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Translational motion of a spherical bubble in an acoustic standing wave of high intensity

机译:球形气泡在高强度声驻波中的平移运动

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Using the Lagrangian formalism, coupled equations of radial and translational motions of a spherical gas bubble in an acoustic wave field are derived. The equation of radial motion is then modified, for the purpose of allowing for effects of liquid compressibility, using Keller-Miksis' approach, and the equation of translation is added by the primary Bjerknes force and the viscous force in the form of the Levich drag. The resulting equations are solved numerically for the purpose of studying the translational motion of a bubble in a plane standing wave. It is shown that, if the acoustic pressure amplitude is high enough, a bubble driven below resonance, instead of moving to the pressure antinode as it does in a weak field, reciprocates about the pressure node plane. This result is of interest for an understanding of irregular bubble motions observed experimentally in strong acoustic fields. (C) 2002 American Institute of Physics. [References: 14]
机译:使用拉格朗日形式,推导了声波场中球形气泡的径向和平移运动的耦合方程。然后使用凯勒-米克西斯(Keller-Miksis)方法修改径向运动方程,以实现液体可压缩性的作用,并通过主Bjerknes力和粘性力以Levich阻力的形式添加平移方程。为了研究气泡在平面驻波中的平移运动,对所得方程进行了数值求解。结果表明,如果声压幅值足够高,则气泡在共振以下被驱动,而不是像在弱磁场中那样移动到压力波腹,而是围绕压力节点平面往复运动。该结果对于理解在强声场中实验观察到的不规则气泡运动很有帮助。 (C)2002美国物理研究所。 [参考:14]

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