| Literature DB >> 26584991 |
Yuning Zhang2, Yuning Zhang2, Shengcai Li3.
Abstract
The secondary Bjerknes force is one of the essential mechanisms of mutual interactions between bubbles oscillating in a sound field. The dual-frequency acoustic excitation has been applied in several fields such as sonochemistry, biomedicine and material engineering. In this paper, the secondary Bjerknes force under dual-frequency excitation is investigated both analytically and numerically within a large parameter zone. The unique characteristics (i.e., the complicated patterns of the parameter zone for sign change and the combination resonances) of the secondary Bjerknes force under dual-frequency excitation are revealed. Moreover, the influence of several parameters (e.g., the pressure amplitude, the bubble distance and the phase difference between sound waves) on the secondary Bjerknes force is also investigated numerically.Entities:
Keywords: Acoustic cavitation; Dual-frequency excitation; Gas bubbles; The secondary Bjerknes force
Year: 2015 PMID: 26584991 DOI: 10.1016/j.ultsonch.2015.08.022
Source DB: PubMed Journal: Ultrason Sonochem ISSN: 1350-4177 Impact factor: 7.491