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Single-bubble sonoluminescence: Shape stability analysis of collapse dynamics in a semianalytical approach

机译:单泡声致发光:半解析方法中塌陷动力学的形状稳定性分析

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This paper theoretically analyzes the hydrodynamic shape stability problem for sonoluminescing bubbles. We present a semianalytical approach to describe the evolution of shape perturbations in the strongly nonlinear regime of violent collapse. The proposed approximation estimating the damping rate produced by liquid viscosity is used to elucidate the influence of the collapse phase on subsequent evolution of the Rayleigh-Taylor instability. We demonstrate that time derivatives of shape perturbations grow significantly as the bubble radius vanishes, forming the dominant contribution to destabilization during the ensuing bounce phase. By this effect the Rayleigh-Taylor instability can be enhanced drastically, yielding a viable explanation of the upper threshold of driving pressure experimentally observed by Barber ct al. [References: 49]
机译:从理论上分析了声致发光气泡的流体动力学形状稳定性问题。我们提出了一种半分析方法来描述剧烈崩溃的强烈非线性状态下形状扰动的演变。拟议的近似估计由液体粘度产生的阻尼率的方法用于阐明坍塌相对随后瑞利-泰勒不稳定性演化的影响。我们证明,随着气泡半径的消失,形状扰动的时间导数显着增长,在随后的反弹阶段形成了不稳定的主要因素。通过这种作用,瑞利-泰勒不稳定性可以大大提高,从而可以得出巴伯等人实验观察到的驱动压力上限阈值的可行解释。 [参考:49]

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