Analyses of Acoustic Streaming Generated by Four Ultrasonic Vibrators in a Vessel

When ultrasonic waves are applied, the heat transfer at a heated surface in water increases markedly. The origin of this increase in heat transfer is thought to be due to the agitation effect from the microjets of cavitation and from acoustic streaming. The method in which four vibrators are used ha...

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Bibliographic Details
Published inJapanese Journal of Applied Physics Vol. 43; no. 5S; p. 2847
Main Author Nakagawa, Masafumi
Format Journal Article
LanguageEnglish
Published 01.05.2004
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Summary:When ultrasonic waves are applied, the heat transfer at a heated surface in water increases markedly. The origin of this increase in heat transfer is thought to be due to the agitation effect from the microjets of cavitation and from acoustic streaming. The method in which four vibrators are used has the ability of further enhancing heat transfer. This paper presents the method using four vibrators to eject an acoustic stream jet at a selected position in the vessel. Analyses of this method are performed to establish it theoretically and to compare with an experiment previously conducted. The analyses shown in this research indicate that the aspects of acoustic streaming generated by the four vibrators in the vessel can be correctly predicted and provide a foundation for the development of using this method for the enhancement of heat transfer.
ISSN:0021-4922
1347-4065
DOI:10.1143/JJAP.43.2847