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On the dynamics and heat transfer of bubble train in micro-channel flow boiling
Affiliation:1. Faculty of Material and Energy Engineering, Guangdong University of Technology, 510006 Guangzhou, China;2. Department of Energy Technology, KTH Royal Institute of Technology, 10044 Stockholm, Sweden;3. School of Chemical Engineering, South China University of Technology, 510040 Guangzhou, China
Abstract:The dynamics and heat transfer characteristics of flow boiling bubble train moving in a micro channel is studied numerically. The coupled level set and volume of fluid (CLSVOF) is utilized to track interface and a non-equilibrium phase change model is applied to calculate the interface temperature as well as heat flux jump. The working fluid is R134a and the wall material is aluminum. The fluid enters the channel with a constant mass flux (335 kg/m2 1 s), and the boundary wall is heated with constant heat flux (14 kW/m2). The growth of bubbles and the transition of flow regime are compared to an experimental visualization. Moreover, the bubble evaporation rate and wall heat transfer coefficient have been examined, respectively. Local heat transfer is significantly enhanced by evaporation occurring vicinity of interface of the bubbles. The local wall temperature is found to be dependent on the thickness of the liquid film between the bubble train and the wall.
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