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Transient frequency response based leak detection in water supply pipeline systems with branched and looped junctions

机译:具有分支和环形连接的供水管道系统中基于瞬态频率响应的泄漏检测

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摘要

The transient frequency response (TFR) method has been widely developed and applied in the literature to identify and detect potential defects such as leakage and blockage in water supply pipe systems. This type of method was found to be efficient, economic and non-intrusive for pipeline condition assessment and diagnosis, but its applications so far are mainly limited to single and simple pipeline systems. This paper aims to extend the TFR-based leak detection method to relatively more complex pipeline connection situations. The branched and looped pipe junctions are firstly investigated for their influences to the system TFR, so that their effects can be characterized and separated from the effect of other components and potential leakage defects in the system. The leak-induced patterns of transient responses are derived analytically using the transfer matrix method for systems with different pipe junctions, which thereafter are used for the analysis of pipe leakage conditions in the system. The developed method is validated through different numerical experiments in this study. Based on the analytical analysis and numerical results, the applicability and accuracy as well as the limitations of the developed TFR-based leak detection method are discussed for practical applications in the paper.
机译:瞬态频率响应(TFR)方法已得到广泛开发,并已在文献中得到应用,以识别和检测供水管道系统中的潜在缺陷,例如泄漏和堵塞。人们发现这种方法对于管道状况的评估和诊断是高效,经济和非侵入式的,但是到目前为止,其应用主要限于单个和简单的管道系统。本文旨在将基于TFR的泄漏检测方法扩展到相对复杂的管道连接情况。首先研究分支和环状管道连接点对系统TFR的影响,以便可以将其影响特征化,并与系统中其他组件的影响和潜在的泄漏缺陷区分开。对于具有不同管道连接点的系统,使用传递矩阵法可以分析得出由泄漏引起的瞬态响应模式,然后将其用于分析系统中的管道泄漏情况。本研究通过不同的数值实验验证了所开发的方法。在分析分析和数值结果的基础上,讨论了所开发的基于TFR的泄漏检测方法的实用性和准确性以及局限性。

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