2021年蒙古Khuvsgul裂谷发生的Mw 6.7 Khankh地震

D. Battogtokh, A. Bayasgalan, Kang Wang, Davaasuren Ganzorig, Jargalsaikhan Bayaraa
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引用次数: 7

摘要

2021年1月12日乌兰巴托时间凌晨05:32:56,蒙古西北部的Khuvsgul湖发生Mw 6.7。事件的震中位于多隆乌勒半岛以南的近海,距离Khankh村SSW约30公里。蒙古中西部大部分地区都有震感,包括距离震中约600公里的首都乌兰巴托。地震似乎使Khuvsgul湖西海岸的Khuvsgull断层断裂。这次地震是蒙古自1991年布什林格尔里氏6.3级地震以来最大的一次地震。我们来自蒙古科学院天文与地球物理研究所的研究小组在地震发生后不久对震中地区进行了为期5天的访问,安装了四个宽带地震台,并在该地区寻找地震的地质证据。国际地震学中心计算的矩张量解以及InSAR干涉图和现场观测的分析定义了此次地震的位置、方位角、倾角和深度。国际地震中心和研究人员的解决方案中,向东倾斜的节点平面与地表的投影交点与绘制的Khuvsgul断层旧构造陡崖的走向和位置相对较好,尽管我们尚未发现任何主要的同震地表破裂。InSAR干涉图显示了西部山脉和多隆乌勒半岛之间区域的尖锐不连续性和条纹,这意味着表面变形。在地震后的三个月里持续的余震定义了主震断裂的总体走向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The 2021 Mw 6.7 Khankh earthquake in the Khuvsgul rift, Mongolia
A Mw 6.7 occurred at Lake Khuvsgul in northwestern Mongolia at 05:32:56 AM Ulaanbaatar time on the 12th of January 2021. The epicenter of the event was offshore south of the Doloon Uul peninsula around 30 km SSW of Khankh village. Shaking was felt within most of central and western Mongolia, including the capital city Ulaanbaatar ~600 km from the epicenter. The earthquake appears to have ruptured the Khuvsgul fault along the western coast of Lake Khuvsgul. The earthquake is the largest in Mongolia since the Mw 6.3 Busiin Gol earthquake in 1991. Our research team from the Institute of Astronomy and Geophysics, Mongolian Academy of Sciences visited the epicenter area for 5 days soon after the earthquake and installed four broad-band seismic stations and searched the area for geological evidence of the earthquake. The location, azimuth, dip and depth of this earthquake defined by moment tensor solutions calculated by the international seismological centers and analysis of InSAR interferograms and field observations. The projected intersections of the east-dipping nodal planes with the surface for solutions of the international seismological centers and researchers correlate relatively well with the mapped strike and location of the old tectonic scarp of the Khuvsgul fault although we have not discovered any primary co-seismic surface rupture. The InSAR interferogram demonstrates the sharp discontinuity and fringes in the area between the Western Range and Doloon Uul peninsula which implies surface deformation. Aftershocks that have continued during the three months subsequent to the earthquake define overall strike of the mainshock rupture.
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