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Steady thermocapillary-buoyant convection in a shallow annular pool.Part 2:Two immiscible fluids 被引量:2

Steady thermocapillary-buoyant convection in a shallow annular pool.Part 2:Two immiscible fluids
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摘要 This work is devoted to the study of steady thermocapillary-buoyant convection in a system of two horizontal superimposed immiscible liquid layers filling a lateral heated thin annular pool.The governing equations are solved using an asymptotic theory for the aspect ratios ε→ 0.Asymptotic solutions of the velocity and temperature fields are obtained in the core region away from the cylinder walls.In order to validate the asymptotic solutions,numerical simulations are also carried out and the results are compared to each other.It is found that the present asymptotic solutions are valid in most of the core region.And the applicability of the obtained asymptotic solutions decreases with the increase of the aspect ratio and the thickness ratio of the two layers.For a system of gallium arsenide (lower layer) and boron oxide (upper layer),the buoyancy slightly weakens the thermocapillary convection in the upper layer and strengthens it in the lower layer. This work is devoted to the study of steady thermocapillary-buoyant convection in a system of two horizontal superimposed immiscible liquid layers filling a lateral heated thin annular pool.The governing equations are solved using an asymptotic theory for the aspect ratios ε→ 0.Asymptotic solutions of the velocity and temperature fields are obtained in the core region away from the cylinder walls.In order to validate the asymptotic solutions,numerical simulations are also carried out and the results are compared to each other.It is found that the present asymptotic solutions are valid in most of the core region.And the applicability of the obtained asymptotic solutions decreases with the increase of the aspect ratio and the thickness ratio of the two layers.For a system of gallium arsenide (lower layer) and boron oxide (upper layer),the buoyancy slightly weakens the thermocapillary convection in the upper layer and strengthens it in the lower layer.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2011年第5期636-648,共13页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China (50776102) the Fundamental Research Funds for the Central Universities (CDJXS1041148)
关键词 Thermocapillary-buoyant flow Asymptotic solution Shallow annular pool Two-layer system Thermocapillary-buoyant flow · Asymptotic solution · Shallow annular pool · Two-layer system
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