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Effects of cell-to-cell fuel mal-distribution on fuel cell performance and a means to reduce mal-distribution using MEMS micro-valves

机译:电池间燃料分配不均对燃料电池性能的影响以及使用MEMS微型阀减少分配不均的方法

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Achieving uniform flow among the cells of a fuel cell stack plays a significant role in being able to operate at maximum capability and efficiency. This paper presents experimental data showing the importance of cell-to-cell fuel flow balancing on fuel cell performance, and a fuel cell energy management (FCEM) technique that has demonstrated the ability to improve stack performance. In a specially instrumented four-cell polymer electrolyte fuel cell that allows external control of the air, fuel, and water-cooling flows to each cell, fuel to a single cell was reduced. V-I curves collected under these unbalanced conditions are compared to curves collected when the fuel flow to each cell was balanced. Reducing the fuel flow to a single cell by 11 percent decreased the V-I curve cutoff load by 10 percent-demonstrating the degree of negative effect that unbalanced fuel flows can have on stack performance. Typical fuel cell stacks have no dynamic means to keep flows in the stack balanced between the cells, but through the use of custom-built, piezoelectric micro-valves, a simple flow control strategy, and this custom four-cell laboratory stack, the positive effects of FCEM flow balancing at three different fuel flow rates was demonstrated.
机译:在燃料电池堆的电池之间实现均匀的流动在能够以最大的能力和效率进行操作中起着重要的作用。本文提供了实验数据,这些数据表明了电池间燃料流平衡对燃料电池性能的重要性,以及一种燃料电池能量管理(FCEM)技术,该技术已证明能够提高电池组性能。在允许外部控制流向每个电池的空气,燃料和水冷却的特殊仪表化四电池聚合物电解质燃料电池中,减少了单个电池的燃料。将在这些不平衡条件下收集的V-I曲线与平衡到每个电池的燃料流量时收集的曲线进行比较。将流向单个电池的燃料流量减少11%,可将V-I曲线截止负荷降低10%,这表明不平衡的燃料流量可能会对电池组性能产生负面影响。典型的燃料电池堆没有动态的方法来保持电池堆之间的流动平衡,但是通过使用定制的压电微型阀,简单的流量控制策略以及这种定制的四电池实验室堆,正极展示了在三种不同燃料流量下FCEM流量平衡的效果。

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