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Numerical calculation of thermal field and heat transfer coefficient for 160 kA aluminum reduction cell

机译:160 kA铝电解槽热场和传热系数的数值计算

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摘要

The principle of thermal flux being constant in heat-flow-tube and the principle of heat balance were applied to analyze and calculate the steady-state thermal field and the electrolyte-ledge heat transfer coefficient of aluminum reduction cell by finite element method. The calculated results show that the melt-ledge heat transfer coefficient in the 160kA prebaked anode aluminum reduction cell of Guizhou Aluminum Smelter is higher than that of other cells of the same current. It is also found that the electrolyte and metal flow much faster, which may be the results of poor bus bar arrangements. Meanwhile, the calculated results of melt-ledge heat transfer coefficient by heat-flow-tube method are almost in full agreement with the former works. This verifies the applicability of this method.
机译:运用热流管中的热通量恒定原理和热平衡原理,通过有限元方法对铝还原电池的稳态热场和电解质-壁架传热系数进行了分析计算。计算结果表明,贵州铝冶炼厂的160kA预焙阳极铝还原电解槽的熔壁传热系数高于其他相同电流的电解槽。还发现电解质和金属的流动快得多,这可能是不良的母线布置的结果。同时,用热流管法计算熔体-壁架传热系数的结果与以前的工作几乎完全吻合。这验证了该方法的适用性。

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