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Analysis of water hammer in pipelines by partial fraction expansion of transfer function in frequency domain

机译:用频域传递函数的分式展开分析管道中的水锤

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摘要

Understanding water hammer is very important to the prevention of excessive pressure build-up in pipelines. Many researchers have studied this phenomenon, drawing effective solutions through the time- and frequency-domain approaches. For the purposes of enhancing the advantages of the frequency-domain approach and, thereby, rendering investigations of the dynamic characteristics of pipelines more effective, we propose partial fraction expansion of the transfer function between the unsteady flow source and a given section. We simulate the proposed approach using a vibration element inserted into a simple pipeline, deducing much useful physical information pertaining to pipeline design. We conclude that locating the resonance of the vibration element between the first and second resonances of the pipeline can mitigate the excessive pressure build-up attendant on the occurrence of water hammer. Our method of partial fraction expansion is expected to be useful and effective in analyses of unsteady flows in pipelines.
机译:理解水锤对于防止管道中过度的压力积累非常重要。许多研究人员已经研究了这种现象,并通过时域和频域方法得出了有效的解决方案。为了增强频域方法的优势,从而更有效地研究管道的动态特性,我们提出了非定常流动源与给定截面之间传递函数的部分分数展开式。我们使用插入到简单管道中的振动元件来模拟所提出的方法,从而得出与管道设计有关的许多有用的物理信息。我们得出的结论是,将振动元件的共振置于管道的第一共振和第二共振之间可以减轻伴随水锤的出现而产生的过大压力。预期我们的部分分数膨胀方法在分析管道中的非稳态流动方面将是有用和有效的。

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