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The hydrothermal wave of large-Prandtl-number fluid in a shallow cavity 被引量:3
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作者 TANG ZeMei & HU WenRui National Microgravity Laboratory,Institute of Mechanics,Chinese Academy of Sciences,Beijing 100080,China 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2007年第6期787-796,共10页
The hydrothermal wave was investigated numerically for large-Prandtl-number fluid (Pr = 105.6) in a shallow cavity with different heated sidewalls. The traveling wave appears and propagates in the direction opposite t... The hydrothermal wave was investigated numerically for large-Prandtl-number fluid (Pr = 105.6) in a shallow cavity with different heated sidewalls. The traveling wave appears and propagates in the direction opposite to the surface flow (upstream) in the case of zero gravity when the applied temperature difference grows and over the critical value. The phase relationships of the disturbed velocity,temperature and pressure demonstrate that the traveling wave is driven by the disturbed tem-perature,which is named hydrothermal wave. The hydrothermal wave is so weak that the oscillatory flow field and temperature distribution can hardly be observed in the liquid layer. The exciting mechanism of hydrothermal wave is analyzed and discussed in the present paper. 展开更多
关键词 HYDROTHERMAL wave numerical simulation microgravity The HYDROTHERMAL WAVE was investigated numerically for large-Prandtl-number FLUID (Pr = 105.6) in a shallow cavity with different heated sidewalls. The TRAVELING WAVE appears and propagates in the direction opposite to the surface flow (upstream) in the case of zero gravity when the applied TEMPERATURE difference grows and over the critical value. The phase relationships of the disturbed velocity TEMPERATURE and pressure demonstrate that the TRAVELING WAVE IS driven by the disturbed temperature which IS named HYDROTHERMAL wave. The HYDROTHERMAL WAVE IS so weak that the oscillatory flow field and TEMPERATURE distribution can hardly be observed in the liquid layer. The exciting mechanism of HYDROTHERMAL WAVE IS analyzed and discussed in the present paper. ……
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