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CHARACTERIZATION OF IN-PIPE ACOUSTIC WAVE FOR WATER LEAK DETECTION

机译:管道内声波的水泄漏检测特性

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This paper presents experimental observations on the characteristics of the acoustic signal propagation and attenuation inside water-filled pipes. An acoustic source (exciter) is mounted on the internal pipe wall, at a fixed location, and produces a tonal sound to simulate a leak noise with controlled frequency and amplitude, under different flow conditions. A hydrophone is aligned with the pipe centerline and can be re-positioned to capture the acoustic signal at different locations. Results showed that the wave attenuation depends on the source frequency and the line pressure. High frequency signals get attenuated more with increasing distance from the source. The optimum location to place the hydrophone for capturing the acoustic signal is not at the vicinity of source location. The optimum location also depends on the frequency and line pressure. It was also observed that the attenuation of the acoustic waves is higher in more flexible pipes like PVC ones.
机译:本文介绍了对注水管道内部声信号传播和衰减特性的实验观察。声源(激励器)安装在内部管道壁上的固定位置,并产生音调,以模拟在不同流量条件下具有受控的频率和幅度的泄漏噪声。水听器与管道中心线对齐,可以重新放置以在不同位置捕获声音信号。结果表明,波衰减取决于震源频率和管路压力。高频信号随着距信号源距离的增加而衰减更大。放置水听器以捕获声音信号的最佳位置不在源位置附近。最佳位置还取决于频率和管路压力。还观察到,在诸如PVC的更挠性的管中,声波的衰减更高。

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