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首页> 外文期刊>The Journal of the Acoustical Society of America >Effects of coupling, bubble size, and spatial arrangement on chaotic dynamics of microbubble cluster in ultrasonic fields
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Effects of coupling, bubble size, and spatial arrangement on chaotic dynamics of microbubble cluster in ultrasonic fields

机译:耦合,气泡大小和空间排列对超声场中微气泡团簇混沌动力学的影响

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摘要

Microbubble clustering may occur when bubbles become bound to targeted surfaces or are grouped by acoustic radiation forces in medical diagnostic applications. The ability to identify the formation of such clusters from the ultrasound echoes may be of practical use. Nonlinear numerical simulations were performed on clusters of microbubbles modeled by the modified Keller-Miksis equations. Encapsulated bubbles were considered to mimic practical applications but the aim of the study was to examine the effects of inter-bubble spacing and bubble size on the dynamical behavior of the cluster and to see if chaotic or bifurcation characteristics could be helpful in diagnostics. It was found that as microbubbles were clustered closer together, their oscillation amplitude for a given applied ultrasound power was reduced, and for inter-bubble spacing smaller than about ten bubble radii nonlinear subharmonics and ultraharmonics were eliminated. For clustered microbubbles, as for isolated microbubbles, an increase in the applied acoustic power caused bifurcations and transition to chaos. The bifurcations preceding chaotic behavior were identified by Floquet analysis and confirmed to be of the period-doubling type. It was found that as the number of microbubbles in a cluster increased, regularization occurred at lower ultrasound power and more windows of order appeared.
机译:当气泡结合到目标表面或在医学诊断应用中被声辐射力分组时,可能会发生微气泡聚集。从超声回波识别这种簇的形成的能力可能是实际使用的。非线性数值模拟是在微气泡簇上进行的,该簇由改进的Keller-Miksis方程建模。封装的气泡被认为可以模拟实际应用,但该研究的目的是检查气泡间距和气泡大小对簇的动力学行为的影响,并观察混沌或分叉特性是否有助于诊断。已发现,随着微气泡聚集在一起,在给定的施加超声功率的情况下,它们的振荡幅度减小,并且气泡间的间距小于约十个气泡半径,非线性次谐波和超谐波被消除。对于成簇的微气泡,对于孤立的微气泡,所施加的声功率的增加会导致分叉并过渡为混沌。通过Floquet分析确定了混沌行为之前的分叉,并确认为周期倍增型。发现随着簇中微泡数量的增加,在较低的超声功率下会发生规则化,并出现更多的有序窗口。

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