Simulation of strong earthquake characteristics of a scenario earthquake (MS7.5) based on the enlightenment of 2022 MS6.9 earthquake in Menyuan

被引:2
作者
Ji, Zhiwei [1 ]
Li, Zongchao [1 ]
Gao, Mengtan [1 ]
Sun, Jize [2 ]
Guo, Xiangyun [1 ]
机构
[1] China Earthquake Adm, Inst Geophys, Beijing 100081, Peoples R China
[2] Shenzhen Acad Disaster Prevent & Reduct, Shenzhen 518003, Peoples R China
关键词
scenario earthquake; seismic records; empirical Green's function method; parameter uncertainty; reliability verification; GROUND-MOTION; FAULT; MODEL;
D O I
10.1016/j.eqs.2022.11.001
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The Menyuan area is an important transportation hub in the Hexi Corridor. The Menyuan MS6.9 earthquake that occurred on January 8, 2022 had a major impact on the local infrastructure and transportation of this region. Due to the high possibility of similar strong earthquakes occurring in this area in the future, preliminary assessment of the seismic intensity characteristics of destructive earthquakes in this region is essential for effective disaster control. This paper uses the empirical Green ' s function (EGF) method as a numerical simulation tool to predict the ground motion intensity of Datong Autonomous County under the action of the scenario earthquake (MS7.5). Seismic records of aftershocks of the 2016 Menyuan MS6.4 earthquake were used as Green's functions for this simulation. The uncertainties associated with various source parameters were considered, and 36 possible earthquake scenarios were simulated to obtain 72 sets of horizontal ground motions in Datong County. The obtained peak ground acceleration (PGA) vs. time histories of the horizontal ground motion were screened using the attenuation relationships provided by the fifth-edition of China's Seismic Ground Motion Parameter Zoning Map and the NGA-West2 dataset. Ultimately, 32 possible acceleration-time histories were selected for further analysis. The screened PGA values ranged from 78.8 to 153 cm/s2. The uncertainty associated with the initial rupture point was found to greatly affect the results of the earthquake simulation. The average acceleration spectrum of the selected acceleration-time history exceeded the expected spectrum of a intermediate earthquake, which means that buildings in Datong County might sustain some damage should the scenario earthquake occur. This research can provide reliable ground motion input for urban earthquake damage simulation and seismic design in Datong County. Growing the dataset of small earthquakes recorded in this region will facilitate the large-scale simulation of ground motions under different earthquake scenarios.
引用
收藏
页码:485 / 496
页数:12
相关论文
共 50 条
  • [1] The Menyuan, Qinghai MS6.9 Earthquake on January 8, 2022: A Strike-slip Cascading Rupture Event
    Liang, Shan-shan
    Xu, Zhi-guo
    Zhang, Guang-wei
    Shi, Jian-yu
    Zou, Li-ye
    PURE AND APPLIED GEOPHYSICS, 2023, 180 (03) : 829 - 850
  • [2] Quantification of rupture directivity effects on strong ground motion during the 8 January 2022 MS6.9 Menyuan earthquake in Qinghai, China
    Xie, Junju
    Wang, Wencai
    An, Zhao
    Li, Kewei
    Tian, Xiufeng
    Wu, Lina
    Gao, Shude
    Zhang, Weidong
    Yuan, Jie
    FRONTIERS IN EARTH SCIENCE, 2023, 10
  • [3] Tectonic Implication of the 2022 MS 6.9 Earthquake in Menyuan, Qinghai, China: Analysis of Precise Earthquake Locations and InSAR
    Yin, Xinxin
    Zhai, Hongyu
    Cai, Run
    Qiu, Jiangtao
    Zou, Xiaobo
    SENSORS, 2023, 23 (04)
  • [4] Strong aftershocks traffic light system: A case study of the 8 January 2022 MS6.9 Menyuan earthquake, Qinghai Province, China
    Bi, Jinmeng
    Yin, Fengling
    Jiang, Changsheng
    Yin, Xinxin
    Ma, Yong
    Song, Cheng
    FRONTIERS IN EARTH SCIENCE, 2023, 10
  • [5] Triggering effect of historical earthquakes in the northern Tibetan Plateau on the Coulomb stress of the 2022 Menyuan MS6.9 earthquake and subsequent earthquakes
    Tang DaWei
    Ge WeiPeng
    Yuan DaoYang
    Zheng WenJun
    Hu CaiBo
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2023, 66 (07): : 2772 - 2795
  • [6] Aftershocks localization and shallow crustal velocity structure following the Ms6.9 Mainling earthquake in Tibet, China
    Ye, Jin
    Zhao, Junmeng
    Liu, Hongbing
    Zhang, Heng
    Xu, Qiang
    Chen, Shuze
    CHINESE SCIENCE BULLETIN-CHINESE, 2020, 65 (15): : 1496 - 1505
  • [7] Multi-Experiment Observations of Ionospheric Disturbances as Precursory Effects of the Indonesian Ms6.9 Earthquake on August 05, 2018
    Zhang, Xuemin
    Wang, Yalu
    Boudjada, Mohammed Yahia
    Liu, Jing
    Magnes, Werner
    Zhou, Yulin
    Du, Xiaohui
    REMOTE SENSING, 2020, 12 (24) : 1 - 17
  • [8] Investigation and implication of the surface rupture width of Menyuan Ms6. 9 Earthquake in Qinghai Province, 2022
    Niu PengFei
    Han ZhuJun
    Guo, Peng
    Li KeChang
    Lu LiXing
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2024, 67 (02): : 548 - 570
  • [9] Revealing the seismogenic structural characteristics of the Menyuan MS6.4 earthquake in 2016 based on dense array and deep learning
    Ren, Chao
    Sun, AnHui
    Wang, WeiTao
    Yu, ZiYe
    Hong, ShunYing
    Li, ShuChen
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2025, 68 (04): : 1287 - 1303
  • [10] Detailed structural characteristics of the 1 June 2022 Ms6. 1 Sichuan Lushan strong earthquake
    Lu RenQi
    Fang LiHua
    Guo Zhi
    Zhang JinYu
    Wang Wei
    Su Peng
    Tao Wei
    Sun Xiao
    Liu GuanShen
    Shan XinJian
    He HongLin
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2022, 65 (11): : 4299 - 4310