Experimental analysis of the clustering behavior of spherical bubbles rising along an inclined flat plate
Author:
Affiliation:
1. Department of Mechanical Engineering, Osaka Prefecture University
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/82/837/82_16-00051/_pdf
Reference22 articles.
1. Bouche, E., Roig, V., Risso, F. and Billet, A.-M., Homogeneous swarm of high-Reynolds-number bubbles rising within a thin gap. Part 1. Bubble dynamics, Journal of Fluid Mechanics, Vol. 704 (2012), pp. 211-231.
2. Bunner, B. and Tryggvason, G., Dynamics of homogeneous bubbly flows. Part 1. Rise velocity and microstructure of the bubbles, Journal of Fluid Mechanics, Vol. 466 (2002), pp. 17-52.
3. Davies, E. R., Machine Vision: Theory, Algorithms, Practicalities 3rd Edition (2005), Chapter 10, Morgan Kauffman Publishers.
4. Esmaeeli, A. and Tryggvason, G., A direct numerical simulation study of the buoyant rise of bubbles at O(100) Reynolds number, Physics of Fluids, Vol. 17 (2005), 093303.
5. Figueroa-Espinoza, B. and Zenit, R., Clustering in high Re monodispersed bubbly flows, Physics of Fluids, Vol.17 (2005), 091701.
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