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The Use of C-/X-Band Time-Gapped SAR Data and Geotechnical Models for the Study of Shanghai’s Ocean-Reclaimed Lands through the SBAS-DInSAR Technique

机译:利用SBAS-DInSAR技术研究C波段/ X波段时空SAR数据和岩土模型在上海海洋垦殖地研究中的应用

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In this work, we investigate the temporal evolution of ground deformation affecting the ocean-reclaimed lands of the Shanghai (China) megacity, from 2007 to 2016, by applying the Differential Synthetic Aperture Radar Interferometry (DInSAR) technique known as the Small BAseline Subset (SBAS) algorithm. For the analysis, we exploited two sets of non-time-overlapped synthetic aperture radar (SAR) data, acquired from 2007 to 2010, by the ASAR/ENVISAT (C-band) instrument, and from 2014 to 2016 by the X-band COSMO-SkyMed (CSK) sensors. The long time gap (of about three years) existing between the available C- and X-band datasets made the generation of unique displacement time-series more difficult. Nonetheless, this problem was successfully solved by benefiting from knowledge of time-dependent geotechnical models, which describe the temporal evolution of the expected deformation affecting Shanghai’s ocean-reclaimed platforms. The combined ENVISAT/CSK (vertical) deformation time-series were analyzed to gain insight into the future evolution of displacement signals within the investigated area. As an outcome, we find that ocean-reclaimed lands in Shanghai experienced, between 2007 and 2016, average cumulative (vertical) displacements extending down to 25 centimeters.
机译:在这项工作中,我们采用称为小BAseline子集的差分合成孔径雷达干涉测量(DInSAR)技术,研究了2007年至2016年影响上海(中国)特大城市的海洋垦殖场的地面变形的时间演变。 SBAS)算法。为了进行分析,我们利用了两组非时间重叠的合成孔径雷达(SAR)数据,这些数据分别是从2007年至2010年通过ASAR / ENVISAT(C波段)仪器以及从2014年至2016年通过X波段获得的COSMO-SkyMed(CSK)传感器。可用的C波段和X波段数据集之间存在较长的时间间隔(大约三年),这使得生成唯一位移时间序列更加困难。尽管如此,该问题仍然可以通过利用随时间变化的岩土模型知识而得以成功解决,该模型描述了影响上海海洋回收平台的预期形变的时间演变。分析了组合的ENVISAT / CSK(垂直)变形时间序列,以深入了解研究区域内位移信号的未来演变。结果,我们发现,在2007年至2016年之间,上海的海洋开垦土地经历了平均累积(垂直)位移向下延伸到25厘米的情况。

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