首页> 外文期刊>Remote Sensing >Ground Deformations around the Toktogul Reservoir, Kyrgyzstan, from Envisat ASAR and Sentinel-1 Data—A Case Study about the Impact of Atmospheric Corrections on InSAR Time Series
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Ground Deformations around the Toktogul Reservoir, Kyrgyzstan, from Envisat ASAR and Sentinel-1 Data—A Case Study about the Impact of Atmospheric Corrections on InSAR Time Series

机译:来自Envisat ASAR和Sentinel-1数据的吉尔吉斯斯坦Toktogul水库周围的地面变形-大气校正对InSAR时间序列的影响的案例研究

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We present ground deformations in response to water level variations at the Toktogul Reservoir, located in Kyrgyzstan, Central Asia. Ground deformations were measured by Envisat Advanced Synthetic Aperture Radar (ASAR) and Sentinel-1 Differential Interferometric Synthetic Aperture Radar (DInSAR) imagery covering the time periods 2004–2009 and 2014–2016, respectively. The net reservoir water level, as measured by satellite radar altimetry, decreased approximately 60 m (~13.5 km 3 ) from 2004–2009, whereas, for 2014–2016, the net water level increased by approximately 51 m (~11.2 km 3 ). The individual Small BAseline Subset (SBAS) interferograms were heavily influenced by atmospheric effects that needed to be minimized prior to the time-series analysis. We tested several approaches including corrections based on global numerical weather model data, such as the European Centre for Medium-RangeWeather Forecasts (ECMWF) operational forecast data, the ERA-5 reanalysis, and the ERA-Interim reanalysis, as well as phase-based methods, such as calculating a simple linear dependency on the elevation or the more sophisticated power-law approach. Our findings suggest that, for the high-mountain Toktogul area, the power-law correction performs the best. Envisat descending time series for the period of water recession reveal mean line-of-sight (LOS) uplift rates of 7.8 mm/yr on the northern shore of the Toktogul Reservoir close to the Toktogul city area. For the same area, Sentinel-1 ascending and descending time series consistently show a subsidence behaviour due to the replenishing of the water reservoir, which includes intra-annual LOS variations on the order of 30mm. A decomposition of the LOS deformation rates of both Sentinel-1 orbits revealed mean vertical subsidence rates of 25 mm/yr for the common time period of March 2015–November 2016, which is in very good agreement with the results derived from elastic modelling based on the TEA12 Earth model.
机译:在中亚吉尔吉斯斯坦的托克托古尔水库,我们提出了响应水位变化的地面变形。地面变形分别通过Envisat先进合成孔径雷达(ASAR)和Sentinel-1差分干涉合成孔径雷达(DInSAR)图像测量,覆盖时间分别为2004-2009和2014-2016。通过卫星雷达测高仪测得的水库净水位从2004-2009年下降了约60 m(〜13.5 km 3),而在2014-2016年,净水位却增加了约51 m(〜11.2 km 3) 。各个小型BAseline子集(SBAS)干涉图受大气影响的严重影响,需要在时间序列分析之前将其最小化。我们测试了几种方法,包括基于全球数值天气模型数据的更正,例如欧洲中距离天气预报中心(ECMWF)的运行预报数据,ERA-5重新分析和ERA-临时重新分析以及基于阶段的方法方法,例如计算与高程的简单线性相关性或更复杂的幂律方法。我们的发现表明,对于高山区的托克托古尔地区,幂律校正的效果最佳。 Envisat在水衰退期的下降时间序列显示,Toktogul水库北岸靠近Toktogul市区的平均视线(LOS)上升速率为7.8 mm / yr。对于同一区域,由于水库的补充,Sentinel-1的上升和下降时间序列始终显示出沉降行为,其中包括年内LOS变化约30mm。对两个Sentinel-1轨道的LOS变形率进行分解后,发现在2015年3月至2016年11月的共同时间内,平均垂直沉降速率为25 mm / yr,这与基于弹性建模的结果非常吻合。 TEA12地球模型。

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