利用光滑粒子流体力学方法探索空气对管道流动状态发展的影响

Zixuan Zheng, Xinwei Cai, Feifei Zheng, Xin Bian, Hongwu Tang, Saiyu Yuan, Yiyi Ma
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引用次数: 0

摘要

人们普遍认为,管道中的水流会受到滞留气穴的影响。然而,人们很少研究自由流动与管道下游非夹层的基本气水相互作用。目前还没有研究清楚地阐明在自由流动情况下,真空和有空气存在时管道内水流的差异。为此,我们采用平滑粒子流体力学(SPH)方法来研究自由流动情况下管道中的空气-水水力动力学。我们在几种不同的情况下进行了 SPH 模拟,结果发现:(i) SPH 方法在捕捉复杂界面方面具有突出优势,因此能够同时模拟管道中的单相流和两相流;(ii) 只有当上游水位高于管道入口顶部,管道中的水位因空气阻力而上升到管道顶部时,才能形成满管流;(iii) 空气的存在会使水形成满管流,造成虹吸效应,促进管道排水。这些结果有助于深入了解管道流动中潜在的复杂空气-水水力特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the air impacts on the state development of pipe flow using the smooth particle hydrodynamic method
It is widely recognized that the water flow in pipes can be affected by trapped air pockets. However, the underlying air–water interactions of free flow with non-jacking downstream of the pipe are rarely investigated. There are no studies at this time that clearly elucidate the differences in pipe flow between the vacuum and the presence of air in the free flow case. To this end, the smoothed particle hydrodynamics (SPH) method is applied to study the air–water hydraulic dynamics in the pipe under free flow. We perform SPH simulations in several different scenarios and find that (i) the SPH method is competent to simulate both single- and two-phase flows in the pipe due to its outstanding advantages in capturing complex interfaces; (ii) only when the upstream water level is higher than the top of the pipe inlet, and the water level in the pipe rises to the top of the pipe due to air resistance, can a full pipe flow be formed; and (iii) the presence of air can cause the water to form a full pipe flow, causing a siphon-like effect that promotes pipe drainage. These results provide insights into the underlying complex air–water hydraulic properties in pipe flows.
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