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Spatial variability of volcanic features in early-stage rift settings: the case of the Tanzania Divergence, East African rift system

机译:早期裂谷环境中火山特征的空间变异性:以坦桑尼亚发散,东非裂谷系统为例

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Close relationships between deformation and volcanism are well documented in relatively late evolutionary stages of continental rifting, whereas these are poorly constrained in less mature rifting stages. To investigate the control of inherited structures on faulting and volcanism, we present a statistical analysis of volcanic features, faults and pre-rift fabric in the Tanzania Divergence, where volcanic features occur extensively in in-rift and off-rift areas. Our results show that in mature rift sectors (Natron), magma uprising is mostly controlled by fractures/faults responding to the far-field stress, whereas the distribution of volcanism during initial rifting (Eyasi) is controlled by inherited structures oblique to the regional extension direction. Off-rift sectors show a marked control of pre-rift structures on magma emplacement, which may not respond to the regional stress field. Thus, the use of off-rift magmatic features as stress indicators should take into account the role of pre-existing structures.
机译:在大陆裂谷的相对较晚的演化阶段,已经很好地证明了变形与火山之间的密切关系,而在较不成熟的裂谷的阶段,则很难约束这些关系。为了研究对断层和火山作用的继承结构的控制,我们对坦桑尼亚发散中的火山特征,断层和裂谷前构造进行了统计分析,该地区的裂谷和裂谷地区广泛存在火山特征。我们的研究结果表明,在成熟的裂谷带(纳特隆)中,岩浆起义主要由响应远场应力的裂缝/断层控制,而初始裂谷(Eyasi)期间火山岩的分布由与区域扩展倾斜的继承结构控制。方向。裂谷扇形区域显示出对岩浆侵位的裂谷前结构的明显控制,这可能对区域应力场没有响应。因此,使用离裂岩浆特征作为应力指示符应考虑到已有结构的作用。

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