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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Alternative interpretation of the sign reversal of secondary Bjerknes force acting between two pulsating gas bubbles - art. no. 056617
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Alternative interpretation of the sign reversal of secondary Bjerknes force acting between two pulsating gas bubbles - art. no. 056617

机译:二次Bjerknes力在两个脉动气泡之间作用的符号反转的替代解释-艺术。没有。 056617

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摘要

It is known that in a certain case, the secondary Bjerknes force (which is a radiation force acting between pulsating bubbles) changes, e.g., from attraction to repulsion, as the bubbles approach each other. In this paper, a theoretical discussion of this phenomenon for two spherical bubbles is described. The present theory based on analysis of the transition frequencies of interacting bubbles [M. Ida, Phys. Lett. A 297, 210 (2002)] provides an interpretation, different from previous ones (e.g., by Doinikov and Zavtrak [Phys. Fluids 7, 1923 (1995)]), of the phenomenon. It is shown, for example, that the reversal that occurs when one bubble is smaller and the other is larger than a resonance size is due to the second-highest transition frequency of the smaller bubble, which cannot be obtained using traditional natural-frequency analysis. [References: 23]
机译:已知在某些情况下,随着气泡彼此接近,次级Bjerknes力(其是在脉动的气泡之间作用的辐射力)改变,例如,从吸引变为排斥。在本文中,对两个球形气泡的这种现象进行了理论讨论。本理论基于对相互作用气泡的跃迁频率的分析[M.艾达(Ida),物理来吧A 297,210(2002)]提供了与以前的解释不同的解释(例如,Doinikov和Zavtrak [Phys。Fluids 7,1923(1995)])。例如,显示的是,当一个气泡较小而另一个气泡大于共振尺寸时发生的反转是由于较小气泡的次高过渡频率引起的,而这是使用传统固有频率分析无法获得的。 [参考:23]

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