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Kinematic deformation and intensity assessment of the 2021 Maduo Ms7.4 earthquake in Qinghai revealed by high-frequency GNSSOAEI

Kinematic deformation and intensity assessment of the 2021 Maduo Ms7.4 earthquake in Qinghai revealed by high-frequency GNSS

英文摘要

Rapid acquisition of the kinematic deformation field and seismic intensity distribution of large earth-quakes is crucial for postseismic emergency rescue,disaster assessment,and future seismic risk research.The advancement of GNSS observation and data processing makes it play an important role in this field,especially the high-frequency GNSS.We used the differential positioning method to calculate the 1 HZ GNSS data from 98 sites within 1000 km of the Ms7.4 Maduo earthquake epicenter.The kinematic deformation field and the distribution of the seismic intensity by using the peak ground velocity derived from displacement waveforms were obtained.The results show that:1)Horizontal coseismic response deformation levels ranging from 25 mm to 301 mm can be observed within a 1000 km radius from the epicenter.Coseismic response deformation on the east and west sides shows bilateral asymmetry,which markedly differs from the symmetry presented by surface rupture.2)The seismic intensity obtained through high-frequency GNSS and field investigations exhibits good consistency of the scope and orientation in the high seismic intensity area,although the former is generally slightly smaller than the latter.3)There may exist obstacles on the eastern side of the seismogenic fault.The Maduo earthquake induced a certain tectonic stress loading effect on the western Kunlun Pass-Jiangcuo fault(KPJF)and Maqin-Maqu segment,resulting in higher seismic risk in the future.

Yu Li;Yuebing Wang;Lijiang Zhao;Hongbo Shi;Pingping Wang

Institute of Geophysics,China Earthquake Administration,Beijing 100081,China||China Earthquake Networks Center,China Earthquake Administration,Beijing 100045,ChinaChina Earthquake Networks Center,China Earthquake Administration,Beijing 100045,ChinaQinghai Institute of Geological Surveying and Mapping Geographic Information,Qinghai 810001,ChinaBeijing Sixents Technology Co.,Ltd.,Beijing 100094,China

Maduo earthquakeHigh-frequency GNSSKinematic deformationSeismic intensity

《大地测量与地球动力学(英文版)》 2024 (003)

230-240 / 11

We are grateful to the staff of the CMONOC project for their hard work.We sincerely thank Xi Nan from China Earthquake Networks Center,and Xiong Wei from Hubei Earthquake Administration for calculating the seismic intensity and Coulomb Failure Stress.We also thank all the contributors to GAMIT/GLOBK software.GAMIT/GLOBK provides a free download of authorization(http://geoweb.mit.edu/).The figures were drawn by GMT[50].This work was supported by Grants from the National Natural Science Foundation of China(42004010)and the Beijing Natural Science Foundation(8204077).

10.1016/j.geog.2023.08.002

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