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Model for the dynamics of two interacting axisymmetric spherical bubbles undergoing small shape oscillations

机译:两个相互作用的轴对称球形气泡经历小形状振动的动力学模型

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摘要

Interaction between acoustically driven or laser-generated bubbles causes the bubble surfaces to deform. Dynamical equations describing the motion of two translating, nominally spherical bubbles undergoing small shape oscillations in a viscous liquid are derived using Lagrangian mechanics. Deformation of the bubble surfaces is taken into account by including quadrupole and octupole perturbations in the spherical-harmonic expansion of the boundary conditions on the bubbles. Quadratic terms in the quadrupole and octupole amplitudes are retained, and surface tension and shear viscosity are included in a consistent manner. A set of eight coupled second-order ordinary differential equations is obtained. Simulation results, obtained by numerical integration of the model equations, exhibit qualitative agreement with experimental observations by predicting the formation of liquid jets. Simulations also suggest that bubble-bubble interactions act to enhance surface mode instability.
机译:声驱动或激光产生的气泡之间的相互作用会导致气泡表面变形。使用拉格朗日力学推导了描述两个平移的名义球形气泡在粘性液体中经历小形状振荡的运动的动力学方程。通过在气泡边界条件的球谐展开中包括四极和八极摄动,来考虑气泡表面的变形。保留了四极和八极振幅中的二次项,并且以一致的方式包括了表面张力和剪切粘度。得到一组八个耦合的二阶常微分方程。通过对模型方程式进行数值积分而获得的模拟结果,通过预测液体射流的形成,与实验结果在质量上具有一致性。模拟还表明,气泡-气泡相互作用可增强表面模式的不稳定性。

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