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Two-phase bubbly flows in microgravity: Some open questions
Authors:Catherine Colin
Affiliation:(1) Faculty of Marine Technology, Tokyo University of Marine Science and Technology, Etchujima, Koto, 135-8533 Tokyo, Japan;(2) Research Reactor Institute, Kyoto University, Kumatori, Sennan, 590-0494 Osaka, Japan;(3) School of Nuclear Engineering, Purdue University, 400 Central Drive, West Lafayette, IN 47907-2017, USA
Abstract:Several studies on gas-liquid pipe flows in micro gravity have been performed. They were motivated by the technical problems arising in the design of the thermohydraulic loops for the space applications. Most of the studies were focused on the determination of the flow pattern, wall shear stress, heat transfer and phase fraction and provided many empirical correlations. Unfortunately some basic mechanism are not yet well understood in micro gravity. For example the transition from bubbly to slug flow is well predicted by a critical value of the void fraction depending on an Ohnesorge number, but the criteria of transition cannot take into account the pipe length and the bubble size at the pipe inlet. To improve this criteria, a physical model of bubble coalescence in turbulent flow is used to predict the bubble size evolution along the pipe in micro gravity, but it is still limited to bubble smaller than the pipe diameter and should be extended to larger bubbles to predict the transition to slug flow.
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