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Bubble transport by electro-magnetophoretic forces at anode bottom of aluminium cells

机译:铝电池阳极底部通过电磁引力进行的气泡传输

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摘要

Electrically conducting and nonconducting particles and bubbles experience additional forcing in a liquid which carries electric current. These so called electro-magnetophoretic forces are well known in metallurgical applications, like metal purification in vacuum-arc remelting, electro-slag processes, impurity removal orudconcentration change in special castings. However, the effect of electro-magnetophoretic forces has never been considered for aluminium cells where the gas bubbles evolving in the liquid electrolyte are surrounded by an electric current and significant magnetic fields. We present models to estimate the effect of electric current flow in the vicinity of the bubbles and the additionaludpressure distribution resulting from the magnetic forces in the surrounding liquid electrolyte. According to the estimates, this force becomes important for bubbles exceeding 2 mm in size, and could be sufficient to overcome the typical drag force associated with electrolyte flow thereby opposing motion of the bubble along the base of the anode when it is inclined at a slight angle. The effectudcould explain certain features of the anode effect onset.udMathematical models and numerical results are presented and a further implementation in the general MHD code for the aluminium cell design is discussed.
机译:导电和不导电的颗粒和气泡在承载电流的液体中受到额外的强迫。这些所谓的电磁势在冶金应用中是众所周知的,例如真空电弧重熔中的金属提纯,电渣过程,杂质的去除或特殊铸件中浓度的改变。然而,对于铝电解槽从未考虑过电磁势的作用,在铝电解槽中,在液体电解质中演化的气泡被电流和明显的磁场包围。我们提出了一些模型来估计气泡附近的电流流动的影响以及周围液体电解质中的磁力所导致的额外超压分布。根据估算,该力对于尺寸超过2毫米的气泡非常重要,并且可能足以克服与电解质流相关的典型阻力,从而当气泡略微倾斜时会阻止气泡沿阳极底部运动角度。该效果可以解释阳极效应开始的某些特征。 ud给出了数学模型和数值结果,并讨论了用于铝电解槽设计的通用MHD代码的进一步实现。

著录项

  • 作者

    Bojarevics Valdis; Roy Alan;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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