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Locating leaks from water supply pipes using the passive acoustic method

机译:使用无源声学方法定位供水管道的泄漏

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摘要

Acoustic techniques for locating water leaks make use of the noise created by water leaking from a pipe; most require contact with the pipe network. This paper reports on the location of leaks in urban environments using acoustic loggers at the ground surface itself, remote from the pipe. An increase in the root-mean-squared (RMS) acoustic signal amplitude of ~7.5 to ~12.5dB above background was detected above leaks from both plastic and metal pipes. The peak frequency of the acoustic signal was ~750 Hz above a metal pipe, decreasing to ~400 Hz at a distance of 1 m. Plastic pipes had a lower source leak frequency (below 700 Hz) and dropped to ~350 Hz at 1 m. Background noise was predominantly below 150 Hz, which was suppressed using a high pass filter. The RMS signal amplitude directly above the leak decreased with increasing pipe depth, but was detectable for all pipe depths (0.4-1.0 m) covered in this work. An array of acoustic sensors at the surface can successfully detect and locate leaks without direct access to the pipe network, providing a robust and rapid leak location method.
机译:定位漏水的声学技术利用了从管道漏水所产生的噪音。大多数需要与管网联系。本文使用远离管道的地面本身的声波记录仪报告了城市环境中的泄漏位置。在塑料和金属管道的泄漏上方,均检测到声信号的均方根(RMS)振幅增加了约7.5〜12.5dB。声音信号的峰值频率在金属管上方约750 Hz,在1 m处下降至约400 Hz。塑料管的源泄漏频率较低(低于700 Hz),并在1 m处降至〜350 Hz。背景噪声主要在150 Hz以下,使用高通滤波器可以将其抑制。泄漏正上方的RMS信号幅度随管深的增加而减小,但是在这项工作涵盖的所有管深(0.4-1.0 m)上都可以检测到。在地面上的一系列声传感器可以成功检测并定位泄漏,而无需直接进入管网,从而提供了一种强大而快速的泄漏定位方法。

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