Experimental investigation into the acoustic characteristics of the ground surface response due to leakage in buried water-filled pipelines

Shuan Yan, Hongyong Yuan, Yan Gao, Lizheng Deng, Boao Jin, Yifan Ma
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引用次数: 1

Abstract

The research based on the acoustic transmission characteristics of pipelines has been widely used. However, little work has been done to detect leakage signals of buried pipelines on the surface. In this paper, the sensor array on the surface is used to detect the leakage signal of buried water-filled pipeline. The acoustic characteristics of leakage noise measured under controlled conditions are mainly studied, including different axes of accelerometer, different height of soil cover, different horizontal spacing, different pipe pressure and so on. It is found that the signal from x-axis and y-axis of the accelerometer parallel to the ground surface are more obvious. On the contrary, the effect of z-axis detection perpendicular to the ground plane is relatively weak. The leakage signal decreases with the overlying soil height increased, and the attenuation intensity decreases from strong to weak. The higher the pipe pressure is, the more obvious the leakage signal is. The closer to the leakage point on the ground surface, the stronger the energy of the leakage signal is. In this paper, geographic information system (GIS) is used to calibrate the relative position of the detection array in advance, and the preliminary measurement of the leakage signal of buried pipeline is carried out. The experimental results show that it is feasible to detect the leakage of buried water-filled pipeline through the surface. In the future, further research work will be carried out to study the measuring range of surface detection and the detectable range of leakage flow.
埋地充水管道泄漏时地表响应声学特性的实验研究
基于管道声传输特性的研究得到了广泛的应用。然而,地面埋地管道泄漏信号的检测工作却很少。本文采用表面传感器阵列对埋地充水管道的泄漏信号进行检测。主要研究了不同加速度计轴向、不同土壤覆盖高度、不同水平间距、不同管道压力等受控条件下测得的泄漏噪声声学特性。研究发现,平行于地面的加速度计的x轴和y轴的信号更为明显。相反,垂直于地平面的z轴探测效果相对较弱。渗漏信号随上覆土层高度的增加而减小,衰减强度由强到弱。管道压力越高,泄漏信号越明显。离地面的泄漏点越近,泄漏信号的能量越强。本文利用地理信息系统(GIS)提前标定探测阵列的相对位置,对埋地管道泄漏信号进行初步测量。实验结果表明,通过地表探测埋地充水管道泄漏是可行的。在未来的研究工作中,将进一步研究表面检测的测量范围和泄漏流量的检测范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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