大型几何断层描述,而不关注控制每个半断层的个别边界断层的时空联系。本文采用新近获得的盆地年龄估算,多通道地震反射数据,高分辨率单通道星火地震数据和陆上结构数据(远程定向和mi构造现场观测),我们为坦any尼喀湖裂谷盆地北部的演化建立了详细的中新世-全新世晚期运动学模型。提出了断层相互作用几何学的分类来描述主要沉积中心随时间的萌生和发展。断层相关的经验教训为扩展环境中的勘探地震解释人员提供了经验。坦Tang尼喀湖北部沉积中心的发展是复杂的,并且本文清楚地表明,前陆构造控制着盆地的发育和发展。随着裂谷的发展,边界断层成为主导,生产更多连续的和细长的重心,尽管横向结构的影响仍然很明显。

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