Ooi Andrew, Nikolovska Aneta, Manasseh Richard
Department of Mechanical Engineering, The University of Melbourne, Parkville Melbourne, Victoria 3010, Australia.
J Acoust Soc Am. 2008 Aug;124(2):815-26. doi: 10.1121/1.2945156.
A chain of vertically rising discrete air bubbles represents a transition phenomenon from individual to continuum behavior in a bubbly liquid. Previous studies have reported that there is a preference for acoustic energy to propagate along the bubble chain and that this behavior could be explained by a coupled-oscillator model. However, it has recently been demonstrated that quantitative results from the coupled-oscillator model do not match experimental data. In this paper, it is shown how adding time delays to the coupled-oscillator model can produce results that are in better agreement with experimental data. In addition, the effects of time delays on the natural frequencies and damping of individual eigenmodes of the vertical bubble chain are also investigated. It was found that adding time delays can dramatically change the damping of the different modes of the system while having less dramatic impact on the natural frequencies of the individual eigenmodes. Counterintuitively, it is found that the effects of time delays appear to be more important when the bubbles are closer together than when they are farther apart.
一串垂直上升的离散气泡代表了气泡液体中从个体行为到连续行为的一种转变现象。先前的研究报告称,声能倾向于沿着气泡链传播,并且这种行为可以用耦合振荡器模型来解释。然而,最近已经证明,耦合振荡器模型的定量结果与实验数据不匹配。本文展示了如何在耦合振荡器模型中添加时间延迟,从而产生与实验数据更吻合的结果。此外,还研究了时间延迟对垂直气泡链各个本征模的固有频率和阻尼的影响。研究发现,添加时间延迟可以显著改变系统不同模式的阻尼,而对各个本征模的固有频率影响较小。与直觉相反的是,发现当气泡靠得更近时,时间延迟的影响似乎比气泡相距更远时更为重要。