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Application of InSAR to Subsidence Monitoring in the Geothermal Fields of Imperial Valley, California

机译:insar在加利福尼亚州帝国谷地热领域沉降监测的应用

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This is a preliminary report on a new project thatwill be initiated in the summer of 2006. We will be applying interferometric synthetic aperture radar (InSAR) to the monitoring of surface subsidence that may result from the increase of geothermal production over the next decade in the Imperial Valley of southern California. Compared with time-consuming and expensive land-based methods for detecting and mapping surface deformation, InSAR is a cost-effective technique that can assure semi-continuous monitoring of large areas. The SAR data are collected through remote sensing from spaceborne and airborne platforms. In this project we will collaborate with participants from Sandia National Laboratories, General Atomics Reconnaissance Systems, and San Diego State University. We will also collaborate closely with the geothermal industry operating the geothermal fields in Imperial Valley. We expect that our InSAR results will demonstrate economic viability, ease of application, and efficient feedback to the geothermal operators in their monitoring and mitigation efforts.
机译:这是一个关于在2006年夏天启动的新项目的初步报告。我们将施加干涉机械合成孔径雷达(INSAR),监测可能因未来十年的地热产量而导致的地热产量导致南加州帝国山谷。与用于检测和绘制表面变形的耗时和昂贵的陆基方法相比,Insar是一种经济高效的技术,可以确保大面积的半连续监测。通过遥感来自星载和机载平台来收集SAR数据。在这个项目中,我们将与桑迪亚国家实验室,一般原子侦察系统和圣地亚哥州立大学的参与者合作。我们还将与在帝国谷的地热田操作的地热行业密切合作。我们预计我们的Insar结果将展示经济可行性,易于应用,以及在其监测和缓解努力中对地热运营商的有效反馈。

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