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Effectiveness of distributed temperature measurements for early detection of piping in river embankments

机译:分布式温度测量对河堤中管道早期检测的有效性

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Internal erosion is the cause of a significant percentage of failure and incidents involving both dams and river embankments in many countries. In the past 20?years the use of fibre-optic Distributed Temperature Sensing (DTS) in dams has proved to be an effective tool for the detection of leakages and internal erosion. This work investigates the effectiveness of DTS for dike monitoring, focusing on the early detection of backward erosion piping, a mechanism that affects the foundation layer of structures resting on permeable, sandy soils. The paper presents data from a piping test performed on a large-scale experimental dike equipped with a DTS system together with a large number of accompanying sensors. The effect of seepage and piping on the temperature field is analysed, eventually identifying the processes that cause the onset of thermal anomalies around piping channels and thus enable their early detection. Making use of dimensional analysis, the factors that influence this thermal response of a dike foundation are identified. Finally some tools are provided that can be helpful for the design of monitoring systems and for the interpretation of temperature data.
机译:在许多国家,内部侵蚀是导致大量故障和事故的原因,涉及大坝和河堤。在过去的20年中,事实证明,在大坝中使用光纤分布式温度传感(DTS)是检测泄漏和内部侵蚀的有效工具。这项工作调查了DTS在堤防监控方面的有效性,重点是早期检测向后侵蚀管道,这种机制会影响位于可渗透的砂质土壤上的结构基础层。本文介绍了在配备DTS系统的大型实验堤坝上进行的管道测试以及大量附带传感器的数据。分析了渗流和管道对温度场的影响,最终确定了导致管道通道周围出现热异常的过程,从而可以对其进行早期检测。利用尺寸分析,确定影响堤坝基础热响应的因素。最后,提供了一些工具,这些工具可用于监视系统的设计和温度数据的解释。

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