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Effect of channel dimensions of serpentine flow fields on the performance of a vanadium redox flow battery

机译:蛇形流场通道尺寸对钒氧化还原液流电池性能的影响

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For high current density operation of redox flow batteries, proper circulation of the electrolytes over the active area of the cell is important. In the present paper, we study experimentally the effect of channel dimensions of a serpentine flow field for vanadium redox flow battery applications. The study encompasses three aspects: effect on the extent of felt intrusion into the flow channels, effect on the pressure drop over a cell for a given electrolyte circulation rate, and effect on the electrochemical performance characterized by a number of parameters. Eight variants of channel and/or rib dimensions in serpentine flow fields have been studied in cells of 400 cm(2) and 900 cm(2) active area. A lumped parameter model, validated with water and electrolyte circulation data, has been developed to predict the pressure loss and flow apportionment in the cell. The results show that sensitivity to channel dimensions is more keenly felt in the larger cell with noticeable improvements in pressure drop, peak power density and discharge energy density. Increasing channel width and decreasing rib width is recommended as the ideal strategy to improve the overall performance of the cell.
机译:对于氧化还原液流电池的高电流密度操作,电解液在电池有效区域上的正确循环非常重要。在本文中,我们通过实验研究了蛇形流场通道尺寸对钒氧化还原液流电池应用的影响。该研究包括三个方面:对毡渗入流道的程度的影响,对于给定的电解质循环速率,对电池上的压降的影响,以及对由许多参数表征的电化学性能的影响。蛇形流场中的通道和/或肋骨尺寸的八个变体已在活动区域​​为400 cm(2)和900 cm(2)的单元中进行了研究。已经开发了一个集总参数模型,该模型已通过水和电解质循环数据验证,可以预测电池中的压力损失和流量分配。结果表明,在较大的电池中,更敏锐地感觉到对通道尺寸的敏感性,并在压降,峰值功率密度和放电能量密度方面有了明显改善。建议增加通道宽度和减小肋骨宽度是改善电池整体性能的理想策略。

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