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Experimental study of thermocapillary convection on a liquid bridge consisting of fluid with low Prandtl number in a floating half-zone

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【作者】 孙祉伟; 韩金虎; 戴乐蓉; 解京昌; 胡文瑞;

【Author】 SUN Zhiwei(General Establishment of Space Science and Applications, Chinese Academy of Sciences, Beijing 100080, China)HAN Jinhu(Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China)DAI Lerong(Department of Chemistry, Peking University, Beijing 100871, China)XIE Jingchang and HU Wenrui(Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China)

【机构】 General Establishment of Space Science and Applications; Chinese Academy of Sciences; Beijing 100080; China; Institute of Mechanics; Department of Chemistry; Peking University; Beijing 100871; China;

【摘要】 <正> A device of mercury liquid bridge of floating half-zone is designed to experimentally explore thermo-capillary convection and its instability of a low Prandtl number liquid. Noncontacted diagnostic techniques were developed to monitor surface flow and surface deformation. The surface flow and the influence of a growing surface film (or skin) on the flow were observed It is shown that the film is a key factor in changing the behavior associated with the thermocapillary convection. The experiment indicates that the critical Marangoni number should be much higher than that expected by the numerical simulation. The condition and process of surface film growth are discussed. The surface oscillation of the mercury bridge wrapped with "dirt-film" was observed, and the characteristics and the frequency associated with this oscillation are given.

【Abstract】 A device of mercury liquid bridge of floating half-zone is designed to experimentally explore thermo-capillary convection and its instability of a low Prandtl number liquid. Noncontacted diagnostic techniques were developed to monitor surface flow and surface deformation. The surface flow and the influence of a growing surface film (or skin) on the flow were observed It is shown that the film is a key factor in changing the behavior associated with the thermocapillary convection. The experiment indicates that the critical Marangoni number should be much higher than that expected by the numerical simulation. The condition and process of surface film growth are discussed. The surface oscillation of the mercury bridge wrapped with "dirt-film" was observed, and the characteristics and the frequency associated with this oscillation are given.

  • 【文献出处】 Science in China(Series E:Technological Sciences) ,中国科学(E辑:技术科学)(英文版) , 编辑部邮箱 ,1997年01期
  • 【分类号】P144
  • 【下载频次】33
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