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Experimental investigation of the effect of channel length on performance and water accumulation in a PEMFC parallel flow field

机译:PEMFC平行流场中通道长度对性能和积水影响的实验研究

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摘要

Longer channels within serpentine flow fields are highly effective at removing liquid water slugs and have little water accumulation; however, the long flow path causes a large pressure drop across the cell. This results in both a significant concentration gradient between the inlet and outlet, and high pumping losses. Parallel flow fields have a shorter flow path and smaller pressure drop between the inlet and outlet. This low pressure drop and multiple routes for reactants in parallel channels allows for significant formation of liquid water slugs and water accumulation. To investigate these differences, a polymer electrolyte membrane fuel cell parallel flow field with the ability to modify the length of the channels was designed, fabricated, and tested. Polarization curves and the performance, water accumulation, and pressure drop were measured during 15 min of 0.5 A cm~(-2) steady-state operation. An analysis of variance was performed to determine if the channel length had a significant effect on performance. It was found that the longer 25 cm channels had significantly higher and more stable performance than the shorter 5 cm channels with an 18% and an 87% higher maximum power density and maximum current density, respectively. Channel lengths which result in a pressure drop, across the flow field, slightly larger than that required to expel liquid water slugs were found to have minimal water accumulation and high performance, while requiring minimal parasitic pumping power.
机译:蛇形流场内的较长通道对去除液态水塞非常有效,并且几乎没有积水。但是,长的流路会导致整个电池的压降很大。这导致入口和出口之间的浓度梯度显着,以及高泵送损失。平行流场具有较短的流路和较小的入口和出口之间的压降。这种低压降和平行通道中反应物的多种途径,使得大量液态水团块和水积聚成为可能。为了研究这些差异,设计,制造和测试了具有改变通道长度的能力的聚合物电解质膜燃料电池平行流场。在0.5 A cm〜(-2)稳态操作的15分钟内,测量了极化曲线以及性能,水的积累和压降。进行方差分析以确定通道长度是否对性能有重大影响。已经发现,较长的25 cm通道比较短的5 cm通道具有更高的性能和更稳定的性能,最大功率密度和最大电流密度分别提高了18%和87%。发现在整个流场中导致压降的通道长度比排出液态水塞所需的通道长度略大,这具有最小的水积聚和高性能,同时需要最小的寄生泵送功率。

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