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The effects of coupling and bubble size on the dynamical-systems behaviour of a small cluster of microbubbles

机译:耦合和气泡大小对一小团微气泡动力学系统行为的影响

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This study endeavours to apply a theoretical model for predicting the dynamics of a bubble cluster of various sizes, within which each bubble may assume different initial conditions from other bubbles in the cluster. The resulting system of coupled Keller-Miksis-Parlitz equations are solved numerically, and the effects of coupling and bubble size on bubble cluster dynamics are examined for a given set of ultrasound parameters. It has been found that the effects of coupling are significant, and a bubble cluster's bifurcation characteristics and route to chaos can be altered by inter-bubble interactions. This gives rise to the possibility of suppressing the chaotic oscillations of microbubbles by varying bubble cluster size. Small equilibrium radii bubbles have little influence on the dynamics of neighbouring bubbles in a cluster via coupling. Furthermore, a bubble system consisting of smaller-sized bubbles transitions from order to chaos at lower driving pressure amplitudes.
机译:这项研究致力于应用理论模型来预测各种大小的气泡簇的动力学,在该动力学模型中,每个气泡可能会与该簇中的其他气泡具有不同的初始条件。数值求解了耦合的Keller-Miksis-Parlitz方程组,并针对给定的一组超声参数检查了耦合和气泡大小对气泡团簇动力学的影响。已经发现,耦合的影响是显着的,并且气泡间的相互作用可以改变气泡团簇的分叉特性和到达混沌的途径。这引起通过改变气泡簇的大小来抑制微气泡的混沌振荡的可能性。小的平衡半径气泡通过耦合对簇中相邻气泡的动力学影响很小。此外,由较小尺寸的气泡组成的气泡系统在较低的驱动压力幅度下会从有序过渡到混乱。

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