云南大学学报(自然科学版)2024,Vol.46Issue(1) :67-73.DOI:10.7540/j.ynu.20220495

非单频声场中耦合双泡振动特性研究

The vibration characteristics of two mutually interacting gas bubbles in non single frequency acoustic field

李娜
云南大学学报(自然科学版)2024,Vol.46Issue(1) :67-73.DOI:10.7540/j.ynu.20220495

非单频声场中耦合双泡振动特性研究

The vibration characteristics of two mutually interacting gas bubbles in non single frequency acoustic field

李娜1
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作者信息

  • 1. 宁夏医科大学医学信息与工程学院,宁夏 银川 750004
  • 折叠

摘要

利用Keller-Miksis方程,计算了初始半径分别为 2、5 μm的耦合气泡在非单频声场中气泡半径、次Bjerknes力的变化规律.计算结果表明,非单频驱动声场中耦合双泡的半径、次Bjerknes力与驱动声压幅值、声压幅值之比、驱动频率有关.当声压幅值比、驱动频率一定时,驱动声压越大,最大膨胀半径越大、次Bjerknes力越大;驱动声压、驱动频率一定时,声压幅值比越大,最大膨胀半径越大、次Bjerknes力越大;当驱动声压的振幅、声压幅值比一定时,驱动频率越大,最大膨胀半径越小、次Bjerknes力越小.

Abstract

By using the improved Keller-Miksis equation,the mutually interacting gas bubbles in a non single frequency acoustic field was investigated numerically.We assumed spherical symmetry and a coupling of the bubble oscillations,which radius were 2 μm and 5 μm respectively.The numerical results showed that the maximum radius and the secondary Bjerknes force of the coupled double bubbles were related to the amplitude,the amplitude ratio and driving frequency of the driving sound pressure.When the amplitude ratio and driving frequency were constant,the larger the driving sound pressure,the larger the maximum radius and the greater the secondary bjerknes force;When the driving sound pressure and driving frequency were constant,the larger the amplitude ratio,the larger the maximum radius and the greater the secondary bjerknes force;When the driving sound pressure and the amplitude ratio were constant,The larger the driving frequency,the smaller the maximum radius and the smaller the secondary bjerknes force.

关键词

非单频驱动/耦合双泡/最大膨胀半径/次Bjerknes力

Key words

non single frequency drive/the mutual interaction between cavitation bubbles/maximum expansion radius/the secondary Bjerknes force

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基金项目

国家自然科学基金(12204258)

宁夏自然科学基金(2022AAC03151)

宁夏医科大学特殊人才启动项目(XT2020004)

出版年

2024
云南大学学报(自然科学版)
云南大学

云南大学学报(自然科学版)

CSTPCDCSCD北大核心
影响因子:0.663
ISSN:0258-7971
参考文献量5
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