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The effect of grid configurations on potential and current density distributions in positive plate of lead-acid battery via numerical modeling

机译:网格构型对数值模拟铅酸蓄电池正极板电位和电流密度分布的影响

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摘要

During the last decades, huge efforts have been made to enhance the efficiency as well as performance of lead-acid batteries. The configuration of grid wires plays an important role in minimizing the ohmic drop and hence, improving its current collecting ability. In the current study, numerical methods have been employed to investigate the effects of grid configuration on the performance of a positive electrode in lead-acid batteries. Potential and current density distributions have been modeled through grid wires, active material and adjacent electrolyte to the surface of each grid. The modeling results are consistent with experimental findings in the literature saying that the optimized diagonal design for grid configuration provides lower total grid weight as well as enhanced current collecting role comparing to other designs such as, conventional, diagonal and expanded metal. This confirms that numerical modeling is a fast, inexpensive and effective method for optimization of the battery grid configuration.
机译:在过去的几十年中,为提高铅酸电池的效率和性能做出了巨大的努力。栅极线的配置在最小化欧姆降并因此提高其电流收集能力方面起着重要作用。在当前的研究中,已经采用数值方法来研究网格结构对铅酸蓄电池中正极性能的影响。电位和电流密度分布已通过网格线,活性材料和每个网格表面附近的电解质建模。建模结果与文献中的实验结果一致,即与常规,对角线和扩展金属网等其他设计相比,针对栅格配置进行优化的对角线设计可提供更低的总栅格重量以及增强的集流作用。这证实了数值建模是一种用于优化电池网格配置的快速,廉价且有效的方法。

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