利用卫星雷达干涉测量法从空间监测堤坝:RemoDams项目的案例研究

A. M. Ruiz-Armenteros, J. M. Delgado-Blasco, M. Bakon, Francisco Lamas-Fernández, Miguel Marchamalo-Sacristán, A. J. Gil-Cruz, J. Papčo, Beatriz González-Rodrigo, M. Lazecký, D. Perissin, J. J. Sousa
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摘要

采用不同岩土/结构传感器和经典大地测量技术(包括全球导航卫星系统)的监测程序是建立这些控制措施的大多数水坝的通常做法。其他地理技术,如TLS、GB-SAR和多时相InSAR (MT-InSAR),可以确定3D位移,其优势是覆盖了大量控制点。特别是,与其他技术相比,MT-InSAR技术能够以非常低的成本检测位移,并且不需要现场工作或安装特殊设备。此外,当由于缺乏资金、资源或其他原因而没有实施监测计划时,它们可以提供有关大坝稳定性的单一信息来源。这些技术提供了1毫米/年的测量不确定度,解释了该地区存在的相干反射器的干涉相位的时间序列,称为持久散射体。在这项工作中,我们介绍了MT-InSAR技术的适应和应用,以监测堤防大坝,获得垂直位移,表征其固结率,并允许识别水库周围的潜在问题,需要进一步的现场调查。这项研究是ReMoDams项目的一部分,该项目是西班牙的一项研究计划,旨在利用卫星雷达干涉测量技术从太空监测大坝结构的稳定性。
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Monitoring embankment dams from space using satellite radar interferometry: Case studies from RemoDams project
The monitoring procedures with different geotechnical/structural sensors and classical geodetic techniques including GNSS are the usual practices in most of the dams where these controls are established. Other geomatic techniques such as TLS, GB-SAR and multi-temporal InSAR (MT-InSAR), allow the determination of 3D displacements with the advantage of covering a large number of control points. In particular, MT-InSAR techniques enable the detection of displacements at a very low cost compared to other techniques, and without the need for field work or the installation of special equipment. In addition, they can provide a single source of information on the stability of the dam when monitoring programs are not carried out due to lack of funding, resources or other reasons. These techniques provide measurement uncertainties of the order of 1 mm/year, interpreting time series of interferometric phases of coherent reflectors present in the area, called Persistent Scatterers. In this work, we present the adaptation and application of MT-InSAR techniques to monitor embankment dams, obtaining vertical displacements, characterizing their consolidation rates, and allowing the identification of potential problems surrounding the reservoir that require further field investigation. This study is part of the ReMoDams project, a Spanish research initiative developed for monitoring dam structural stability from space using satellite radar interferometry.
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