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Remote pipeline assessment and condition monitoring using low-frequency axisymmetric waves: a theoretical study of torsional wave motion

机译:低频轴对称波的远程管道评估和状态监测:扭转波动动的理论研究

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Waves that propagate at low frequencies in buried pipes are of considerable interest in a variety of practical scenarios, for example leak detection, remote pipe detection, and pipeline condition assessment and monitoring. Particularly useful are the n=0, or axisymmetric, modes in which there is no displacement (or pressure) variation over the pipe cross section. Previous work has focused on two of the three axisymmetric wavetypes that can propagate: the s=1, fluid-dominated wave; and the s=2, shell-dominated wave. In this paper, the third axisymmetric wavetype, the s=0 torsional wave, is studied. Whilst there is a large body of research devoted to the study of torsional waves and their use for defect detection in pipes at ultrasonic frequencies, little is known about their behaviour and possible exploitation at lower frequencies. Here, a low-frequency analytical dispersion relationship is derived for the torsional wavenumber for a buried pipe from which both the wavespeed and wave attenuation can be obtained. How the torsional waves subsequently radiate to the ground surface is then investigated, with analytical expressions being presented for the ground surface displacement above the pipe resulting from torsional wave motion within the pipe wall. Example results are presented and, finally, how such waves might be exploited in practice is discussed.
机译:在埋地管道的低频下传播的波对各种实际情况具有相当大的兴趣,例如泄漏检测,远程管道检测和管道条件评估和监控。特别有用的是n = 0,或轴对称,模式在管横截面上没有位移(或压力)变化的模式。以前的工作集中在两个可以传播的三个轴对称波纹中:S = 1,流体主导的波;和S = 2,壳主主导的波。本文研究了第三轴对称波纹,S = 0扭转波。虽然有大量的研究致力于研究扭转波的研究及其用于超声波管道管道中的缺陷检测的研究,但在其行为和可能的较低频率下可能的利用几乎是知之甚少。这里,为掩埋管道的扭转波数导出低频分析分散关系,从中可以获得波浪和波衰减。然后研究了如何将扭转波随后辐射到地面,分析表达式用于管壁内的扭转波动波动的管道上方的地面位移。讨论了示例结果,最后,讨论了如何在实践中开发这种波。

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