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An Analysis of the Impact of Valve Closure Time on the Course of Water Hammer

机译:阀门关闭时间对水击过程的影响分析

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The knowledge of transient flow in pressure pipelines is very important for the designing and describing of pressure networks. The water hammer is the most common example of transient flow in pressure pipelines. During this phenomenon, the transformation of kinetic energy into pressure energy causes significant changes in pressure, which can lead to serious problems in the management of pressure networks. The phenomenon is very complex, and a large number of different factors influence its course. In the case of a water hammer caused by valve closing, the characteristic of gate closure is one of the most important factors. However, this factor is rarely investigated. In this paper, the results of physical experiments with water hammer in steel and PE pipelines are described and analyzed. For each water hammer, characteristics of pressure change and valve closing were recorded. The measurements were compared with the results of calculations perfomed by common methods used by engineers - Michaud’s equation and Wood and Jones’s method.The comparison revealed very significant differences between the results of calculations and the results of experiments. In addition, it was shown that, the characteristic of butterfly valve closure has a significant influence on water hammer, which should be taken into account in analyzing this phenomenon. Comparison of the results of experiments with the results of calculations? may lead to new, improved calculation methods and to new methods to describe transient flow.
机译:压力管道中瞬态流动的知识对于压力网络的设计和描述非常重要。水锤是压力管道中瞬态流动最常见的例子。在此现象期间,动能向压力能的转换会引起压力的显着变化,这可能导致压力网络管理中出现严重问题。这种现象非常复杂,并且有许多不同的因素影响其进程。对于由阀门关闭引起的水锤现象,闸门关闭的特性是最重要的因素之一。但是,很少对此因素进行调查。本文描述并分析了在钢和PE管道中使用水锤进行的物理实验结果。对于每个水锤,记录了压力变化和阀门关闭的特性。将这些测量结果与工程师常用的计算方法(Michaud方程和Wood and Jones方法)进行的计算结果进行了比较。比较结果显示,计算结果与实验结果之间存在非常显着的差异。另外,已经表明,蝶阀关闭的特性对水锤有很大的影响,在分析这种现象时应考虑到这一点。实验结果与计算结果的比较?可能会导致新的,改进的计算方法以及描述瞬态流动的新方法。

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