Study Flow Field of Magnesium Electrolyzer by Computer Technology

Ze Sun, G. Lu, Xingfu Song, Shu-ying Sun, Jianguo Yu
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Abstract

In modern times, computer technology is used in various fields in the world. In this paper, CFD(computational fluid dynamics) was applied to build mathematical model to simulate continuous and dispersed multiphase flow in the experimental systems and an industrial electrolyzer. The Volume of Fluid model was used in the mathematical model for multi-phases. Cold model system of complex multiphase behavior of argon gas, water and silicon oil system in terms of dynamic similarity was established to validate the math model. Flow field was measured through PIV (particle-image velocimetry) technology. The results show that the built three dimensional mathematical model was valid for the system and suitable for the electrolyzer in electrolysis magnesium industry. The characteristics of complex multiphase in industrial electrolyzer were discussed in the paper.
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用计算机技术研究镁电解槽的流场
在现代,计算机技术被用于世界各个领域。本文应用计算流体力学(CFD)建立数学模型,对实验系统和工业电解槽中的连续和分散多相流进行了数值模拟。多相流体的数学模型采用流体体积模型。建立了氩气、水和硅油体系动态相似度复杂多相行为的冷模系统,对数学模型进行了验证。采用PIV(粒子图像测速)技术测量流场。结果表明,所建立的三维数学模型对系统是有效的,适用于电解镁工业的电解槽。论述了工业电解槽中复杂多相的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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