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Three-dimensional thermocapillary-buoyancy flow in a shallow molten silicon pool with Cz configuration

机译:Cz结构的浅层熔融硅池中的三维热毛细管浮力流

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In order to understand the characteristics of surface patterns on silicon melt in Czochralski furnaces, we conducted a series of unsteady three-dimensional numerical simulations of thermocapillary-buoyancy flow of a shallow molten silicon pool with Czochralski configuration (depth d = 3 mm). The crucible sidewall is maintained at constant temperature. Bottom and free surfaces are adiabatic or allow heat transfer in the vertical direction. The simulation results indicate that two flow transitions occur with increasing the radial temperature difference along the free surface. At first, the steady two-dimensional flow becomes steady three-dimensional flow and then oscillatory three-dimensional flow. The critical conditions for the onset of the instability were determined. Characteristics of the steady and the oscillatory three-dimensional flows were discussed.
机译:为了了解Czochralski熔炉中硅熔体表面图案的特征,我们对Czochralski构型(深度d = 3 mm)的浅层熔融硅池进行了热毛细管浮力流的一系列非稳态三维数值模拟。坩埚侧壁保持恒温。底部和自由表面是绝热的,或允许热量在垂直方向上传递。仿真结果表明,随着沿自由表面的径向温差增加,发生了两个流动过渡。首先,稳定的二维流变为稳定的三维流,然后变为振荡的三维流。确定了引发不稳定的关键条件。讨论了稳态和振荡三维流的特征。

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