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Land subsidence detection and analysis over Chongqing based on Sentinel-1A TS-InSAR

机译:基于Sentinel-1A TS-InSAR的重庆市地面沉降检测与分析

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Chongqing is the largest mountain city in the world and has suffered subsidence problems because of its rapid development. However, time series and wide range subsidence monitoring in Chongqing was lacking. In order to study the subsidence spatial distribution and subsidence temporal changes in Chongqing, this paper employed the Time-Series Interferometry Synthetic Aperture Radar (TS-InSAR) and Sentinel-1A images acquired between 2017 and 2019 to derive subsidence in Chongqing. And used POD Precise Orbit Ephemerides and ASTER GDEM V2 to remove the phase jump caused by spectral decorrelation between bursts. Results show that: Chongqing has four main subsidence areas: two subsidence bands (P1 and P2 areas) through the city from north to south, and two subsidence areas distributed in the Nanan district (P3 area) and Jiangbei District (P4 area). Among them, the maximum deformation rate has reached -22.45 mm/year, and the maximum deformation of land subsidence has reached -59.50 mm. Besides, due to the complex of the mountain city's geological environment, it is expected that the subsidence difference for the Chongqing city is getting bigger and bigger.
机译:重庆是世界上最大的山区城市,由于其快速发展而遭受了沉降问题。但是,重庆缺乏时间序列和大范围的沉降监测。为了研究重庆市的沉降空间分布和沉降时空变化,本文采用时间序列干涉合成孔径雷达(TS-InSAR)和Sentinel-1A图像在2017年至2019年之间获取了重庆的沉降。并使用POD精密轨道星历表和ASTER GDEM V2消除了突发之间频谱去相关引起的相位跳变。结果表明:重庆市有四个主要沉降区:从北向南穿过城市的两个沉降带(P1和P2区),以及分布在南安区(P3区)和江北区(P4区)的两个沉降区。其中,最大变形速率达到-22.45 mm /年,地面沉降的最大变形达到-59.50 mm。此外,由于山区城市的地质环境复杂,预计重庆市的沉降差异会越来越大。

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