Journal article
Experimental and theoretical analysis of secondary Bjerknes forces between two bubbles in a standing wave
J Jiao, Y He, SE Kentish, M Ashokkumar, R Manasseh, J Lee
Ultrasonics | Published : 2015
Abstract
Bubbles in an acoustic field are affected by forces such as primary and secondary Bjerknes forces, which have been shown to be influenced by acoustic pressure, frequency, bubble size and separation distance between bubbles. However, such studies are predominantly theoretical, and are mostly focused on the sign reversal of the secondary Bjerknes force. This study provides experimental data on the effect of a range of bubble sizes (8-30 lm), distances (60.2 mm), acoustic pressures (20-40 kPa) and frequencies (40-100 kHz) on the relative acceleration of two approaching bubbles. Under these conditions, only variations in the magnitude of the attractive force were observed. Using coupled equation..
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Awarded by Australian Research Council
Funding Acknowledgements
We are grateful to Prof. Yos Morsi for facilitating the use of the high-speed camera and for detailed comments on a draft of this paper. The financial support through the Australian Research Council for the DECRA (Discovery Early Career Research Award, DE120101567) is also gratefully acknowledged.