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Radar interferometry techniques for the study of ground subsidence phenomena: A review of practical issues through cases in Spain

机译:用于研究地面沉降现象的雷达干涉测量技术:通过西班牙案例回顾实际问题

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摘要

Subsidence related to multiple natural and human-induced processes affects an increasing number of areas worldwide. Although this phenomenon may involve surface deformation with 3D displacement components, negative vertical movement, either progressive or episodic, tends to dominate. Over the last decades, differential SAR interferometry (DInSAR) has become a very useful remote sensing tool for accurately measuring the spatial and temporal evolution of surface displacements over broad areas. This work discusses the main advantages and limitations of addressing active subsidence phenomena by means of DInSAR techniques from an end-user point of view. Special attention is paid to the spatial and temporal resolution, the precision of the measurements, and the usefulness of the data. The presented analysis is focused on DInSAR results exploitation of various ground subsidence phenomena (groundwater withdrawal, soil compaction, mining subsidence, evaporite dissolution subsidence, and volcanic deformation) with different displacement patterns in a selection of subsidence areas in Spain. Finally, a cost comparative study is performed for the different techniques applied.
机译:与多种自然和人为因素引起的沉陷影响着全世界越来越多的地区。尽管此现象可能涉及具有3D位移分量的表面变形,但负的垂直移动(渐进式或偶发性)往往占主导地位。在过去的几十年中,差分SAR干涉测量法(DInSAR)已成为一种非常有用的遥感工具,可以准确地测量大范围表面位移的时空变化。这项工作从最终用户的角度讨论了通过DInSAR技术解决主动沉降现象的主要优点和局限性。要特别注意空间和时间分辨率,测量的精度以及数据的实用性。本文的分析重点是在西班牙的一系列沉降区域中,以不同的位移模式对各种地面沉降现象(地下水抽取,土壤压实,采矿沉降,蒸发物溶解沉降和火山变形)进行DInSAR结果开发。最后,针对所应用的不同技术进行了成本比较研究。

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