对2020年1月24日土耳其6.8 Mw地震(Elazığ)的新认识:受大地测量和地震数据约束的东安纳托利亚断裂带平行拉分盆地激活的证据

IF 1.2 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
T Serkan Irmak, Mustafa Toker, Evrim Yavuz, Erman Şentürk, Muhammed Ali Güvenaltın
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引用次数: 4

摘要

在这项研究中,我们利用地震学和大地测量数据集研究了2020年1月24日土耳其发生的6.8 Mw Elazığ地震的主要断层特征,为东安纳托利亚断裂带(EAFZ)提供了新的见解。我们首先利用干涉合成孔径雷达(InSAR)干涉图(Sentinel-1A/B卫星)和远震波形反演分别约束了诱发断层段的同震地表变形和破裂几何形状。利用区域波形反演方法,确定了27次余震震源机制的质心矩张量(CMT)解。最后,我们利用27次余震的震源解,叠加地表变形模式,评估了诱发断层和相邻断层的同震滑动分布和CMT解。1月24日2020Elazığ地震的CMT解揭示了一个纯粹的走滑震源机制,与EAFZ的结构模式和左侧运动一致。Elazığ事件的破裂过程表明,破裂始于震源周围12 km处,然后沿NE-SW双向传播,但主要向西南方向传播。破裂滑动最初向西南方向(前10秒)和东北方向(4秒)传播,然后再次向西南方向(9秒)传播。在震源西南20公里处,在6公里深度(质心深度)处,最大位移为1.3米。断裂停止,向西南方向向下倾斜约20公里。滑移矢量的分布表明,破裂主要是通过正常的斜向运动继续进行的。大部分瞬间释放是在震源的西南方向释放的,破裂深度高达50公里左右。分析的27次余震震源机制表现为走滑,但主要表现为正向和正向斜滑断裂,方向为张轴(NNE-SSW),表明正向斜滑,“张拉”应力体系,平行于EAFZ走向,与西向破裂指向性和同震变形模式一致。最后,基于与正向震源解分布模式相匹配的同震地表变形,余震正向和正向斜滑震源证明了断裂-平行拉分盆地的激活是东断带左侧走滑运动的一个分段边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New insight into the 24 January 2020, Mw 6.8 Elazığ earthquake (Turkey): An evidence for rupture-parallel pull-apart basin activation along the East Anatolian Fault Zone constrained by Geodetic and Seismological data
In this study, we investigated the main features of the causative fault of the 24 January 2020, Mw 6.8 Elazığ earthquake (Turkey) using seismological and geodetic data sets to provide new insight into the East Anatolian Fault Zone (EAFZ). We first constrained the co-seismic surface deformation and the rupture geometry of the causative fault segment using Interferometric Synthetic Aperture Radar (InSAR) interferograms (Sentinel-1A/B satellites) and teleseismic waveform inversion, respectively. Also, we determined the centroid moment tensor (CMT) solutions of focal mechanisms of the 27 aftershocks using the regional waveform inversion method. Finally, we evaluated the co-seismic slip distribution and the CMT solutions of the causative fault as well as of adjacent segments using the 27 focal solutions of the aftershocks, superimposed on the surface deformation pattern. The CMT solution of the 24 January 2020Elazığ earthquake reveals a pure strike-slip focal mechanism, consistent with the structural pattern and left-lateral motion of the EAFZ. The rupture process of the Elazığ event indicated that the rupture is started at 12 km around the hypocenter, and then propagated bilaterally along the NE-SW but mainly toward the southwest. The rupture slip has initially propagated toward the southwest (first 10 s) and northeast (4 s), and again toward the southwest (9 s). Maximum displacement is calculated as 1.3 m about 20 km southwest of the hypocenter at 6 km depth (centroid depth). The rupture stopped to down-dip around 20 km depth toward the southwest. The distribution of the slip vectors indicates that the rupture continued mostly through a normal oblique movement. Most of the moment release was released SW of the hypocenter and the rupture reached up to around 50 km. The focal mechanisms of analyzed 27 aftershocks show strike-slip, but mostly normal and normal oblique-slip faulting with an orientation of the tensional axes (NNE-SSW), indicating a normal oblique-slip, “transtensional” stress regime, parallel-subparallel to the strike of the EAFZ, consistent with SW-rupture directivity and co- seismic deformation pattern. Finally, based on the co-seismic surface deformation compatible with the distributional pattern of normal focal solutions, normal and normal oblique-slip focals of the aftershocks evidence the rupture-parallel pull-apart basin activation as a segment boundary of the left-lateral strike-slip movement of the EAFZ.
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来源期刊
Annals of Geophysics
Annals of Geophysics 地学-地球化学与地球物理
CiteScore
2.40
自引率
0.00%
发文量
38
审稿时长
4-8 weeks
期刊介绍: Annals of Geophysics is an international, peer-reviewed, open-access, online journal. Annals of Geophysics welcomes contributions on primary research on Seismology, Geodesy, Volcanology, Physics and Chemistry of the Earth, Oceanography and Climatology, Geomagnetism and Paleomagnetism, Geodynamics and Tectonophysics, Physics and Chemistry of the Atmosphere. It provides: -Open-access, freely accessible online (authors retain copyright) -Fast publication times -Peer review by expert, practicing researchers -Free of charge publication -Post-publication tools to indicate quality and impact -Worldwide media coverage. Annals of Geophysics is published by Istituto Nazionale di Geofisica e Vulcanologia (INGV), nonprofit public research institution.
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