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Monitoring of the soil moisture regime of an earth-filled dam by means of electrical resistance tomography, close range photogrammetry, and thermal imaging

机译:通过电阻断层扫描,近距离摄影测量和热成像监测土地填充水坝的土壤湿度制度

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摘要

Small earthen dams usually lack a detailed monitoring system that would provide high-resolution data concerning changes in seepage flow. Geophysical methods and remote sensing are useful techniques for non-destructive and non-invasive investigation of subsurface processes. We have utilized a combination of electrical resistivity tomography (ERT), close range photogrammetry, and unmanned aerial vehicle (UAV) thermal imaging techniques to detect specific superficial and internal structures of a historical earth-filled dam. Longitudinal and transversal profiles of a typical fishpond dam in the Czech Republic were measured. The dam was constructed during the fifteenth century, but has since gone through some minor reconstruction. The aims of the applied geophysical methods are to detect and localize the boundary of the dam foundation, new earth material from reconstruction, the cone of water depression, the reservoir's outlet location, potential internal erosion, cavities, and heterogeneity in water content pattern and any other anomalies. The primary results show that ERT is suitable to detect dam stratification and large anomalies. The UAV monitoring system provided reliable data for a surface temperature distribution map which corresponded well to topsoil water content and electrical resistivity.
机译:小型土坝通常缺乏详细的监控系统,可以提供关于渗流流的变化的高分辨率数据。地球物理方法和遥感是对地下过程的非破坏性和非侵入性调查的有用技术。我们利用电阻率断层扫描(ERT),近距离摄影测量和无人机(UAV)热成像技术的组合,以检测历史填充大坝的特定浅表和内部结构。测量了捷克共和国典型的鱼塘大坝的纵向和横向剖面。大坝是在十五世纪建造的,但经历了一些次要的重建。应用地球物理方法的目的是检测和定位大坝基金会边界,从重建,水抑郁锥,水库的锥体,潜在的内部侵蚀,空腔,水含量模式的外态和任何其他异常。主要结果表明,ERT适用于检测坝分层和大异常。 UAV监测系统提供了表面温度分布图的可靠数据,其对应于表土水含量和电阻率。

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