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Monitoring reclaimed lands subsidence in Hong Kong with InSAR technique by persistent and distributed scatterers

机译:使用InSAR技术通过持久性和分散性散射体监测香港的开垦土地沉降

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摘要

This paper introduced an advanced SBAS algorithm to investigate the subsidence time-series of reclaimed lands. A new method for fusing persistent and distributed scatterers in time-series images was presented in this algorithm. Moreover, nonlocal filter based on DS was employed for the interferometric phase which improved results quality with high spatial resolution. The reclaimed lands near Hong Kong Science Park and Hong Kong Disneyland (HKD) were selected for the investigation by high-resolution TerraSAR-X images. The reclaimed lands area was classified into three types labeled as undeveloped area, developing area and developed area. The results showed that: Undeveloped area had significant subsidence due to soft soil consolidation, especially in HKD's reclaimed lands with deformation rate up to -459 mm/year; developing and developed area also had subsidence phenomenon due to building pressure caused by mass constructions of infrastructure. In particular, in the preliminary stage after construction, there was a dramatic subsidence trend, which easily threatened the security and stability of infrastructure facilities such as underground pipes and drainage system.
机译:本文介绍了一种先进的SBAS算法来研究开垦土地的沉降时间序列。该算法提出了一种在时间序列图像中融合持久性和分散性散射体的新方法。此外,在干涉测量阶段采用了基于DS的非局部滤波器,从而以较高的空间分辨率提高了结果质量。通过高分辨率TerraSAR-X图像选择了香港科学园和香港迪士尼乐园(HKD)附近的开垦土地。开垦土地面积分为未开发区,开发区和已开发区三种。结果表明:欠发达地区由于软土固结而下沉,特别是在HKD填海土地上,变形率高达-459 mm / year;发达和发达地区由于基础设施的大规模建设而产生的建筑压力也导致了沉降现象。特别是在施工后的初期阶段,存在剧烈的沉降趋势,很容易威胁到地下管道和排水系统等基础设施的安全性和稳定性。

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