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德里地区的整体地震构造模型。

A holistic seismotectonic model of Delhi region.

机构信息

National Center for Seismology, Ministry of Earth Sciences, Lodhi Road, New Delhi, 110003, India.

Geoscience/Seismology Division, Ministry of Earth Sciences, Lodhi Road, New Delhi, 110003, India.

出版信息

Sci Rep. 2021 Jul 5;11(1):13818. doi: 10.1038/s41598-021-93291-9.

Abstract

Delhi region in northern India experiences frequent shaking due to both far-field and near-field earthquakes from the Himalayan and local sources, respectively. The recent M3.5 and M3.4 earthquakes of 12th April 2020 and 10th May 2020 respectively in northeast Delhi and M4.4 earthquake of 29th May 2020 near Rohtak (~ 50 km west of Delhi), followed by more than a dozen aftershocks, created panic in this densely populated habitat. The past seismic history and the current activity emphasize the need to revisit the subsurface structural setting and its association with the seismicity of the region. Fault plane solutions are determined using data collected from a dense network in Delhi region. The strain energy released in the last two decades is also estimated to understand the subsurface structural environment. Based on fault plane solutions, together with information obtained from strain energy estimates and the available geophysical and geological studies, it is inferred that the Delhi region is sitting on two contrasting structural environments: reverse faulting in the west and normal faulting in the east, separated by the NE-SW trending Delhi Hardwar Ridge/Mahendragarh-Dehradun Fault (DHR-MDF). The WNW-ESE trending Delhi Sargoda Ridge (DSR), which intersects DHR-MDF in the west, is inferred as a thrust fault. The transfer of stress from the interaction zone of DHR-MDF and DSR to nearby smaller faults could further contribute to the scattered shallow seismicity in Delhi region.

摘要

印度北部的德里地区经常发生震动,这是由于来自喜马拉雅山和当地的远场和近场地震分别造成的。2020 年 4 月 12 日和 5 月 10 日,在德里东北部分别发生了 M3.5 和 M3.4 级地震,以及 5 月 29 日罗塔克附近(距德里以西约 50 公里)发生的 M4.4 级地震,随后发生了十多次余震,这使得人口稠密的栖息地陷入恐慌。过去的地震历史和当前的活动强调需要重新审视该地区的地下结构环境及其与地震活动的关系。利用在德里地区密集网络收集的数据确定了断层面解。还估计了过去二十年释放的应变能,以了解地下结构环境。基于断层面解,结合应变能估计和现有地球物理与地质研究获得的信息,可以推断出德里地区位于两个截然不同的构造环境中:西部为逆断层,东部为正断层,由东北-西南走向的德里-哈德里山脊/马亨德拉加尔-德拉敦断层(DHR-MDF)分隔。与 DHR-MDF 在西部相交的西向西北-东向东南走向的德里萨尔戈达山脊(DSR)被推断为逆冲断层。DHR-MDF 和 DSR 的相互作用带的应力向附近较小的断层的转移可能会进一步导致德里地区分散的浅层地震活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/542b/8257579/ee64b2d6290e/41598_2021_93291_Fig1_HTML.jpg

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