首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Co-seismic secondary surface fractures on southeastward extension of the rupture zone of the 2005 Kashmir earthquake
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Co-seismic secondary surface fractures on southeastward extension of the rupture zone of the 2005 Kashmir earthquake

机译:2005年克什米尔地震破裂带向东南延伸的同震次生地表裂缝

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After the 2005 Kashmir earthquake, we mapped surface ground fractures in Tangdhar, Uri, Rajouri and Punch sectors and liquefaction features in Jammu area lying close to the eastern side of the Line of Control (LOC) in Kashmir, India. The NW trending ground fractures occurred largely in the hanging wall zone of the southeastern extension of the causative fault in Tangdhar and Uri sectors. The principal compressive stress deduced from the earthquake induced ground fractures is oriented at N10 degrees, whereas the causative Balakot-Bagh fault strikes 330 degrees. The fault-plane solution indicates primarily SW thrusting of the causative fault with a component of strike-slip motion. The ground fractures reflect pronounced strike-slip together with some tensile component. The Tangdhar area showing left-lateral strike-slip motion lies on the hanging wall, and the Uri region showing right-lateral strike-slip movement is located towards the southeastern extension of the causative fault zone. The shear fractures are related to static stress that was responsible for the failure of causative fault. The tensile fractures with offsets are attributed to combination of both static and dynamic stresses, and the fractures and openings without offsets owe their origin due to dynamic stress. In Punch-Rajouri and Jammu area, which lies on the footwall, the fractures and liquefactions were generated by dynamic stress. The occurrence of liquefaction features in the out board part of the Himalayan range front near Jammu is suggestive of stress transfer similar to 230 km southeast of the epicenter. The Balakot-Bagh Fault (BBF), the Muzaffarabad anticline, the rupture zone of causative fault and the zone of aftershocks - all are aligned in a similar to 25 km wide belt along the NW-SE trending regional Himalayan strike of Kashmir region and lying between the MBT and the Riasi Thrust (Murree Thrust), suggesting a seismogenic zone that may propagate towards the southeast to trigger an earthquake in the eastern part of the Kashmir region. (c) 2007 Elsevier B.V. All rights reserved.
机译:在2005年克什米尔地震之后,我们绘制了印度克什米尔东部控制线(LOC)东侧附近查Tang地区Tangdhar,Uri,Rajouri和Punch地区的地表裂缝和液化特征图。 NW趋势地面裂缝主要发生在Tangdhar和Uri断层致病性断层的东南延伸的悬壁区域。由地震诱发的地面裂缝推导出的主压应力方向为N10度,而致病性的Balakot-Bagh断层走向为330度。断层平面解法主要表明原因性断层的SW冲断具有走滑运动。地面裂缝反映出明显的走滑和一些拉伸分量。显示左走滑运动的Tangdhar地区位于吊壁上,显示右走滑运动的Uri地区位于致病性断层带的东南延伸。剪切裂缝与导致应力性断裂失败的静应力有关。带有偏移的拉伸断裂是由于静应力和动应力共同作用的结果,而没有偏移的裂缝和开口是由于动态应力引起的。在位于底壁的Punch-Rajouri和Jammu地区,裂缝和液化是由动应力产生的。在查Jam附近的喜马拉雅山脉锋的外侧部分出现液化特征,表明应力转移类似于震中东南230 km。 Balakot-Bagh断层(BBF),Muzaffarabad背斜,因果断层破裂带和余震带-沿NW-SE趋势的克什米尔地区喜马拉雅走向和位于北部的NW-SE都在大约25公里宽的带中对齐在MBT和Riasi推力(Murree推力)之间存在一个可能的地震带,该地震带可能向东南传播,从而在克什米尔地区的东部引发地震。 (c)2007 Elsevier B.V.保留所有权利。

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