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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Thermocapillary Convection and Buoyant-Thermocapillary Convection in the Annular Pools of Silicon Melt and Silicone Oil
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Thermocapillary Convection and Buoyant-Thermocapillary Convection in the Annular Pools of Silicon Melt and Silicone Oil

机译:硅熔体和硅油环形池中的热毛细管对流和浮力-热毛细管对流

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摘要

The thermocapillary convection and buoyant-thermocapillary convection in the annular pool of silicon melt (Pr = 0.011) and silicone oil (Pr = 6.7) with depth d = 10 mm differentially heated at the outer wall and cooled at the inner wall are investigated by 2-D numerical simulation. The numerical results exhibit that the thermocapillary flow is enhanced by buoyancy force for silicon melt while it is weakened for silicone oil. Linear stability analysis indicates that the buoyancy force destabilizes the thermocapillary convection, which is different from that for silicone oil. The detailed reason of different influence of buoyancy force on the thermocapillary flow with different Pr numbers is explained according to present numerical results.
机译:深度为d = 10 mm的硅熔体(Pr = 0.011)和硅油(Pr = 6.7)的环形池中的热毛细管对流和浮力-热毛细管对流在外壁处被不同地加热而在内壁处被冷却了,研究了2 -D数值模拟。数值结果表明,硅熔体的浮力增强了热毛细流动,硅油则减弱了热毛细流动。线性稳定性分析表明,浮力使热毛细对流不稳定,这与硅油不同。根据目前的数值结果,解释了浮力对具有不同Pr值的热毛细流的影响不同的详细原因。

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