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Limit of strain partitioning in the Himalaya marked by large earthquakes in western Nepal

机译:尼泊尔西部发生大地震,喜马拉雅山的应变分区极限

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Great earthquakes and high seismic risk in the Himalaya are thought to be focussed near the range front, where the Indian Plate slides beneath the mountain range~(1,2). However, the Himalaya is curved and plate convergence becomes increasingly obliquewestwards. Strain in thewestern Himalaya is hypothesized to be partitioned, such thatwestern partsmove northwestwards~3 with respect to the central Himalaya. Herewe use field data to identify a 63-km-long earthquake rupture on a previously unrecognized fault in the western Himalaya, far from the range front. We use radiocarbon dating to show that one or more earthquakes created 10m of surface displacement on the fault between AD 1165 and 1400. During this time interval, large range-front earthquakes also occurred~(1,4,5). We suggest that the active fault we identified is part of a larger fault system, the Western Nepal Fault System, which cuts obliquely across the Himalaya. We combine our observations with a geodynamical model to show that the Western Nepal Fault System marks the termination of the strain-partitioned region of the western Himalaya and comprises a first-order structure in the three-dimensional displacement field of the mountain range. Our findings also identify a potential seismic hazard within the interior of the Himalaya that may necessitate significant changes to seismic hazard assessments.
机译:喜马拉雅地区的大地震和高地震风险被认为集中在山脉前沿附近,那里的印度板块滑到了山脉下方(1,2)。但是,喜马拉雅山是弯曲的,板块汇聚也逐渐向西倾斜。喜马拉雅山西部的应变被假定为是分区的,以使西部地区相对于喜马拉雅山中部向西北移动约3。在此,我们使用现场数据来确定喜马拉雅山西部先前未认识到的断层的63公里长地震破裂,该断层距离靶场很远。我们使用放射性碳测年表明,一次或多次地震在公元1165年至1400年之间的断层上造成了10m的表面位移。在此时间间隔内,也发生了大范围的前地震〜(1,4,5)。我们建议,我们确定的活动断层是较大的断层系统(西尼泊尔断层系统)的一部分,该系统在喜马拉雅山倾斜地切开。我们将观察结果与地球动力学模型相结合,以表明尼泊尔西部断层系统标志着喜马拉雅山西部应变分区区域的终结,并且在山脉的三维位移场中包含一阶结构。我们的发现还确定了喜马拉雅山内部的潜在地震危险,可能需要对地震危险性评估进行重大更改。

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