Lyubimova T P, Fomicheva A A, Ivantsov A O
Computational Fluid Dynamics Laboratory, Institute of Continuous Media Mechanics UB RAS, 1 Koroleva Street, Perm 614068, Russia.
Philos Trans A Math Phys Eng Sci. 2023 Apr 17;381(2245):20220085. doi: 10.1098/rsta.2022.0085. Epub 2023 Feb 27.
This article is devoted to the investigation of gaseous bubble dynamics in oscillating viscous liquids of different density values. The study is conducted numerically using the level-set method with a non-stationary approach. The bubble is initially located near the upper wall of the container. The effects of the inclusion and host liquid viscosities on interaction of the bubble with the wall are analysed. The calculations show that in the absence of gravity, for low-viscosity fluids the bubble is attracted to the nearest wall, which is consistent with previous analytical and experimental results. With increasing viscosity, the vibrational attraction to the wall becomes weaker and is then replaced by repulsion, which can be explained by the decelerative effect of viscosity in the boundary layer near the rigid surface, where the average flow becomes less intensive. The dependencies of the repulsion force on the parameter values are obtained by using the balance method (investigation of the gravity level needed to attain the quasi-equilibrium state at a certain distance between the bubble and the wall). The calculations show that the repulsion force grows with decreasing Reynolds number (increase of the viscosity). This article is part of the theme issue 'New trends in pattern formation and nonlinear dynamics of extended systems'.
本文致力于研究不同密度值的振荡粘性液体中的气泡动力学。该研究采用水平集方法和非定常方法进行数值模拟。气泡最初位于容器的上壁附近。分析了夹杂物和主体液体粘度对气泡与壁相互作用的影响。计算结果表明,在没有重力的情况下,对于低粘度流体,气泡会被吸引到最近的壁上,这与先前的分析和实验结果一致。随着粘度的增加,对壁的振动吸引力变弱,随后被排斥力取代,这可以用刚性表面附近边界层中粘度的减速效应来解释,在该边界层中平均流动强度变小。通过使用平衡方法(研究在气泡与壁之间的特定距离处达到准平衡状态所需的重力水平)获得排斥力与参数值的依赖关系。计算结果表明,排斥力随着雷诺数的减小(粘度增加)而增大。本文是“扩展系统图案形成和非线性动力学的新趋势”主题问题的一部分。