<p>Owing to the development of satellites (e.g., LT-1, GF-1) (Li et al., 2023), we can rapidly acquire optical and SAR images in areas affected by the 2025 Dingri earthquake, interpret their source parameters, and assess their induced hazards. This provides strong support for timely scientific research and post-earthquake rescue-work, greatly improving the efficiency and scientific validity of disaster response.</p>

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Source Characteristics and Induced Hazards of the 2025 M6.8 Dingri Earthquake, Xizang, China, Revealed by Imaging Geodesy

  • Chen Yu,
  • Zhenhong Li,
  • Xiaoning Hu,
  • Chuang Song,
  • Suju Li,
  • Haihui Liu,
  • Jie Li,
  • Bingquan Han,
  • Zhenjiang Liu,
  • Ming Liu,
  • Shuang Zhu,
  • Xiaoye Hao,
  • Zhiyuan Li,
  • Jianbing Peng

摘要

Owing to the development of satellites (e.g., LT-1, GF-1) (Li et al., 2023), we can rapidly acquire optical and SAR images in areas affected by the 2025 Dingri earthquake, interpret their source parameters, and assess their induced hazards. This provides strong support for timely scientific research and post-earthquake rescue-work, greatly improving the efficiency and scientific validity of disaster response.