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Tonga slab deformation: The influence of a lower mantle upwelling on a slab in a young subduction zone

机译:汤加板块变形:下俯冲作用对年轻俯冲带板块的影响

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摘要

There are fundamental geographic variations in the deformation of slabs in the transition zone. The seismic energy release and morphology of the Tonga slab show that it is deforming faster and has accumulated more deformation than any other slab. We show that Tonga overlies the edge of the large-scale Pacific superplume. There is no substantial aseismic penetration into the lower mantle beneath Tonga, consistent with initiation of subduction during the Eocene. Other major subduction systems overlay seismically fast structures. For long-lived subduction systems, the lower mantle tends to pull down on slabs while in Tonga the lower mantle pushes upward, partially accounting for the intense deformation. The perturbation to the state of slab stress due to large-scale mantle flow is 10 to 40 MPa — nearly as large as that expected from slab pull.
机译:过渡区平板变形存在根本的地理差异。汤加平板的地震能量释放和形态表明,它的变形速度比其他任何平板都要快,并且积累的变形更多。我们显示汤加位于大型太平洋超级植物的边缘。在始新世发生俯冲作用时,没有实质性的地震作用渗透到汤加下面的下地幔中。其他主要的俯冲系统覆盖了地震快速结构。对于长寿命的俯冲系统,下地幔倾向于在平板上向下拉,而在汤加,下地幔则向上推,部分解释了强烈的变形。大规模地幔流对板坯应力状态的扰动为10至40 MPa,几乎与板坯拉力所预期的一样大。

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