地震学报(英文版)2024,Vol.37Issue(3) :263-276.DOI:10.1016/j.eqs.2024.03.006

Coseismic deformation and fault slip distribution of the 2023 MW7.8 and MW7.6 earthquakes in Türkiye

Weikang Li Lijiang Zhao Kai Tan Xiaofei Lu Caihong Zhang Chengtao Li Shuaishuai Han
地震学报(英文版)2024,Vol.37Issue(3) :263-276.DOI:10.1016/j.eqs.2024.03.006

Coseismic deformation and fault slip distribution of the 2023 MW7.8 and MW7.6 earthquakes in Türkiye

Weikang Li 1Lijiang Zhao 2Kai Tan 3Xiaofei Lu 1Caihong Zhang 3Chengtao Li 3Shuaishuai Han3
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作者信息

  • 1. Institute of Seismology,China Earthquake Administration,Wuhan 430071,China;Wuhan Gravitation and Solid Earth Tides National Observation and Research Station,Wuhan 430071,China
  • 2. School of Geological Engineering and Geomatics,Chang'an University,Xi'an 710054,China
  • 3. Institute of Seismology, China Earthquake Administration,Wuhan 430071, China
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Abstract

On February 6,2023,a devastating earthquake with a moment magnitude of MW7.8 struck the town of Pazarcik in south-central Türkiye,followed by another powerful earthquake with a moment magnitude of MW7.6 that struck the nearby city of Elbistan 9 h later.To study the characteristics of surface deformation caused by this event and the influence of fault rupture,this study calculated the static coseismic deformation of 56 stations and dynamic displacement waveforms of 15 stations using data from the Turkish national fixed global navigation satellite system(GNSS)network.A maximum static coseismic displacement of 0.38 m for the MW7.8 Kahramanmaras earthquake was observed at station ANTE,36 km from the epicenter,and a maximum dynamic coseismic displacement of 4.4 m for the MW7.6 Elbistan earthquake was observed at station EKZ1,5 km from the epicenter.The rupture-slip distributions of the two earthquakes were inverted using GNSS coseismic deformation as a constraint.The results showed that the Kahramanmaras earthquake rupture segment was distinct and exposed on the ground,resulting in significant rupture slip along the Amanos and Pazarcik fault segments of the East Anatolian Fault.The maximum slip in the Pazarcik fault segment was 10.7 m,and rupture occurred at depths of 0-15 km.In the Cardak fault region,the Elbistan earthquake caused significant ruptures at depths of 0-12 km,with the largest amount of slip reaching 11.6 m.The Coulomb stress change caused by the Kahramanmaras earthquake rupture along the Cardak fault segment was approximately 2 bars,and the area of increased Coulomb stress corresponded to the subsequent rupture region of the MW7.6 earthquake.Thus,it is likely that the MW7.8 earthquake triggered or promoted the MW7.6 earthquake.Based on the cumulative stress impact of the MW7.8 and MW7.6 events,the southwestern segment of the East Anatolian Fault,specifically the Amanos fault segment,experienced a Coulomb rupture stress change exceeding 2 bars,warranting further attention to assess its future seismic hazard risk.

Key words

2023 Türkiye earthquake/GNSS observation/coseismic deformation field/slip distribution

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基金项目

Science and Technology Development Fund of Wuhan Institute of Earth Observation,China Earthquake Administration(302021-21)

Open Fund of Wuhan,Gravitation and Solid Earth Tides,National Observation and Research Station(WHYWZ202218)

出版年

2024
地震学报(英文版)
中国地震学会

地震学报(英文版)

影响因子:0.255
ISSN:1000-9116
参考文献量1
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