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Condition Assessment of Water Pipelines Using a Modified Layer-Peeling Method

机译:改进的层剥法对输水管道进行状态评估

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Pipe wall condition assessment is critical for targeted maintenance and failure prevention in water distribution systems. This paper proposes a novel approach for condition assessment of water pipelines by adapting the layer-peeling method. This method was previously developed for, and applied to, tubular musical instruments. In the proposed approach, the impulse response function (IRF) of a pipeline is obtained using measured pressure traces resulting from transient events. The original layer-peeling method is further developed for application to water transmission pipelines by (1)modifying the end boundary from being an acoustic source tube to a closed valve; (2)incorporating the effects of unsteady friction and pipe wall viscoelasticity into the layer-peeling algorithm; and (3)incorporating frequency-dependent wave reflections and transmissions. Using the IRF and the modified layer-peeling method, the impedance of a pipeline can be estimated section by section from downstream (the dead end) to upstream of the pipeline. The distribution of wave speeds and wall thickness can then be determined. In this study, numerical verifications were conducted using the pipeline pressure responses simulated by the method of characteristics (MOC). The deteriorated pipe sections (sections with changes in impedance) were accurately detected using the new approach. Experimental verification of the result was conducted on a laboratory copper pipeline. A short section of pipe with a thinner wall thickness was successfully detected. (C) 2018 American Society of Civil Engineers.
机译:管壁状况评估对于水分配系统的目标维护和故障预防至关重要。本文提出了一种适用于输水管道状态评估的新方法,即采用分层剥离方法。该方法以前是为管状乐器开发的,并已应用于管状乐器。在所提出的方法中,使用由瞬态事件产生的测得的压力轨迹来获得管道的脉冲响应函数(IRF)。通过以下方法进一步发展原始的层剥离方法,以应用于输水管道:(1)将端边界从作为声源管的端部修改为关闭的阀; (2)将非定常摩擦和管壁粘弹性的影响纳入层剥离算法中; (3)结合频率相关的波反射和透射。使用IRF和改进的层剥离方法,可以从管道的下游(死端)到上游逐段估算管道的阻抗。然后可以确定波速和壁厚的分布。在这项研究中,使用特性方法(MOC)模拟的管道压力响应进行了数值验证。使用新方法可以准确检测出变质的管道截面(阻抗变化的截面)。在实验室铜管上进行了结果的实验​​验证。已成功检测到壁厚较薄的短管段。 (C)2018美国土木工程师学会。

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