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首页> 外文期刊>Crystal Research and Technology: Journal of Experimental and Industrial Crystallography >Thermocapillary-buoyancy flow of silicon melt in a shallow annular pool
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Thermocapillary-buoyancy flow of silicon melt in a shallow annular pool

机译:浅环形池中硅熔体的热毛细管浮力流

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In order to understand the nature of surface spoke patterns on silicon melt in industrial Czochralski furnaces, a series of unsteady three-dimensional numerical simulations were conducted for thermocapillary-buoyancy flow of silicon melt in annular pool (inner radius r(i)=15 mm, outer radius r(o)=50 mm, depth d=3mm). The pool is heated from the outer cylindrical wall and cooled at the inner wall. Bottom and top surfaces either are adiabatic or allow heat transfer in the vertical direction. Results show that a small temperature difference in the radial direction generates steady roll-cell thermocapillary-buoyancy flow. With large temperature difference, the simulation can predict three-dimensional oscillatory flow, which is characterized by spoke patterns traveling in the azimuthal direction. The small vertical heat flux (3W/cm(2)) does not have significant effects on the characteristics of this oscillatory flow. Details of the flow and temperature disturbances are discussed and the critical conditions for the onset of the oscillatory flow are determined.
机译:为了了解工业Czochralski熔炉中硅熔体表面辐条图案的性质,对环形熔池(内半径r(i)= 15 mm)中硅熔体的热毛细管浮力流进行了一系列非稳态三维数值模拟,外半径r(o)= 50毫米,深度d = 3毫米)。该池从圆柱外壁加热并在内壁冷却。底部和顶部表面是绝热的,或者允许热量在垂直方向上传递。结果表明,沿径向的较小温差可产生稳定的辊腔热毛细血管浮力流。在温差较大的情况下,仿真可以预测三维振荡流,其特征是轮辐模式沿方位角方向传播。较小的垂直热通量(3W / cm(2))对该振荡流的特性没有明显影响。讨论了流量和温度扰动的细节,并确定了产生振荡流的临界条件。

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