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An assessment of present-day crustal deformation in the Kumaun Himalaya from GPS observations

机译:通过GPS观测评估库玛恩喜马拉雅山现今的地壳形变

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The India-Eurasia collision has created high mountains in the Himalayan plate boundary system, which has led to numerous earthquakes in this region and released part of the elastic strain accumulated over years. In this study, the present-day deformation pattern is derived from geodetic mode Global Positioning System (GPS) measurements obtained during 2005-2016 from 16 campaign sites in the Kumaun province of the central Himalaya. GPS derived horizontal velocity vectors are in the range of 1-9 mm/yr and 27-38 mm/yr with respect to stable India and Eurasia reference frames respectively. To understand the interseismic strain partitioning in the study region, we consider the uniform slip dislocation model over the fault in an elastic, isotropic and homogeneous half-space medium. The model indicates the Main Himalayan Thrust (MHT) fault is locked to a depth of similar to 20 km and slips at a rate of 17.2 +/- 1 mm/yr with a dip angle of similar to 7 degrees. This MHT slip rate build-up corresponds to a moment deficit of 8.4 +/- 1 x 10(18) Nm/yr due to locking of the fault beneath the Kumaun Himalaya. The total seismic strain accumulation of 61 x 10(-6) estimated from the geodetic data suggests the possibility of large earthquakes (typically magnitude 8 and above) with the recurrence interval of around 600 years in the Kumaun Himalayan region.
机译:印度-欧亚大陆的碰撞在喜马拉雅板块边界系统中造成了高山,导致该地区发生了多次地震,并释放了多年积累的部分弹性应变。在这项研究中,当今的变形模式来自大地测量模式的全球定位系统(GPS)测量值,该测量值是在2005-2016年期间从喜马拉雅中部库马恩省的16个战役地点获得的。 GPS得出的水平速度矢量分别相对于稳定的印度和欧亚大陆参考系在1-9 mm / yr和27-38 mm / yr的范围内。为了了解研究区域内的地震应变分区,我们考虑了弹性,各向同性和均质的半空间介质中断层上的均匀滑动错位模型。该模型表明,喜马拉雅主冲断层(MHT)的断层锁定在大约20 km的深度,并以17.2 +/- 1 mm / yr的速度滑动,倾角大约为7度。由于断层锁定在Kumaun喜马拉雅山下方,该MHT滑移速率的增加对应于8.4 +/- 1 x 10(18)Nm / yr的弯矩不足。根据大地测量数据估算出的总地震应变累积为61 x 10(-6),这表明在库玛恩·喜马拉雅地区,大地震(通常为8级及以上)的复发间隔约为600年。

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