3D CFD simulation and analysis of transient flow in a water pipeline

Yun Cao, Ling Zhou, C. Ou, Haoyu Fang, Deyou Liu
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引用次数: 4

Abstract

A three-dimensional (3D) computational fluid dynamics (CFD) approach is developed to elaborate the water-hammer pipe flow and 3D detailed dynamic characteristics of a closing ball valve. The proposed CFD approach considers the water compressibility and the viscous sublayer, which are sometimes neglected in previous studies. Comparisons of the CFD results, the measured pressures and the one-dimensional results, demonstrate that the current 3D CFD approach better reproduces the experimental pressure oscillations while helping to visualize the associated physical processes and to further explore the 3D transient characteristics. The mean velocity distributions in the radial direction significantly change as the pipe transient progresses, which is closely associated with transient shear stress. Mean velocity variations at the valve during the closing process undergo three distinct stages: slight change, then drastic reduction, and finally slowing down. Head loss coefficient and discharge coefficient of the valve change as the valve closing time shortens.
输水管道瞬态流动的三维CFD模拟与分析
建立了一种三维计算流体动力学(CFD)方法,对关闭球阀的水锤管流动和三维详细动态特性进行了分析。提出的CFD方法考虑了水的可压缩性和粘性亚层,这在以往的研究中有时被忽略。CFD结果、实测压力和一维结果的对比表明,目前的三维CFD方法可以更好地再现实验压力振荡,同时有助于可视化相关的物理过程,并进一步探索三维瞬态特性。径向平均速度分布随管道瞬态过程发生显著变化,这与瞬态剪应力密切相关。阀门在关闭过程中的平均流速变化经历了三个不同的阶段:轻微变化,然后急剧减小,最后减慢。阀门的水头损失系数和流量系数随阀门关闭时间的缩短而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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