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Multitemporal Sentinel-1SAR Interferometry for Surface Deformation Monitoring near High Dam in Aswan, Egypt

机译:用于埃及阿斯旺高坝附近表面变形监测的多时相Sentinel-1SAR干涉法

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The area in the downstream of Aswan High Dam is subjected to many factors that may cause a deformation on the earth surface. The existence of Lake Naser, the hesitated water table and its bad effect and the tectonic activities increase the possibility of surface elevation changes. In this study, Multitemporal Synthetic Aperture Radar (SAR) images and Differential SAR Interferometry (DinSAR) technique were used to derive terrain deformation measurements over the area near Aswan high dam. The data were processed using SNAP, Sentinel Application Platform and a two-pass interferometry technique with the help of the Shuttle Radar Topography Mission (SRTM) is performed. Based on the results, all interferograms performed have high coherence while the pixels represent water surface had a low coherence value. The surface elevation changes range between -6.5 cm and +2.4 cm in 2017, while in 2018 it ranges between -5.2 cm and +6.6 cm. it is recommended to use a longer observation time period with three-pass interferogram technique to give the independence of the external low-resolution DEM and map the annual rates of movement.
机译:阿斯旺高坝下游的区域受到许多因素的影响,这些因素可能会导致地表变形。纳赛尔湖的存在,迟疑的地下水位及其不良影响以及构造活动增加了地表高度变化的可能性。在这项研究中,多时相合成孔径雷达(SAR)图像和差分SAR干涉测量(DinSAR)技术被用于得出阿斯旺高坝附近地区的地形变形测量值。数据使用SNAP,Sentinel应用程序平台和借助穿梭雷达地形图任务(SRTM)进行的两次通过干涉技术进行了处理。根据结果​​,执行的所有干涉图均具有较高的相干性,而代表水表面的像素具有较低的相干性值。 2017年表面高度变化范围在-6.5厘米至+2.4厘米之间,而2018年则在-5.2厘米至+6.6厘米之间。建议使用更长的观察时间和三遍干涉图技术,以提供外部低分辨率DEM的独立性并绘制年度运动速率图。

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