德里- ncr西南地区地震构造情景的洞察和新断层的描绘:对地震危险性的影响

IF 8.5 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Sudipto Bhattacharjee , Sanjay Kumar Prajapati , Uma Shankar , O.P. Mishra
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引用次数: 0

摘要

德里-国家首都地区(NCR)的西南地区出现零星的微(M≤3.0)和偶尔的小(M >;3.0)具有季节性影响的地震。本研究整合了遥感和地震资料,以阐明地震构造情景并识别潜在的未映射断层。对DEM数据(Cartoset)的分析揭示了许多多向小断层,其中一些与已知的大断层重合或共轭。地震震中在空间上与这些所描绘的断层中的几个相关联。断层平面解表明从中央正断层向外围逆冲断层过渡。矩张量分解表明,在Mw 2.5 ~ 4.4级地震中,双偶机制占主导地位,非双偶分量显著。研究区东、西部主应力取向差异较大。应力反演显示北西-东西缩短方向和不寻常的主轴突向,表明该区存在罕见的“奇怪”或“未知”断裂体制。这些发现表明,阿尔瓦尔盆地东部正在进行的裂谷作用可能会在周边地区沿先前存在的阿拉瓦利-德里褶皱带逆冲作用产生逆冲作用。地震发生可能是断裂、区域构造和流体相互作用的复杂相互作用的结果。本研究强调了多学科方法在揭示低至中等地震活动性地区地震构造复杂性方面的价值,这些地区由于与已绘制或未绘制(隐藏)断层相关的不同结构非均质性而具有不同的强度,这是本研究中所描绘的,作为评估德里- ncr地震危险性的附加信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

An insight into seismotectonic scenario of the southwestern part of Delhi-NCR and delineation of new faults: Implications to seismic hazard potential

An insight into seismotectonic scenario of the southwestern part of Delhi-NCR and delineation of new faults: Implications to seismic hazard potential
The southwestern region of the Delhi-National Capital Region (NCR) experiences sporadic micro (M ≤ 3.0) and occasional small (M > 3.0) earthquakes with a seasonal influence. This study integrates remote sensing and seismological data to elucidate the seismotectonic scenario and identify potential unmapped faults. Analysis of DEM data (Cartoset) reveals numerous multidirectional minor faults, some coincident or conjugate to known major faults. Earthquake epicentres spatially correlate with several of these delineated faults. Fault plane solutions suggest a transition from central normal faulting to peripheral thrust faulting. Moment tensor decomposition indicates dominant double-couple mechanisms with significant non-double-couple components for earthquakes ranging from Mw 2.5 to 4.4. A major variation in principal stress orientation is apparent between the eastern and western regions of the study area. Stress inversion reveals a NW-SE shortening direction and unusual principal axis plunges, suggesting a rare “odd” or “unknown” faulting regime. These findings suggest ongoing rifting in the eastern Alwar basin may be inducing thrusting in the surrounding region along pre-existing Aravalli-Delhi fold belt thrusts. Seismogenesis likely results from a complex interplay of faulting, regional tectonics, and fluid interaction. This study highlights the value of a multidisciplinary approach for unravelling the intricacies of seismotectonic in low-to-moderate seismicity regions, with varying strengths due to diverse structural heterogeneity associated with mapped or unmapped (hidden) faults, which have been delineated in this study, as an additional information for assessing seismic hazard potential for Delhi-NCR.
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来源期刊
Geoscience frontiers
Geoscience frontiers Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
17.80
自引率
3.40%
发文量
147
审稿时长
35 days
期刊介绍: Geoscience Frontiers (GSF) is the Journal of China University of Geosciences (Beijing) and Peking University. It publishes peer-reviewed research articles and reviews in interdisciplinary fields of Earth and Planetary Sciences. GSF covers various research areas including petrology and geochemistry, lithospheric architecture and mantle dynamics, global tectonics, economic geology and fuel exploration, geophysics, stratigraphy and paleontology, environmental and engineering geology, astrogeology, and the nexus of resources-energy-emissions-climate under Sustainable Development Goals. The journal aims to bridge innovative, provocative, and challenging concepts and models in these fields, providing insights on correlations and evolution.
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