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SURFACE DEFORMATION FROM MULTI-TEMPORAL INSAR METHODS WITH ALOS PALSAR IN PINGTUNG PLAIN

机译:屏东平原地区多时相InSAR方法与ALOS PALSAR的表面变形

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Pingtung Plain is suffering severe subsidence caused by groundwater withdrawal. Extracting groundwater has caused large-scale land subsidence in Pingtung Plain, with the largest cumulative subsidence being 339 cm over 1972-2011. The subsidence has caused that the elevation in coast area is lower than sea level. How to effective monitor land subsidence becomes a major issue in Taiwan. Interferometry synthetic aperture radar (INSAR) technique has proven a useful way for detecting ground displacement. This technique can not only apply to some geohazards such as volcanoes, landslides and land subsidence but also offer ground information with high spatial resolution and centimeter-scale accuracy. In this study, We utilize two Multi-temporal InSAR (MT-InSAR) methods including Temporarily Coherent Point InSAR (TCPInSAR) and Persistent Scatterer InSAR(StaMPS) with 18 ALOS PALSAR acquisitions from 2007 to 2011 to derive land deformation, respectively. Results of this study show that the subsidence region located at Linpien River's two-side area near coast area in Pingtung Plain and demonstrate the effectiveness of TCPInSAR and StaMPS in monitoring land subsidence.
机译:屏东平原因地下水抽取而遭受沉陷。开采地下水导致屏东平原发生大规模地面沉降,在1972-2011年期间,最大的地面沉降为339 cm。沉降导致沿海地区的海拔低于海平面。如何有效地监测地面沉降已成为台湾的主要问题。干涉测量合成孔径雷达(INSAR)技术已被证明是检测地面位移的一种有用方法。该技术不仅可以应用于火山,滑坡和地面沉降等地质灾害,而且还可以提供具有高空间分辨率和厘米级精度的地面信息。在这项研究中,我们利用两种多时相InSAR(MT-InSAR)方法(包括2007年至2011年间的18次ALOS PALSAR采集的临时相干点InSAR(TCPInSAR)和持久散射InSAR(StaMPS))得出土地变形。研究结果表明,位于屏东平原沿海地区临pi河两岸的沉降区域,证明了TCPInSAR和StaMPS在监测地面沉降方面的有效性。

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