Bubble Dynamics and Heat Transfer in Microgravity Pool Boiling

被引:0
|
作者
Zhao, Jian-Fu [1 ]
机构
[1] Chinese Acad Sci, Inst Mech, Natl Micrograv Lab, 15 Beisihuan Xilu, Beijing 100190, Peoples R China
来源
ADVANCED RESEARCH IN PHYSICS AND ENGINEERING | 2010年
基金
中国国家自然科学基金;
关键词
microgravity; pool boiling; bubble dynamics; heat transfer; THIN WIRES;
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Boiling is an extremely complicated and illusive process. Microgravity experiments offer a unique opportunity to study the complex interactions without external forces, such as buoyancy, which can affect the bubble dynamics and the related heat transfer. Furthermore, they can also provide a means to study the actual influence of gravity on the boiling. Two research projects on pool boiling in microgravity have been conducted aboard the Chinese recoverable satellites. Ground-based experiments both in normal gravity and in short-term microgravity in the Drop Tower Beijing and numerical simulations have also been performed. Steady boiling of R113 on thin platinum wires was studied with a temperature-controlled heating method, while quasi-steady boiling of FC-72 on a plane plate was investigated with an exponentially increasing heating voltage. It was found that the bubble dynamics in microgravity has a distinct difference from that in normal gravity, and that the heat transfer characteristic is depended upon the bubble dynamics. Lateral motions of bubbles on the heaters were observed before their departure in microgravity. The surface oscillation of the merged bubbles due to lateral coalescence between adjacent bubbles drove it to detach from the heaters. Slight enhancement of heat transfer on wires is observed in microgravity, while diminution is evident for high heat flux in the plate case.
引用
收藏
页码:54 / +
页数:2
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