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Marangoni flow in half-zone liquid bridge of molten tin under ramped temperature difference
Authors:K. Li   S. Yasuhiro   N. Imaishi  S. Yoda
Affiliation:

aInstitute for Materials Chemistry and Engineering, Kyushu University, Fukuoka, Japan

bJAXA, 2-1-1 Sengen, Tsukuba, Japan

Abstract:A long-run numerical simulation was carried out on a realistic half-zone liquid bridge model of molten tin, which is identical to JAXA's (former NASDA) liquid bridge experiment apparatus. Using the time-dependent temperature difference imposed on both ends of supporting iron rods, the simulation numerically reproduces the experiment for a time period of 3100 s and enables the study of the two-step bifurcation behavior of Marangoni flow. The present study also evaluates the effect of heating velocity on the bifurcations of the Marangoni flow and indicates that the case with a higher heating velocity gives larger critical Marangoni numbers. Moreover, in this study, we investigate the cause of the second critical Marangoni number and critical frequency disagreement between the experimental results and numerical results, and indicate that the second critical Marangoni number determined through free surface temperature oscillations in the experiment may not correspond to the exact onset of oscillatory Marangoni flow.
Keywords:A1. Computer simulation   A1. Fluid flows   A1. Half-zone liquid bridge   A1. Heat transfer   A1. Marangoni flow   A1. Oscillatory flow   B1. Molten tin
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