An Investigation into the Physical Mechanisms of Leak Noise Propagation in Buried Plastic Water Pipes: A Wave Dynamic Stiffness Approach

Acoustics Pub Date : 2024-02-01 DOI:10.3390/acoustics6010009
O. Scussel, M. Brennan, J. Muggleton, F. C. L. de Almeida, Phillip F. Joseph, Yan Gao
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Abstract

In buried plastic water pipes, the predominantly fluid-borne wave is of particular interest, as it plays a key role in the propagation of leak noise. Consequently, it has been studied by several researchers to determine the speed of wave propagation and its attenuation with distance. These features are encapsulated in the wavenumber. By examining the factors that govern the behaviour of this wavenumber, this paper presents an in-depth examination of the physical mechanisms of leak noise propagation. To achieve this, an alternative physics-based model for the wavenumber is developed, using the concept of the wave dynamic stiffnesses of the individual components within the pipe system, i.e., the water in the pipe, the pipe wall, and the surrounding medium. This facilitates a clear interpretation of the wave behaviour in terms of the physical properties of the system, especially the interface between the pipe and the surrounding medium, which can have a profound influence on the leakage of acoustic energy from the pipe wall into the external medium. Three systems with different types of surrounding medium are studied, and the factors that govern leak noise propagation in each case are identified. Experimental results on two distinct test sites from different parts of the world are provided to validate the approach using leak noise as an excitation mechanism.
对埋地塑料水管泄漏噪声传播物理机制的研究:波动力刚度方法
在埋地塑料水管中,主要是流体传播的波特别引人关注,因为它在泄漏噪声的传播中起着关键作用。因此,一些研究人员对其进行了研究,以确定波的传播速度及其随距离的衰减。这些特征都包含在波长中。通过研究支配该波长行为的因素,本文对泄漏噪声传播的物理机制进行了深入研究。为此,本文使用管道系统内各个组件(即管道中的水、管壁和周围介质)的波动力刚度概念,为波纹数开发了一个基于物理的替代模型。这有助于根据系统的物理特性,尤其是管道与周围介质之间的界面,对波浪行为做出清晰的解释,因为界面会对声能从管壁泄漏到外部介质产生深远的影响。本文研究了三种具有不同类型周围介质的系统,并确定了每种情况下影响泄漏噪声传播的因素。在世界不同地区的两个不同试验场进行的实验结果验证了将泄漏噪声作为激励机制的方法。
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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