Analysis of Seismic Impact on Hailuogou Glacier after the 2022 Luding Ms 6.8 Earthquake, China, Using SAR Offset Tracking Technology

Author:

Li Weile1ORCID,Chen Junyi1,Lu Huiyan1,Yu Congwei1,Shan Yunfeng1ORCID,Li Zhigang1,Dong Xiujun1,Xu Qiang1ORCID

Affiliation:

1. State Key Laboratory of Geohazard Prevention and Geoenvironment Protection, Chengdu University of Technology, Chengdu 610059, China

Abstract

An Ms 6.8 earthquake struck Luding County, Ganzi Prefecture, Sichuan Province on 5 September 2022, with the epicenter about 10 km away from Hailuogou Glacier. How Hailuogou Glacier was affected by the earthquake was of major concern to society. Sentinel-1 SAR satellite imaging was used to monitor the glacier surface velocity during different periods before and after the Luding earthquake based on pixel offset tracking (POT) technology, which applies a feature-tracking algorithm to overcome the phase co-registration problems commonly encountered in large displacement monitoring. The results indicated that the velocity had a positive correlation with the average daily maximum temperature and the slope gradient on the small-slope surfaces. The correlation was not apparent on the steeper surfaces, which corresponded spatially with the identified ice avalanche region in the Planet images. It was deduced that this may be because of the occurrence of ice avalanches on surfaces steeper than 25°, or that the narrower front channel impeded the glacier’s movement. The Luding earthquake did not cause a significant increase in the velocity of Hailuogou Glacier within a large range, but it disturbed the front area of the ice cascade, where the maximum velocity reached 2.5 m/d. Although the possibility of directly-induced destruction by ice avalanches after the earthquake was low, and the buffering in the downstream glacier tongue further reduced the risk of ice avalanches, the risk of some secondary hazards such as debris flow increased. The proposed method in this study might be the most efficient in monitoring and evaluating the effects of strong earthquakes on glaciers because it would not be limited by undesirable weather or traffic blockage.

Funder

National Key Research and Development Program of China

Key Research and Development Program of Sichuan Province

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference41 articles.

1. (2022, September 06). China Earthquake Network Center. (In Chinese).

2. (2022, October 22). Sichuan Earthquake Administration, (In Chinese).

3. Characteristics and spatial distribution pattern of Ms 6.8 Luding earthquake occurred on 5 September 2022;Fan;J. Eng. Geol.,2022

4. A case study for determination of seismic risk priorities in Van (Eastern Turkey);Isik;Earthq. Struct.,2021

5. Co-seismic landslide hazard assessment of Uttarakhand state (India) based on the modified Newmark model;Gupta;J. Asian Earth Sci.,2022

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