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Perturbation mapping of water leak in buried water pipes via laboratory validation experiments with high-frequency ground penetrating radar (GPR)

机译:通过高频探地雷达(GPR)的实验室验证实验对地下水管中的漏水进行扰动映射

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This paper studies the perturbation patterns of GPR images as a tool for water leakage detection in buried water pipes with laboratory experiments. Different perturbations patterns on GPR signals due to a water leak of metallic and PVC pipes buried in a sand box, were mapped and studied with controlled water injection and leak volume, as well as a fixed leak position in the pipes. These perturbation patterns of signal strength include the tale-tell signs of a central leak point and propagation of the radial wetting front vortex centered around the leak point at different injection times. These patterns, compared to the no leak dry condition, were interpreted with the conventional principles of dielectric contrast and reflection coefficients, and the associated reflection and absorption mechanisms. It is believed that this set of data will serve as an image matching fingerprint to identify and map water leaks in the field. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过实验室实验研究了GPR图像的扰动模式,将其作为探测地下水管漏水的工具。通过控制下注水量和泄漏量,以及管道中固定的泄漏位置,绘制并研究了由于埋在沙盒中的金属和PVC管的漏水而导致的GPR信号的不同扰动模式。这些信号强度的扰动模式包括中心泄漏点的叙事迹象,以及在不同注入时间围绕泄漏点为中心的径向润湿前涡流的传播。与无泄漏干燥条件相比,这些图案是用介电对比度和反射系数的常规原理以及相关的反射和吸收机理来解释的。可以相信,这组数据将用作图像匹配指纹,以识别并绘制野外的漏水图。 (C)2015 Elsevier Ltd.保留所有权利。

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