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The importance of structural softening for the evolution and architecture of passive margins

机译:结构软化对于被动边界的演变和架构的重要性

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摘要

Lithospheric extension can generate passive margins that bound oceans worldwide. Detailed geological and geophysical studies in present and fossil passive margins have highlighted the complexity of their architecture and their multi-stage deformation history. Previous modeling studies have shown the significant impact of coarse mechanical layering of the lithosphere (2 to 4 layer crust and mantle) on passive margin formation. We built upon these studies and design high-resolution (~100–300 m) thermo-mechanical numerical models that incorporate finer mechanical layering (kilometer scale) mimicking tectonically inherited heterogeneities. During lithospheric extension a variety of extensional structures arises naturally due to (1) structural softening caused by necking of mechanically strong layers and (2) the establishment of a network of weak layers across the deforming multi-layered lithosphere. We argue that structural softening in a multi-layered lithosphere is the main cause for the observed multi-stage evolution and architecture of magma-poor passive margins.
机译:岩石圈扩展可以产生被动边缘,从而限制了全球海洋。当前和化石被动边缘的详细地质和地球物理研究突显了其建筑的复杂性及其多阶段变形的历史。先前的建模研究表明,岩石圈粗大的机械分层(2到4层地壳和地幔)对被动边缘形成有重大影响。我们在这些研究的基础上,设计了高分辨率(〜100–300µm)的热机械数值模型,该模型包含了模仿构造性异质性的更精细的机械分层(千米尺度)。在岩石圈伸展过程中,自然会产生多种伸展结构,这是由于(1)机械强层缩颈引起的结构软化,以及(2)跨变形多层岩石圈建立的薄弱层网络。我们认为,多层岩石圈中的结构软化是观察到的多阶段演化和贫岩浆被动边缘构造的主要原因。

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