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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Early soil consolidation from magnetic extensometers and full resolution SAR interferometry over highly decorrelated reclaimed lands
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Early soil consolidation from magnetic extensometers and full resolution SAR interferometry over highly decorrelated reclaimed lands

机译:磁宽松的早期土壤固结和全分辨率SAR干涉测量高度去相关的地区

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Reclaimed lands account for a large portion of the developable territories in Hong Kong. Towards better construction planning for the follow-up civil works, stability monitoring is usually required at these artificial sites. The Synthetic Aperture Radar Interferometry (InSAR) technique can provide bi-weekly updates of high resolution (up to 1 m) and high precision (millimeter level) ground motion maps at low costs, which overcomes the limitations of ground-based instruments. However, rapid settlement during the early stage of soil consolidation can result in significant temporal decorrelation to phase signals and impact InSAR detection, especially over newly reclaimed areas. Here, we give a first demonstration on how the introduction of in-situ extensometer measurements can help improve InSAR capabilities for signal recovery of the early consolidation process. We integrate persistent scatterers (PS) and distributed scatterers (DS) in our processing chain to establish a two-tier monitoring network. Magnetic extensometers are used to estimate local consolidation models, which are then utilized to replace the linear part in the conventional functional phase model. For nonlinear deformation, both hyperbolic and exponential models were considered. The proposed method was applied to 61 TerraSAR-X images covering the Penny's Bay Reclamation Stage 2 (PBR2) in Hong Kong. The consolidation history of the new reclamation site has been successfully extracted, with cumulative subsidence exceeding 1.6 m between May 2008 and Dec. 2011. Approximately 84% of the settlement of the non-dredged region was found to be from compaction of underlying soft marine deposits, not the filling materials. In addition to highlighting the spatiotemporal characteristics of the deformation, InSAR also helps reveal the compaction evolution of the underlying deposit. The results benefit our understanding of the early consolidation process in PBR2 and inform extra reinforcement plans if necessary.
机译:回收的土地占香港的大部分开发领土的土地。为了更好的建设规划,对后续民用作品,这些人工地点通常需要稳定监测。合成孔径雷达干涉测量法(INSAR)技术可以以低成本提供高分辨率(最多1米)和高精度(毫米)地面运动地图的双周更新,这克服了基于地面仪器的局限性。然而,在土壤固结的早期阶段的快速解决可能导致相位信号的显着的时间去相关性,并影响令人震惊的检测,特别是在新开垦的区域。在这里,我们首次说明了原位扩展器测量的引入如何有助于提高INSAR的信号恢复的令人置信能力。我们将持久散射器(PS)和分布式散射仪(DS)集成在我们的处理链中以建立双层监控网络。磁突出器用于估计局部整合模型,然后用于替换传统功能相位模型中的线性部分。对于非线性变形,考虑了双曲线和指数模型。该提出的方法应用于覆盖香港一分钱的湾接收阶段2(PBR2)的61个Terrasar-X图像。新的填海工厂的整合历史已成功提取,2008年5月至2011年12月期间累计沉降超过1.6米。发现约84%的非疏浚地区定居点是潜在的软海洋存款的压实,不是填充材料。除了强调变形的时空特征外,Insar还有助于揭示潜在矿床的压实演变。结果有利于我们对PBR2的早期合并过程的理解,并在必要时通知额外的加强计划。

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