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Sensitivity Analysis of a Transient-Based Frequency Domain Method for Extended Blockage Detection in Water Pipeline Systems

机译:输水管道系统中基于瞬态的频域扩展阻塞检测方法的灵敏度分析

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摘要

Partial blockages are commonly formed in water supply pipelines due to many factors, such as deposition, biofilm, and corrosion in the natural water supply process, as well as valve throttle in the artificial construction and operation process, which may cause additional energy losses and serious water supply accidents in the system. Recently, a transient-based frequency domain method (TBFDM) has been developed by the author for extended partial blockage detection, and it was found to be efficient, nonintrusive, and inexpensive to apply. While this method has been validated and applied for numerical and laboratory experiments in previous studies for a variety of blockage and hydraulic conditions, the application results revealed that the accuracy of the TBFDM may be easily affected by uncertainties in the experimental process. This paper investigates the sensitivity of the developed TBFDM to different uncertainty factors that commonly exist in water pipeline systems, with perspective to better understand and use this efficient and economic method in practice. The methods of first-order second-moment analysis and Monte Carlo simulation are adopted in this paper for the investigation. The obtained results are discussed for the validity range and limitations of current TBFDM for practical applications.
机译:由于许多因素,例如自然供水过程中的沉积,生物膜和腐蚀,以及人工构造和操作过程中的阀门节流,通常会在供水管道中形成局部堵塞,这可能会导致额外的能量损失并严重系统中的供水事故。最近,作者开发了基于瞬态的频域方法(TBFDM)来进行扩展的部分阻塞检测,发现该方法高效,无干扰且应用便宜。尽管此方法已在先前的研究中针对各种阻塞和水力条件进行了验证并应用于数值和实验室实验,但应用结果表明,TBFDM的精度可能容易受到实验过程不确定性的影响。本文研究了开发的TBFDM对输水管道系统中通常存在的不同不确定性因素的敏感性,以期在实践中更好地理解和使用这种高效经济的方法。本文采用一阶二阶矩分析和蒙特卡洛模拟的方法进行研究。讨论了所得结果对当前TBFDM在实际应用中的有效性范围和局限性。

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