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Mapping of deflection caused due to hydrostatic pressure using Differential SAR Interferometry (DInSAR) on Bhakhra dam

机译:在Bhakhra水坝上使用差分SAR干涉测量法(DINSAR)引起的偏转引起的映射

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Microwave remote sensing is truly the most rapidly emerging field of satellite remote sensing today. In a very short span of time, it has found variety of applications in almost every field which had seen optical remote sensing dominance. This shows that its both state of the art and a versatile non-evasive remote sensing tool. It has added advantage of all-weather availability and penetration abilities which the optical remote sensing lacks. Hence can be easily used for areas and months with dense cloud cover. Of the many applications of SAR (Synthetic Aperture RADAR) or Microwave remote sensing is its ability to map and monitor land surface deformations shown by both natural and man-made features over a period, which helps as an early warning for many possible disastrous events like structural failures in dams. The technique involved is Differential SAR Interferometry or DInSAR. DInSAR involves a repeat pass configuration of SAR Interferometry with minimum baseline. The presence of any random motion on the surface or surface features on earth, tends to decorrelate the backscatter signals and add noise to phase difference. Small change due to surface movements, causes change in phase difference which is measured precisely and accurately by this technique. This study aims to measure the deflection that has come over a period of one year on the walls of Bhakhra Dam in Himachal Pradesh in India, due to the change in water levels and pressure exerted by it. Using DInSAR, the deflection was measured to be around 0.952cm from August 2017 to October 2017.
机译:微波遥感真的是今天最迅速的卫星遥感领域。在很短的时间内,它在几乎每个领域都发现了各种应用,这些应用程序已经看到了光学遥感的优势。这表明它的两个技术和多功能的非避免遥感工具。它额外有利于光学遥感缺乏的全天候可用性和穿透能力。因此,可以很容易地用于具有密集云盖的区域和数月。在SAR(合成孔径雷达)或微波遥感的许多应用中是它在一段时间内通过自然和人造特征映射和监测土地表面变形的能力,这有助于作为许多可能的灾难事件的预警水坝中的结构失败。所涉及的技术是差异的SAR干涉测量法或DINSAR。 Dinsar涉及具有最小基线的SAR干涉测量法的重复传递配置。在地球上的表面或表面特征上存在任何随机运动,倾向于使反向散射信号进行去相关并将噪声添加到相位差。由于表面移动,导致相位差的变化,通过该技术精确且准确地测量。本研究旨在衡量在印度马偕尔·普拉德什的Bhakhra水坝墙上的偏转,这是由于水平的变化和施加的压力。使用DINSAR,测量偏转从2017年8月到2017年10月约为9.52厘米。

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