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Applicability of LES turbulence modeling for CZ silicon crystal growth systems with traveling magnetic field

机译:LES湍流模型在具有行进磁场的CZ硅晶体生长系统中的适用性

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摘要

To examine the applicability of LES turbulence modeling for CZ silicon crystal growth systems with traveling magnetic fields, LES calculations with Smagorinsky-Lilly turbulence model and van Driest damping at the solid walls are carried out. The program package for the calculations was developed on the basis of the open-source code library OpenFOAM~?. A previously published laboratory model with low temperature melt InCaSn, a 20" crucible, and process parameters corresponding to industrial Czochralski silicon systems is considered. Flow regimes with two crystal and crucible rotation rates and with different strengths of the traveling magnetic field "down" are analyzed. The calculated distributions of averaged temperature and standard temperature deviations are compared with measured ones in the laboratory system, and a relatively good agreement between them is shown. The influence of chosen time steps and grid sizes is analyzed by comparing Fourier spectra of temperature time-autocorrelation functions and temperature spatial distributions, and it is shown that the used moderate meshes of few hundred thousand cells can be applied for practical calculations.
机译:为了检验LES湍流模型在具有行进磁场的CZ硅晶体生长系统中的适用性,使用Smagorinsky-Lilly湍流模型和固体壁处的van Driest阻尼进行了LES计算。用于计算的程序包是在开源代码库OpenFOAM〜?的基础上开发的。考虑了先前发布的具有低温熔体InCaSn,20“坩埚和与工业Czochralski硅系统相对应的工艺参数的实验室模型。具有两种晶体和坩埚旋转速率以及不同的向下传播磁场强度的流态为在实验室系统中,将计算出的平均温度和标准温度偏差的分布与实测值进行比较,并显示出它们之间的相对较好的一致性,并通过比较温度时间的傅立叶光谱来分析所选时间步长和网格尺寸的影响自相关函数和温度空间分布,表明所用的几十万个单元的中等网格可以用于实际计算。

著录项

  • 来源
    《Journal of Crystal Growth》 |2010年第21期|p.3225-3234|共10页
  • 作者单位

    Institute of Physics, University of Latvia, Miera Street 32, LV-2169, Salaspils, Latvia,Faculty of Physics and Mathematics, University of Latvia, ZeJJu Street 8, LV-1002, Riga, Latvia;

    Faculty of Information Technologies, Ventspils University College, inzenieru Street 101a, LV-3600, Ventspils, Latvia;

    Faculty of Physics and Mathematics, University of Latvia, ZeJJu Street 8, LV-1002, Riga, Latvia;

    Faculty of Physics and Mathematics, University of Latvia, ZeJJu Street 8, LV-1002, Riga, Latvia;

    Faculty of Physics and Mathematics, University of Latvia, ZeJJu Street 8, LV-1002, Riga, Latvia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A1. Computer simulation; A1. Convection; A1. Fluid flows; A1. Heat transfer; A2. Magnetic field assisted Czochralski method;

    机译:A1。计算机仿真;A1。对流;A1。流体流动;A1。传播热量;A2。磁场辅助切克劳斯基方法;
  • 入库时间 2022-08-17 13:19:19

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