物理
共振(粒子物理)
压缩性
气泡
机械
经典力学
原子物理学
作者
Lingling Zhang,Xun Wang,Jinfu Liang
摘要
The nonlinear pulsation equations of bubbles are derived using energy-based analysis, and the resonance frequencies of a double-bubble system are obtained by linearizing these equations in a compressible liquid. The results indicate that the resonance frequency is lower than that of a single bubble when the two bubbles pulsate in phase but higher when they pulsate out of phase. Additionally, the resonance frequency increases linearly with the distance between in-phase oscillating bubbles but decreases inversely with distance for out-of-phase oscillations, while the consideration of compressibility leads to a further reduction in resonance frequency. When the initial perturbation ratio of two bubbles with different ambient radii equals 1, larger bubbles exert a stronger influence on smaller ones, potentially disrupting oscillation regularity. For bubbles of the same radius, an initial perturbation ratio below 1 leads to compressed and irregular oscillation waveforms, whereas a ratio above 1 causes excited and irregular waveforms that deteriorate more rapidly than those with equal initial perturbations.
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