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首页> 外文期刊>Light Metals >MHD OF ALUMINIUM CELLS WITH THE EFFECT OF CHANNELS AND CATHODE PERTURBATION ELEMENTS
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MHD OF ALUMINIUM CELLS WITH THE EFFECT OF CHANNELS AND CATHODE PERTURBATION ELEMENTS

机译:铝离子通道的MHD与通道和阴极微扰元素的影响

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The industry oriented MHD software for aluminium electrolysis cells is updated to take into account the variation of bottom and top surfaces of the cell cavity. The extended model capabilities include the presence of connected channels, height nonuniformities of the cell bottom affecting the liquid metal hydrodynamics and the electric current passage to the cathode with ridges and variable bottom ledge. The numerical results for 500 kA test cell are used to analyze the cell stability under combination of the effects. Perturbations created by the horizontal current density above the carbon elevations lead to the metal/electrolyte interface wave growth, which is opposed by the increased turbulent damping over the bottom with ridges.Optimization of the cell design permits to improve the cell stability and efficiency.
机译:针对铝电解槽的面向行业的MHD软件已更新,以考虑到槽腔底部和顶部表面的变化。扩展的模型功能包括连接通道的存在,影响液体金属流体动力学的电池底部高度不均匀性以及带有脊和可变底部壁架的流向阴极的电流。 500 kA测试电池的数值结果用于分析这些效应组合下的电池稳定性。碳高程上方的水平电流密度产生的扰动导致金属/电解质界面波的增长,而与底部带有凸脊的湍流阻尼的增加相反,电池设计的优化可以提高电池的稳定性和效率。

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