Ma Xiaojian, Huang Biao, Li Yikai, Chang Qing, Qiu Sicong, Su Zheng, Fu Xiaoying, Wang Guoyu
School of Mechanical and Vehicular Engineering, Beijing Institute of Technology, Beijing 100081, China.
School of Mechanical and Vehicular Engineering, Beijing Institute of Technology, Beijing 100081, China.
Ultrason Sonochem. 2018 Apr;42:619-630. doi: 10.1016/j.ultsonch.2017.12.021. Epub 2017 Dec 14.
The objective of this paper is to apply CLSVOF method to investigate the single bubble dynamics in acoustic travelling waves. The Naiver-Stokes equation considering the acoustic radiation force is proposed and validated to capture the bubble behaviors. And the CLSVOF method, which can capture the continuous geometric properties and satisfies mass conservation, is applied in present work. Firstly, the regime map, depending on the dimensionless acoustic pressure amplitude and acoustic wave number, is constructed to present different bubble behaviors. Then, the time evolution of the bubble oscillation is investigated and analyzed. Finally, the effect of the direction and the damping coefficient of acoustic wave propagation on the bubble behavior are also considered. The numerical results show that the bubble presents distinct oscillation types in acoustic travelling waves, namely, volume oscillation, shape oscillation, and splitting oscillation. For the splitting oscillation, the formation of jet, splitting of bubble, and the rebound of sub-bubbles may lead to substantial increase in pressure fluctuations on the boundary. For the shape oscillation, the nodes and antinodes of the acoustic pressure wave contribute to the formation of the "cross shape" of the bubble. It should be noted that the direction of the bubble translation and bubble jet are always towards the direction of wave propagation. In addition, the damping coefficient causes bubble in shape oscillation to be of asymmetry in shape and inequality in size, and delays the splitting process.
本文的目的是应用CLSVOF方法研究声行波中的单气泡动力学。提出并验证了考虑声辐射力的纳维-斯托克斯方程以捕捉气泡行为。并且,本工作应用了能捕捉连续几何特性并满足质量守恒的CLSVOF方法。首先,构建了取决于无量纲声压幅值和声波数的状态图,以呈现不同的气泡行为。然后,研究并分析了气泡振荡的时间演化。最后,还考虑了声波传播方向和阻尼系数对气泡行为的影响。数值结果表明,气泡在声行波中呈现出不同的振荡类型,即体积振荡、形状振荡和分裂振荡。对于分裂振荡,射流的形成、气泡的分裂以及子气泡的反弹可能导致边界上压力波动大幅增加。对于形状振荡,声压波的波节和波腹促成了气泡“十字形”的形成。应当指出,气泡平移和气泡射流的方向始终朝着波传播的方向。此外,阻尼系数导致形状振荡中的气泡形状不对称且尺寸不均等,并延迟了分裂过程。