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首页> 外文期刊>Journal of Crystal Growth >Analysis of 3D unsteady melt flow and crystallization front geometry during a casting process for silicon solar cells
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Analysis of 3D unsteady melt flow and crystallization front geometry during a casting process for silicon solar cells

机译:硅太阳能电池浇铸过程中的3D非稳态熔体流动和结晶前沿几何形状分析

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The paper clarifies characteristics of melt convection during a casting process for silicon solar cells (CSi) and the flow effect on crystallization front geometry. 3D unsteady features of the flow in CSi are found to be due to moderate temperature gradients along the melt-free surface and in the melt, which appeared to be sufficient to generate velocity fluctuations of about 1 cm/s in the large melt volume. It has been found that the flow in squared moulds can be essentially asymmetric, which affects the crystallization front geometry. We present a comparison of calculations of the crystallization front shape using different approaches: with 2D approach neglecting the melt flow, with 2D flow analysis, and with 3D unsteady flow analysis.
机译:本文阐明了硅太阳能电池(CSi)铸造过程中熔体对流的特性以及流动对结晶前沿几何形状的影响。发现CSi中流动的3D非稳态特征是由于沿无熔体表面和熔体中的温度梯度适中,这似乎足以在大熔体体积中产生约1 cm / s的速度波动。已经发现,方形模具中的流动可以基本上是不对称的,这影响了结晶前沿的几何形状。我们对使用不同方法进行的结晶前沿形状的计算进行了比较:使用2D方法忽略了熔体流动,使用2D流动分析以及使用3D非稳态流动分析。

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