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首页> 外文期刊>JOM >Numerical Simulation of Alumina-Mixing Process with a Multicomponent Flow Model Coupled with Electromagnetic Forces in Aluminum Reduction Cell
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Numerical Simulation of Alumina-Mixing Process with a Multicomponent Flow Model Coupled with Electromagnetic Forces in Aluminum Reduction Cell

机译:铝还原池中多因素流模型与电磁力耦合的氧化铝混合过程数值模拟

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摘要

An extended computational fluid dynamics model combined with the driving forces of anode gas bubbles and electromagnetic forces (EMFs) was developed for the alumina-mixing process in aluminum reduction cells. A practical feeding scheme and the consuming rate of alumina depending on the local current intensity of the bath-metal interface were considered in the simulation. A comparative numerical study was carried out using the models with and without considering the EMFs. The results show that considering different driving forces in modeling can lead to different results for alumina mixing in the cell. The existence of the bubble movement makes alumina disperse more quickly in local areas, and it greatly contributes to the vertical dispersion in the early stage of mixing. The EMF plays a more important role in the long-range transportation of alumina in the cell. Both forces should be taken into consideration in the modeling because they have a positive influence on distribution uniformity and the dispersion rate of alumina.
机译:结合阳极气泡和电磁力(EMF)的驱动力,建立了扩展的计算流体动力学模型,用于铝还原池中的氧化铝混合过程。模拟中考虑了实际的进料方案和氧化铝的消耗率,取决于氧化铝与熔池金属界面的局部电流强度。使用带有和不带有EMF的模型进行了比较数值研究。结果表明,在模型中考虑不同的驱动力会导致电解池中氧化铝混合的结果不同。气泡运动的存在使氧化铝在局部区域分散得更快,并且极大地促进了混合早期的垂直分散。 EMF在电解池中氧化铝的远距离运输中起着更重要的作用。在建模中应考虑这两个力,因为它们对氧化铝的分布均匀性和分散速率具有积极影响。

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