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A three-dimensional conductivity model for electrodes in lead-acid batteries

机译:铅酸电池电极的三维电导模型

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In this paper, we develop a three-dimensional conductivity model for the active material in the electrodes of a lead-acid battery. We use the model to investigate the influence that this conductivity has on battery capacity. Previous computer models used for this purpose were two-dimensional. Our three-dimensional model allows electrons to move out of a two-dimensional layer to another layer in order to find conductive pathways to an edge thereby allowing the reaction to occur. By using a number of two-dimensional layers, the actual changes in conductivity taking place in the plates can be more accurately modeled. Because of the many layers of our three-dimensional model, the total number of conductive paths is much greater than the previous two-dimensional models. We extend the two-dimensional models to three-dimensions, and compare the model capacity results with those predicted by the Percolation Theory and Effective Medium Theory. We find that the results of the three-dimensional model closely match the predictions of these theories.
机译:在本文中,我们为铅酸电池的电极中的活性材料建立了三维电导模型。我们使用该模型研究此电导率对电池容量的影响。用于此目的的先前计算机模型是二维的。我们的三维模型允许电子从二维层移到另一层,以便找到通向边缘的导电路径,从而使反应发生。通过使用多个二维层,可以更精确地模拟板中电导率的实际变化。由于三维模型的层次很多,导电路径的总数比以前的二维模型大得多。我们将二维模型扩展到三维模型,并将模型容量结果与渗流理论和有效介质理论预测的结果进行比较。我们发现,三维模型的结果与这些理论的预测非常吻合。

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