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首页> 外文期刊>Geophysical Research Letters >Seismic structure of the Longmen Shan region from S-wave tomography and its relationship with the Wenchuan Ms 8.0 earthquake on 12 May 2008, southwestern China
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Seismic structure of the Longmen Shan region from S-wave tomography and its relationship with the Wenchuan Ms 8.0 earthquake on 12 May 2008, southwestern China

机译:S波层析成像对龙门山地区的地震构造及其与2008年5月12日汶川8.0级地震的关系

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摘要

Using arrival time data, we determined seismic structure of the Longmen Shan by S-wave tomography and studied its relations with the Ms 8.0 earthquake in Wenchuan, southwestern China. Our results suggest that the Longmen Shan fault belt is a rheologic boundary between the eastern Tibetan plateau and the Sichuan basin, and the deep crust of the entire Longmen Shan is significantly thickened by ductile deformation. The upper structure of the eastern Tibetan plateau is cored by the high-velocity Pengguan massif. Its collision with the Sichuan basin is the most direct reason for the seismic ruptures on the Longmen Shan fault belt north of Wenchuan, while the lack of earthquakes south of Wenchuan is related to the weakness of the crust. Therefore, The Ms 8.0 earthquake occurred in a strongly heterogeneous region. The variations in the crustal structure largely controlled the initial rupture of the Ms 8.0 earthquake and aftershock activity.
机译:利用到达时间数据,我们通过S波层析成像确定了龙门山的地震结构,并研究了它与西南汶川8.0级地震的关系。我们的研究结果表明,龙门山断裂带是青藏高原东部和四川盆地之间的流变边界,整个龙门山的深壳由于韧性变形而明显增厚。青藏高原东部的上部结构以高速的鹏冠地块为核心。它与四川盆地的碰撞是汶川以北龙门山断裂带地震破裂的最直接原因,而汶川以南缺乏地震则与地壳薄弱有关。因此,Ms 8.0地震发生在一个高度异质的地区。地壳结构的变化在很大程度上控制了8.0级地震的初始破裂和余震活动。

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