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首页> 外文期刊>International Journal of Heat and Mass Transfer >Effect of pool rotation on flow pattern transition of silicon melt thermocapillary flow in a slowly rotating shallow annular pool
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Effect of pool rotation on flow pattern transition of silicon melt thermocapillary flow in a slowly rotating shallow annular pool

机译:池旋转对缓慢旋转的浅环形池中硅熔体热毛细管流的流型转变的影响

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摘要

In order to understand the mechanism of the flow pattern transitions on silicon melt in Czochralski furnaces, we conducted a series of unsteady three-dimensional numerical simulations of silicon melt flow in a slowly rotating shallow annular pool in the counter-clockwise direction. The pool was heated from the outer cylinder and cooled at the inner cylinder. The temperature differences between the vertical outer and inner cylinders ranged from 5 K to 28 K and annular pool rotation rate from 0 and 2 rpm. Bottom and top surfaces of the melt pool were adiabatic. The simulation results indicate that two flow transitions occur when increasing the radial temperature difference along the free surface. At first, the steady two-dimensional flow becomes the first hydrothermal wave and then the second hydrothermal wave with less wave number. The critical conditions for the onset of the instability and the transition zone between the first and the second hydrothermal wave are determined at various rotation rates. Characteristics of the steady and the three-dimensional flows are discussed.
机译:为了了解Czochralski熔炉中硅熔体上流态转变的机理,我们进行了一系列非恒定的三维数值模拟,研究了硅熔体在缓慢旋转的浅环形池中沿逆时针方向流动的情况。该池从外缸加热,并在内缸冷却。垂直外圆柱和内圆柱之间的温差范围为5 K至28 K,环形池旋转速率为0和2 rpm。熔池的底部和顶部表面是绝热的。仿真结果表明,当沿自由表面增加径向温度差时,会发生两个流动过渡。首先,稳定的二维流成为波数较少的第一热液波,然后成为第二热液波。在各种旋转速率下确定用于不稳定的临界条件以及第一和第二热液波之间的过渡区域。讨论了稳态流动和三维流动的特征。

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