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Rift migration explains continental margin asymmetry and crustal hyper-extension

机译:裂谷迁移解释了大陆边缘的不对称性和地壳过度扩张

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When continents break apart, continental crust and lithosphere are thinned until break-up is achieved and an oceanic basin is formed. The most remarkable and least understood structures associated with this process are up to 200?km wide areas of hyper-extended continental crust, which are partitioned between conjugate margins with pronounced asymmetry. Here we show, using high-resolution thermo-mechanical modelling, that hyper-extended crust and margin asymmetry are produced by steady state rift migration. We demonstrate that rift migration is accomplished by sequential, oceanward-younging, upper crustal faults, and is balanced through lower crustal flow. Constraining our model with a new South Atlantic plate reconstruction, we demonstrate that larger extension velocities may account for southward increasing width and asymmetry of these conjugate magma-poor margins. Our model challenges conventional ideas of rifted margin evolution, as it implies that during rift migration large amounts of material are transferred from one side of the rift zone to the other.
机译:当大陆分裂时,大陆地壳和岩石圈变薄,直到破裂为止,并形成了大洋盆地。与这一过程有关的最显着和最不为人所知的结构是超伸展大陆壳的长达200?km宽的区域,这些区域在具有显着不对称性的共轭边缘之间分配。在这里,我们显示,使用高分辨率热机械建模,稳态裂谷迁移会产生超伸展的地壳和边缘不对称性。我们证明了裂谷运移是由相继的,向洋中移动的,上地壳断层来完成的,并且通过下地壳流得到了平衡。用新的南大西洋板块重建约束我们的模型,我们证明了较大的扩张速度可能解释了这些共轭岩浆贫乏边缘的向南增加的宽度和不对称性。我们的模型挑战了裂谷边缘演化的传统观念,因为它暗示着在裂谷迁移过程中,大量物质从裂谷区的一侧转移到了另一侧。

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