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Victoria continental microplate dynamics controlled by the lithospheric strength distribution of the East African Rift

机译:维多利亚欧陆微孔板动力学受东非裂缝的岩性力量分布控制

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摘要

The Victoria microplate between the Eastern and Western Branches of the East African Rift System is one of the largest continental microplates on Earth. In striking contrast to its neighboring plates, Victoria rotates counterclockwise with respect to Nubia. The underlying cause of this distinctive rotation has remained elusive so far. Using 3D numerical models, we investigate the role of pre-existing lithospheric heterogeneities in continental microplate rotation. We find that Victoria's rotation is primarily controlled by the distribution of rheologically stronger zones that transmit the drag of the major plates to the microplate and of the mechanically weaker mobile belts surrounding Victoria that facilitate rotation. Our models reproduce Victoria's GPS-derived counterclockwise rotation as well as key complexities of the regional tectonic stress field. These results reconcile competing ideas on the opening of the rift system by highlighting differences in orientation of the far-field divergence, local extension, and the minimum horizontal stress.
机译:东非裂谷系统的东部和西部分支之间的维多利亚微孔板是地球上最大的欧陆微孔板之一。在与其邻近的板上鲜明对比中,维多利亚相对于Nubia逆时针旋转。到目前为止,这种独特旋转的潜在原因仍然难以实现。使用3D数模型,我们调查了预先存在的岩石间异质性在欧式微孔板旋转中的作用。我们发现维多利亚的旋转主要由流变较强的区域的分布来控制,使主板拖动到微孔板和维多利亚围绕维多利亚的机械较弱的移动皮带,便于旋转。我们的模型再现维多利亚的GPS逆时针旋转以及区域构造应力场的关键复杂性。这些结果通过突出远场发散,局部延伸和最小水平应力的差异来调和裂口系统的竞争思路。

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