Transition to Chaos of Buoyant-Thermocapillary Convection in Large-Scale Liquid Bridges

Author:

Wang Jia,Wu Di,Duan Li,Kang QiORCID

Funder

National Natural Science Foundation of China

the China Manned Space Engineering program

Strategic Priority Research Program on Space Science

Project funded by China Postdoctoral Science Foundation

Natural Science Foundation of Shandong Province

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,General Physics and Astronomy,General Engineering,Modeling and Simulation

Reference42 articles.

1. Aa, Y., Li, K., Tang, Z.M., et al.: Period-doubling bifurcations of the thermocapillary convection in a floating half zone[J]. Science China Physics, Mechanics and Astronomy. 53(9), 1681–1686 (2010)

2. Albanese C, Carotenuto L, Castagnolo D, et al. First results from[J]. Onset” Experiment During D2 Space Mission,” in Scientific Results of German Spacelab Mission D-2, PR Sahm, MH Keller, and B. Schiewe, eds., DARA, Bonn, 1995: 247–258

3. Bucchignani, E., Mansutti, D.: Horizontal thermal convection of succinonitrile: steady state, instablities, and transition to chaos. Physical Review E. 69(5), 056319 (2004)

4. Chen, Q.S., Hu, W.R.: Influence of liquid bridge volume on instability of floating half zone convection[J]. Int. J. Heat Mass Transf. 41(6–7), 825–837 (1998)

5. Chun C.H., Verification of turbulence developing from the oscillatory Marangoni convection in a liquid column, Proc. 5th European Symp. On Material Science and Microgravity, Schloss Elmau, 5–7 Nov. 1984, ESA SP-222: 271–280

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