氮气对喷射器式PEMFC氢气循环系统性能的影响

Yajie Song, Chao Zhang, Fuqiang Xi, Lei Wang, Xinli Wang
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引用次数: 1

摘要

喷射器具有体积小、成本低、无寄生功耗等优点,已被应用于质子交换膜燃料电池的氢气再循环。来自烟囱的未消耗氢通常含有大量的氮,氮摩尔分数对喷射器再循环性能的影响需要研究。本文建立了二维计算流体力学模型,研究了二次流中氮摩尔分数对喷射器性能的影响。结果表明,喷射器的再循环性能对二次流中氮气摩尔分数的影响较为敏感,这是由于氮气对喷射器内流体混合的影响所致。再循环率与氮摩尔分数呈线性正相关,而氢再循环率呈线性负相关。再循环比和氢气再循环比的最小值分别为238和0.4,表明喷射器的再循环性能是可以接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nitrogen Influence on The Performance of Ejector Based PEMFC Hydrogen Recirculation System
Ejector has been applied for hydrogen recirculation in the proton exchange membrane fuel cell due to its small volume, low cost, and no parasitic power consumption. The unconsumed hydrogen coming from the stack usually contains a lot of nitrogen, and the effect of nitrogen mole fraction on the recirculation performance of the ejector needs to be studied. In this study, a two-dimensional Computational Fluid Dynamics model is developed to study the influence of nitrogen mole fraction in the secondary flow on the ejector’s performance. The results show that the recirculation performance of the ejector is sensitive to nitrogen mole fraction in the secondary flow, which is because of the influence of nitrogen on the fluid mixing inside the ejector. The recirculation ratio and nitrogen mole fraction show a linear positive correlation, while the hydrogen recirculation ratio shows a linear negative correlation. The minimum values of recirculation ratio and hydrogen recirculation ratio are 238 and 0.4 indicating that the recirculation performance of the ejector is acceptable.
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