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Coupled computation method of physics fields in aluminum reduction cells

机译:铝电解槽中物理场的耦合计算方法

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Considering importance of study on physics fields and computer simulation for aluminum reduction cells so as to optimize design on aluminum reduction cells and develop new type of cells, based on analyzing coupled relation of physics fields in aluminum reduction cells, the mathematics and physics models were established and a coupled computation method on distribution of electric current and magnetic field, temperature profile and metal velocity in cells was developed. The computational results in 82 kA prebaked cells agree well with the measured results, and the errors of maxium value calculated for three main physics property fields are less than 10%, which proves that the model and arithmetic are available. So the software developed can be not only applied to optimization design on traditional aluminum reduction cells, but also to establishing better technology basis to develop new drained aluminum reduction cells.
机译:考虑到铝电解槽的物理场研究和计算机仿真的重要性,以优化铝电解槽的设计,开发新型电解槽,在分析铝电解槽的物理场耦合关系的基础上,建立了数学模型和物理模型建立了电流和磁场分布,温度分布和金属速度的耦合计算方法。 82 kA预焙电池的计算结果与实测结果吻合良好,三个主要物理性质场的最大值误差均小于10%,证明了该模型和算法的可行性。因此,所开发的软件不仅可以应用于传统铝电解槽的优化设计,而且可以为开发新型排水铝电解槽建立更好的技术基础。

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