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3D melt convection in sapphire crystal growth: Evaluation of physical properties

机译:蓝宝石晶体生长中的3D熔体对流:物理性能评估

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摘要

We apply numerical simulation to analyze flow structure and physical properties of sapphire melt during Kyropoulos crystal growth. The Direct Numerical Simulation (DNS) approach was used to investigate 3D features of melt convection in a lab-scale furnace. The importance to account for the effect of internal radiation inside sapphire melt is discussed. For different sets of material properties, we have investigated the effect of the Marangoni and buoyancy driving forces on the melt flow. Results of 3D unsteady modeling are discussed in detail and compared with related experimental data.
机译:我们应用数值模拟来分析Kyropoulos晶体生长过程中蓝宝石熔体的流动结构和物理性质。直接数值模拟(DNS)方法用于研究实验室规模熔炉中熔体对流的3D特征。讨论了解决蓝宝石熔体内部辐射影响的重要性。对于不同组的材料特性,我们研究了Marangoni和浮力驱动力对熔体流动的影响。详细讨论了3D非稳态建模的结果,并将其与相关的实验数据进行了比较。

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