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首页> 外文期刊>Nature Communications >Complex fault interaction controls continental rifting
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Complex fault interaction controls continental rifting

机译:复杂的断层相互作用控制大陆裂谷

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摘要

Rifted margins mark a transition from continents to oceans and contain in their architecture a record of their rift history. Recent investigations of rift architecture have suggested that multiphase deformation of the crust and mantle lithosphere leads to the formation of distinct margin domains. The processes that control transitions between these domains, however, are not fully understood. Here we use high-resolution numerical simulations to show how structural inheritance and variations in extension velocity control the architecture of rifted margins and their temporal evolution. Distinct domains form as extension velocities increase over time and deformation focuses along lithosphere-scale detachment faults, which migrate oceanwards through re-activation and complex linkages of prior fault networks. Our models demonstrate, in unprecedented detail, how faults formed in the earliest phases of continental extension control the subsequent structural evolution and complex architecture of rifted margins through fault interaction processes, hereby creating the widely observed distinct margin domains.
机译:裂谷标志着从大陆到海洋的过渡,并且在其建筑中包含了裂谷历史的记录。对裂谷构造的最新研究表明,地壳和地幔岩石圈的多相变形导致形成独特的边缘域。但是,尚未完全了解控制这些域之间的过渡的过程。在这里,我们使用高分辨率的数值模拟来显示结构继承和扩展速度变化如何控制裂谷边缘的结构及其时间演变。随着延伸速度的增加,不同的区域形成,变形集中在岩石圈尺度的分离断层上,这些断层通过重新激活和先前断层网络的复杂联系向海洋迁移。我们的模型以史无前例的细节展示了在大陆扩张的最早阶段形成的断层如何通过断层相互作用过程来控制随后的构造演化和裂谷边缘的复杂构造,从而创造了广泛观察到的独特的边界域。

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