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Segmentation of the Himalayas as revealed by arc-parallel gravity anomalies

机译:弧平行重力异常揭示的喜马拉雅山脉分割

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摘要

Lateral variations along the Himalayan arc are suggested by an increasing number of studies and carry important information about the orogen’s segmentation. Here we compile the hitherto most complete land gravity dataset in the region which enables the currently highest resolution plausible analysis. To study lateral variations in collisional structure we compute arc-parallel gravity anomalies (APaGA) by subtracting the average arc-perpendicular profile from our dataset; we compute likewise for topography (APaTA). We find no direct correlation between APaGA, APaTA and background seismicity, as suggested in oceanic subduction context. In the Himalayas APaTA mainly reflect relief and erosional effects, whereas APaGA reflect the deep structure of the orogen with clear lateral boundaries. Four segments are outlined and have disparate flexural geometry: NE India, Bhutan, Nepal & India until Dehradun, and NW India. The segment boundaries in the India plate are related to inherited structures, and the boundaries of the Shillong block are highlighted by seismic activity. We find that large earthquakes of the past millennium do not propagate across the segment boundaries defined by APaGA, therefore these seem to set limits for potential rupture of megathrust earthquakes.
机译:越来越多的研究表明,沿着喜马拉雅弧线的横向变化并带有有关造山带分割的重要信息。在这里,我们编译了该地区迄今为止最完整的陆地重力数据集,这使得当前最高分辨率的合理分析成为可能。为了研究碰撞结构的横向变化,我们通过从数据集中减去平均弧垂直轮廓来计算弧平行重力异常(APaGA)。我们同样计算地形(APaTA)。正如在海洋俯冲环境中所建议的,我们发现APaGA,APaTA与背景地震活动之间没有直接相关性。在喜马拉雅山,APaTA主要反映了浮雕和侵蚀作用,而APaGA则反映了造山带的深层结构,具有清晰的侧向边界。概述了四个部分,它们具有不同的弯曲几何形状:东北印度,不丹,尼泊尔和印度,直到德拉敦,以及西北印度。印度板块中的线段边界与继承的结构有关,西隆区块的边界通过地震活动突出显示。我们发现,过去千年的大地震并未跨越APaGA定义的分段边界传播,因此,这些似乎为大推力地震的破裂设定了极限。

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