Deformation Monitoring in an Alpine Mining Area in the Tianshan Mountains Based on SBAS‐InSAR Technology
Qingsong Du, Guoyu Li, Yu Zhou, Mingtang Chai, Dun Chen, Shunshun Qi, Gang Wu
Chinese Academy of Sciences Northwest Institute of Eco-Environment and Resources University of Chinese Academy of Sciences Ningxia University
内容与影响
The fragile habitat of alpine mining areas can be greatly affected by surface disturbances caused by mining activities, particularly open‐pit mining activities, which greatly affect the periglacial environment. SBAS‐InSAR technology enables the processing of SAR images to obtain highly accurate surface deformation information. This paper applied SBAS‐InSAR technology to obtain three years of surface subsidence information based on the 89‐scene Sentinel‐1A SLC products, covering a mining area (tailings and active areas) in the Tianshan Mountains and its surroundings from 25 th December 2017 to 2 nd January 2021. The data were adopted to analyze the characteristics of deformation in the study region and the mining areas, and the subsidence accumulation was compared with field GNSS observation results to verify its accuracy. The results showed that the study area settled significantly, with a maximum settlement rate of −44.80 mm/a and a maximum uplift rate of 28.04 mm/a. The maximum settlement and accumulation of the whole study area over the three‐year period were −129.39 mm and 60.49 mm, respectively. The mining area had a settlement value of over 80 mm over the three years. Significantly, the settlement rates of the tailings and active areas were −35 mm/a and −40 mm/a, respectively. Debris accumulation in the eastern portion of the tailings and active areas near the mountain was serious, with accumulation rates of 25 mm/a and 20 mm/a, respectively, and both had accumulation amounts of around 70 mm. For mine tailing pile areas with river flows, the pile locations and environmental restoration should be appropriately adjusted at a later stage. For gravel pile areas, regular cleaning should be carried out, especially around the mining site and at the tunnel entrances and exits, and long‐term deformation monitoring of these areas should be carried out to ensure safe operation of the mining site. The SBAS‐InSAR measurements were able to yield deformations with high accuracies over a wide area and cost less human and financial resources than the GNSS measurement method. Furthermore, the measurement results were more macroscopic, with great application value for surface subsidence monitoring in alpine areas.
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工程Synthetic Aperture Radar (SAR) Applications and Techniques
Rock Mechanics and Modeling · Cryospheric studies and observations
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