The dynamic behavior of single bubbles rising in quiescent liquid Suva (R134a) in a duct has been examined through the use of a high speed video system. Size, shape and velocity measurements obtained with the video system reveal a wide variety of characteristics for the bubbles as they rise in both finite and infinite media. This data, coupled with previously published data for other working fluids, has been used to assess and extend a rise velocity model given by Fan and Tsuchiya. As a result of this assessment, a new rise velocity model has been developed which maintains the physically consistent characteristics of the surface tension in the distorted bubbly regime. In addition, the model is unique in that it covers the entire range of bubble sizes contained in the spherical, distorted and planar slug regimes.
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ASME/JSME 2003 4th Joint Fluids Summer Engineering Conference
July 6–10, 2003
Honolulu, Hawaii, USA
Conference Sponsors:
- Fluids Engineering Division
ISBN:
0-7918-3696-7
PROCEEDINGS PAPER
Dynamics of Bubbles Rising in Finite and Infinite Media Available to Purchase
Peter F. Vassallo
Peter F. Vassallo
Lockheed Martin Corporation, Niskayuna, NY
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Charles C. Maneri
Schenectady, NY
Peter F. Vassallo
Lockheed Martin Corporation, Niskayuna, NY
Paper No:
FEDSM2003-45792, pp. 1811-1828; 18 pages
Published Online:
February 4, 2009
Citation
Maneri, CC, & Vassallo, PF. "Dynamics of Bubbles Rising in Finite and Infinite Media." Proceedings of the ASME/JSME 2003 4th Joint Fluids Summer Engineering Conference. Volume 1: Fora, Parts A, B, C, and D. Honolulu, Hawaii, USA. July 6–10, 2003. pp. 1811-1828. ASME. https://doi.org/10.1115/FEDSM2003-45792
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