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    中国百强科技报刊

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    中国高校百佳科技期刊

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    Volume 50 Issue 2
    Feb.  2025
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    Article Contents
    Li Zongchao, Sun Jize, Ji Zhiwei, Gao Mengtan, Xie Junju, Zhao Yanna, 2025. Rapid Simulation of Acceleration Waveform at Everest Seismic Station of Xizang Tingri MS6.8 Earthquake on January 7, 2025. Earth Science, 50(2): 798-804. doi: 10.3799/dqkx.2025.009
    Citation: Li Zongchao, Sun Jize, Ji Zhiwei, Gao Mengtan, Xie Junju, Zhao Yanna, 2025. Rapid Simulation of Acceleration Waveform at Everest Seismic Station of Xizang Tingri MS6.8 Earthquake on January 7, 2025. Earth Science, 50(2): 798-804. doi: 10.3799/dqkx.2025.009

    Rapid Simulation of Acceleration Waveform at Everest Seismic Station of Xizang Tingri MS6.8 Earthquake on January 7, 2025

    doi: 10.3799/dqkx.2025.009
    • Received Date: 2025-01-25
    • Publish Date: 2025-02-25
    • On January 7, 2025, a magnitude MS6.8 earthquake occurred in Dingri County, Shigatse City, Xizang, China, causing severe damage near the epicenter. The affected area is located on a plateau at over 4, 000 meters above sea level, where seismic stations are sparsely distributed. There is a lack of comprehensive reference data or basic seismic records within a 100 km radius, which are essential for quickly assessing the extent of earthquake damage and guiding post-earthquake reconstruction efforts. The high mountain region affected by this earthquake is mostly covered with permanent glaciers, such as those on Mount Everest, and contains numerous potential landslide sites. Studying the impact of earthquakes on the stability of glaciers and landslides is an important scientific concern. Given this context, this article focuses on an MS3.9 small earthquake recorded at the XZ-ZHF seismic station, located 55 km from the epicenter. Using the empirical Green's function method, the study considers parameter uncertainty to synthesize the acceleration waveform of the earthquake at this station. The research results indicate that the horizontal peak ground acceleration (PGA) at Zhufeng seismic station ranged from 70 to 190 cm/s2, while the vertical PGA ranged from 40 to 140 cm/s2. This corresponds to an instrument seismic intensity of Ⅵ-Ⅶ. These findings reflect the seismic intensity at the Zhufeng Seismic Station. When compared with the seismic response spectra of various probability levels in the fifth-generation Seismic ground motion parameters zonation map of China, and taking into account the structural integrity of local buildings, it is analyzed that the seismic intensity could cause more severe damage to general civil structures near the Zhufeng seismic station. Furthermore, it is expected that the earthquake damage near the epicenter is likely to be even more severe. Additionally, the earthquake may have implications for the stability of high-altitude glaciers and potential landslide bodies, and it is recommended that special attention be paid to these issues.

       

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    • Hu, K., Zhang, X., You, Y. et al. 2019. Landslides and Dammed Lakes Triggered by the 2017 Ms6.9 Milin Earthquake in the Tsangpo Gorge. Landslides, 16: 993-1001. https://doi.org/10.1007/s10346-019-01168-w
      Ji, Z., Li, Z., Sun, J., et al., 2023. Estimation of Broadband Ground Motion Characteristics Considering Source Parameter Uncertainty and Undetermined Site Condition in Densely Populated Areas of Pingwu. Front. Earth Sci. 10: 1081542. https://doi.org/10.3389/feart.2022.1081542
      Li, Z. C., Sun, J. Z., Gao, M. T., et al., 2022. Preliminary Judgment of Ground Motion Characteristics of Yematan Bridge in Qinghai Maduo M7.4 Earthquake. Reviews of Geophysics and Planetary Physics, 53(1): 101-106. https://doi.org/10.19975/j.dqyxx.2021-037
      Li, Z. C., Sun, J. Z., Gao, M. T., et al., 2022. Evaluation of Horizontal Ground Motion Waveforms at Sedongpu Glacier during the 2017 M6.9 Mainling Earthquake Based on the Equivalent Green's Function. Engineering Geology, 306: 106743. https://doi.org/10.1016/j.enggeo.2022.106743
      Miyake, H., Iwata, T., Irikura, K., 2003. Source Characterization for Broadband Ground-Motion Simulation: Kinematic Heterogeneous Source Model and Strong Motion Generation Area. Bulletin of the Seismological Society of America, 93(6): 2531-2545. https://doi.org/10.1785/0120020183
      李宗超, 孙吉泽, 高孟潭, 等. 2022. 青海玛多M7.4地震中野马滩大桥地震动特征初判. 地球与行星物理论评, 53(1): 101-106.
      刘时银, 郭万钦, 许君利, 2019. 中国第二次冰川编目数据集(V1.0). 国家冰川冻土沙漠科学数据中心(http://www.ncdc.ac.cn). https://cstr.cn/CSTR:11738.11.ncdc.Westdc.2020.656
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