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Space experimental investigation on thermocapillary migration of bubbles 被引量:4

Space experimental investigation on thermocapillary migration of bubbles
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摘要 Results from a space experiment on bubble thermocapillary migration conducted on board the Chinese 22nd recoverable satellite were presented. Considering the temperature field in the cell was disturbed by the accumulated bubbles, the temperature gradient was corrected firstly with the help of the temperature measurement data at six points and numerical simulation. Marangoni number (Ma) of single bubble migrating in the space experiment ranged from 98.04 to 9288, exceeding that in the previous experiment data. The experiment data including the track and the velocity of two bubble thermocapillary migration showed that a smaller bubble would move slower as it was passed by a larger one, and the smaller one would even rest in a short time when the size ratio was large enough. Results from a space experiment on bubble thermocapillary migration conducted on board the Chinese 22nd recoverable satellite were presented. Considering the temperature field in the cell was disturbed by the accumulated bubbles, the temperature gradient was corrected firstly with the help of the temperature measurement data at six points and numerical simulation. Marangoni number (Ma) of single bubble migrating in the space experiment ranged from 98.04 to 9288, exceeding that in the previous experiment data. The experiment data including the track and the velocity of two bubble thermocapillary migration showed that a smaller bubble would move slower as it was passed by a larger one, and the smaller one would even rest in a short time when the size ratio was large enough.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第7期894-904,共11页 中国科学:物理学、力学、天文学(英文版)
基金 the National Natural Science Foundation of China (Grant No. 10432060) the Knowledge Innovation Program of Chinese Academy of Sciences (KJCX2-SW-L05, KACX2-SW-322)
关键词 BUBBLE THERMOCAPILLARY MIGRATION MICROGRAVITY interaction bubble thermocapillary migration microgravity interaction
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