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首页> 外文期刊>Terra Nova >Re-orientation of the extension direction and pure extensional faulting at oblique rift margins: Comparison between the Main Ethiopian Rift and laboratory experiments
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Re-orientation of the extension direction and pure extensional faulting at oblique rift margins: Comparison between the Main Ethiopian Rift and laboratory experiments

机译:斜裂边缘处伸展方向的重新定向和纯伸展断裂:埃塞俄比亚主要裂谷与实验室实验的比较

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摘要

In this study, we draw on a unique combination of well-resolved fault-slip data and earthquake focal mechanisms to constrain spatial variations in style of faulting in the obliquely extending Main Ethiopian Rift, East Africa. These data show that both boundary and internal faults - oblique and orthogonal to the plate divergence (PD) respectively - exhibit almost pure dip-slip motion, and indicate significant local deflection in orientation of the extension direction at rift margins. Scaled analogue models closely replicate the multidisciplinary observations from the rift and suggest that the process is controlled by the presence of a deep-seated, pre-existing weakness - oblique to the direction of PD - that is able to cause a local rotation in the orientation of the extension direction at rift margins. Minor counterclockwise block rotations are required to accommodate the difference in slip direction along the different fault systems, as supported by existing and new palaeomagnetic data from the rift.
机译:在这项研究中,我们利用良好解析的断层滑动数据和地震震源机制的独特组合,来限制东非埃塞俄比亚主要裂谷倾斜延伸的断层样式的空间变化。这些数据表明,边界和内部断层(分别是倾斜的和正交于板散度(PD)的断层)都表现出几乎纯的倾滑运动,并指示在裂谷边缘延伸方向上的明显局部偏转。缩放的模拟模型紧密地复制了裂谷的多学科观测结果,并表明该过程受存在的深层,预先存在的弱点(与PD方向倾斜)的控制,该弱点能够引起方向的局部旋转在裂口边缘处的延伸方向。需要来自裂谷的现有和新古地磁数据的支持,以使逆时针旋转较小,以适应沿着不同断层系统的滑动方向差异。

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