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Rayleigh-taylor instability mechanism on sonoluminescing bubble

Authors
Karng, S.W.Lee, Y.P.Kwak, H.-Y.
Issue Date
Jul-2004
Publisher
American Society of Mechanical Engineers
Citation
Proceedings of the ASME Heat Transfer/Fluids Engineering Summer Conference 2004, HT/FED 2004, v.3, pp 755 - 764
Pages
10
Journal Title
Proceedings of the ASME Heat Transfer/Fluids Engineering Summer Conference 2004, HT/FED 2004
Volume
3
Start Page
755
End Page
764
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/65566
DOI
10.1115/ht-fed2004-56618
ISSN
0000-0000
Abstract
Air bubble trapped in water emits light stably at its collapse point when proper forcing amplitude and frequency of ultrasound are applied to the bubble. We investigated the Rayleigh-Taylor instability mechanism that causes deviation from sphericity of wall of the bubble at the collapse point in the sonoluminescence (SL) regime with rigorous analytical treatment. Our study revealed that the RT instability due to the bubble wall acceleration occurs when the gas density inside bubble exceeds a certain limit. Lagging motion of bubble to the ultrasound due to the viscoelastic behavior of bubble rather than viscous damping was a crucial parameter in determining the upper threshold of SL. The calculation results for the upper limit of stable sonoluminescence regime agreed well with experimental data. Copyright © 2004 by ASME.
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