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Effect of gas flow-field design in the bipolar/end plates on the steady and transient state performance of polymer electrolyte membrane fuel cells

机译:双极/端板中的气体流场设计对聚合物电解质膜燃料电池稳态和瞬态性能的影响

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In this work the effect of gas flow-field design in the bipolar/end plates on the steady and transient state performance of the polymer electrolyte membrane fuel cell (PEMFC) is presented. Simulations were performed with different flow-field designs, viz. (1) serpentine; (2) parallel; (3) multi-parallel; and (4) discontinuous. The steady-state voltage at fixed current density of 5000 A m~(-2) was highest for discontinuous design. For studying the transient response, the average current density was increased suddenly from 5000 to 8000 Am~(-2). It was seen that when the load level was increased, the voltage level suddenly dropped and then with time leveled off to a value slightly higher than the dropped value. This time for serpentine, parallel, multi-parallel and discontinuous flow-fields were 9.5, 7.5, 8.0 and 16.5 s, respectively. While it was seen that the steady-state performance of the discontinuous type of design was the maximum, its transient response was slow. On the other hand in case of parallel type of design the steady-state performance was low, but the transient response was high. The multi-parallel design offers a unique advantage of both of these properties, viz. high steady-state performance with good transient response, and therefore should perform better than the other designs chosen in this study.
机译:在这项工作中,提出了双极/端板上气体流场设计对聚合物电解质膜燃料电池(PEMFC)稳态和瞬态性能的影响。用不同的流场设计进行仿真。 (1)蛇纹石; (2)并行; (3)多并联; (4)不连续。在不连续设计中,固定电流密度为5000 A m〜(-2)时的稳态电压最高。为了研究瞬态响应,平均电流密度从5000 Am〜(-2)突然增加。可以看出,当负载水平增加时,电压水平突然下降,然后随着时间的流逝平整到一个比下降值稍高的值。蛇形,平行,多平行和不连续流场的时间分别为9.5、7.5、8.0和16.5 s。可以看出,不连续类型设计的稳态性能最大,但其瞬态响应却很慢。另一方面,在并行设计的情况下,稳态性能较低,但瞬态响应较高。多并行设计提供了这两个特性的独特优势,即。高稳态性能和良好的瞬态响应,因此,其性能应优于本研究中选择的其他设计。

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