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Great Himalayan earthquakes and the Tibetan plateau

机译:喜马拉雅大地震和青藏高原

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摘要

It has been assumed that Himalayan earthquakes are driven by the release of compressional strain accumulating close to the Greater Himalaya. However, elastic models of the Indo - Asian collision using recently imaged subsurface interface geometries suggest that a substantial fraction of the southernmost 500 kilometres of the Tibetan plateau participates in driving great ruptures. We show here that this Tibetan reservoir of elastic strain energy is drained in proportion to Himalayan rupture length, and that the consequent growth of slip and magnitude with rupture area, when compared to data from recent earthquakes, can be used to infer a similar to 500-year renewal time for these events. The elastic models also illuminate two puzzling features of plate boundary seismicity: how great earthquakes can re-rupture regions that have already ruptured in recent smaller earthquakes and how mega-earthquakes with greater than 20 metres slip may occur at millennia-long intervals, driven by residual strain following many centuries of smaller earthquakes.
机译:假定喜马拉雅地震是由在大喜马拉雅山附近累积的压缩应变释放引起的。但是,使用最近成像的地下界面几何形状的印度-亚洲碰撞的弹性模型表明,最南端的500公里青藏高原中有很大一部分参与了大破裂。我们在这里表明,这个藏藏的弹性应变能储集层的排水量与喜马拉雅破裂长度成正比,并且与最近地震的数据相比,由此产生的滑动量和破裂面积随破裂面积的增加可以推断出近似于500这些事件的一年续订时间。弹性模型还阐明了板块边界地震活动的两个令人费解的特征:大地震如何使最近的小地震中已经破裂的区域破裂,以及在几千年的时间间隔内,滑坡大于20米的特大地震如何发生?许多世纪以来的小地震造成的残余应变。

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