Effect of vertical heat transfer on thermocapillary convection in an open shallow rectangular cavity

被引:13
|
作者
Li, You-Rong [1 ]
Zhang, Hong-Ru [1 ]
Wu, Chun-Mei [1 ]
Xu, Jin-Liang [2 ]
机构
[1] Chongqing Univ, Coll Power Engn, Key Lab Low Grade Energy Utilizat Technol & Syst, Minist Educ, Chongqing 400044, Peoples R China
[2] N China Elect Power Univ, Beijing Key Lab New & Renewable Energy, Beijing 102206, Peoples R China
关键词
SURFACE-TENSION-DRIVEN; BENARD-MARANGONI CONVECTION; HORIZONTAL TEMPERATURE-GRADIENT; LIQUID LAYERS; BUOYANCY FLOW; ANNULAR POOL; SILICON MELT; INSTABILITIES; NUMBER; FLUID;
D O I
10.1007/s00231-011-0878-5
中图分类号
O414.1 [热力学];
学科分类号
摘要
In order to understand the effect of the vertical heat transfer on thermocapillary convection characteristics in a differentially heated open shallow rectangular cavity, a series of two- and three-dimensional numerical simulations were carried out by means of the finite volume method. The cavity was filled with the 1cSt silicone oil (Prandtl number Pr = 13.9) and the aspect ratio ranged from 12 to 30. Results show that thermocapillary convection is stable at a small Marangoni number. With the increase of the heat flux on the bottom surface, thermocapillary convection transits to the asymmetrical bi-cellular pattern with the opposite rotation direction. The roll near the hot wall shrinks as the Marangoni number increases. At a large Marangoni number, numerical simulations predict two types of the oscillatory thermocapillary flow. One is the hydrothermal wave, which is dominant only in a thin cavity. The other appears in a deeper cavity and is characterized by oscillating multi-cellular flow. The critical Marangoni number for the onset of the oscillatory flow increases first and then decreases with the increase of the vertical heat flux. The three-dimensional numerical simulation can predict the propagating direction of the hydrothermal wave. The velocity and temperature fields obtained by three-dimensional simulation in the meridian plane are very close to those obtained by two-dimensional simulation.
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页码:241 / 251
页数:11
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