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Coupled oscillation and shape instability of bubbles in acoustic field

机译:声场中气泡的耦合振荡和形状不稳定性

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Based on the Lagrange's equation, the dynamic equations and shape mode equations of two bubbles with nonspherical distortion are obtained. The radial oscillations and shape instabilities of two bubbles with nonspherical distortion in an acoustic field are numerically investigated. The numerical results show that there are two coupled modes between two nonspherical bubbles: shape coupled mode and radial coupled mode. The coupled modes between two nonspherical bubbles depend on the shape modes of two bubbles. When the shape mode of the first bubble is equal to that of the second bubble (n = m), the shape coupled mode and radial coupled mode both exist. The interaction force between bubbles is caused by these two coupled modes. If the two bubbles have different shape mode orders (n not equal m), there is a radially coupled mode between two bubbles. The interaction force between two bubbles is caused by radially coupled mode. The interaction caused by the radial coupling and shape coupling has an influence on the instability of gas bubble. The influencing factors depend on the shape mode, the equilibrium radius of neighboring bubble, and the driving acoustic field. The results demonstrate that the shape coupling can change the severity of the collapse of a gas bubble, and increase the ability of a gas bubble to resist distortion under a certain condition. The nonspherical disturbance of a real bubble in an acoustic field is not a single shape mode, but the coupling of different shape modes, so the shape coupling has an obvious influence on the shape instability of a real bubble. These may be the reason why bubbles can form some stable structures and keep stable oscillations in an acoustic field.
机译:基于拉格朗日的等式,获得了两个带有非球形失真的气泡的动态方程和形状模式等式。在数值上研究了在声场中具有非球形变形的两个气泡的径向振荡和形状稳定性。数值结果表明,两个非球形气泡之间存在两种耦合模式:形状耦合模式和径向耦合模式。两个非球形气泡之间的耦合模式取决于两个气泡的形状模式。当第一气泡的形状模式等于第二气泡(n = m)的形状模式时,存在形状耦合模式和径向耦合模式。气泡之间的相互作用力由这两个耦合模式引起。如果两个气泡具有不同的形状模式订单(n不等于m),则在两个气泡之间存在径向耦合模式。两个气泡之间的相互作用力是由径向耦合模式引起的。由径向耦合和形状耦合引起的相互作用对气泡的不稳定性产生影响。影响因素取决于形状模式,相邻气泡的平衡半径和驱动声场。结果表明,形状耦合可以改变气泡塌陷的严重程度,并增加气泡在一定条件下抵抗变形的能力。声场中的真实气泡的非球面扰动不是单个形状模式,而是不同形状模式的耦合,因此形状耦合对真实气泡的形状不稳定性具有明显的影响。这些可能是泡沫可以形成一些稳定结构并保持声场中的稳定振荡的原因。

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