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Segmentation of Main Boundary Thrust and Main Central Thrust in Western Himalaya for assessment of seismic hazard

机译:喜马拉雅西部主要边界推力和主要中心推力的分割以评估地震危险

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摘要

During an earthquake, longer faults and lineaments may not rupture over their entire length, but may do so in smaller segments depending on some physical boundary in the fault that controls and defines the location and extent of rupture, which may be governed by several factors such as presence of transverse tectonic features, change in seismicity pattern along the fault, difference in slip rates, occurrence of significant lithologic changes, strike of fault, etc. This paper is an attempt to identify segments of two megalineaments of Western Himalaya, viz. the Main Boundary Thrust (MBT) and Main Central Thrust (MCT). This was attempted by subjecting seismicity and tectonic data in a 7A degrees A xA 7A degrees study area to a pattern recognition technique. Six segments of the 997-km-long MBT and five segments of the 800-km-long MCT were obtained in the study area. These segments, along with other tectonic features and seismicity of the region, were included in assessment of seismic hazard and preparation of peak ground acceleration (PGA) maps.
机译:在地震过程中,较长的断层和断裂可能不会在其整个长度上破裂,但可能会在较小的段中破裂,这取决于断层中控制和定义破裂位置和程度的某些物理边界,这可能受多种因素控制。由于存在横向构造特征,沿断层的地震活动模式变化,滑移率差异,重大岩性变化的发生,断层走向等,因此,本文试图确定西喜马拉雅山的两个巨系的片段。主边界推力(MBT)和主中心推力(MCT)。这是通过对7A度x x 7A度研究区域中的地震活动和构造数据进行模式识别技术来尝试的。在研究区域中获得了997公里长的MBT的六段和800公里长的MCT的五段。这些片段以及该地区的其他构造特征和地震活动性被包括在地震危险性评估和峰值地面加速度(PGA)图的编制中。

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