Experimental analysis of the dynamic performance of PEM fuel cell under various load changes

A. Oheda, B. Omar, S. Chai, A. Aseeri, A. Savvaris
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引用次数: 2

Abstract

The dynamic performance is one of the most important specifications for Fuel Cell system (FCs). In this paper, practical experimental investigation of dynamic performance and transient responses of Proton Exchange Membrane (PEM) FC under various load conditions are presented using Ballard Nexa (1.2kW) PEMFC system. In order to test different characteristics of FCs, the practical tests have been separated into four different categories: for instance start-up, shut-down, step-up load, and irregular load variation. It is observed that the external load changes the current output proportionally and reverses stack voltage consequently. The purge operation benefits performance recovery and improvement during a constant load and its time constant completely depends on the current working point. Overshoot and undershoot behaviours were observed throughout start up and transience. Magnitudes of overshoot/undershoot voltage show a discrepancy under different current intensities conditions. The operating temperature of the system reacted quickly to current load without observation of overshoot or undershoot event. At the same time the air flow rate is directly affected by the dynamics load demand. Whereas, the increased amount of air flow rate during different step-changes is not identical, but depends on the requirement of internal reaction and flooding intensity. The results presented in this paper can be extended for validation of dynamic behaviour for different FC models.
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各种负载变化下PEM燃料电池动态性能的实验分析
动态性能是燃料电池系统最重要的性能指标之一。本文利用Ballard Nexa (1.2kW)质子交换膜(PEM) FC系统,对不同负载条件下质子交换膜(PEM) FC的动态性能和瞬态响应进行了实验研究。为了测试fc的不同特性,将实际试验分为四类:启动、关闭、升压负载和不规则负载变化。观察到外部负载成比例地改变电流输出,从而反转堆叠电压。在恒定负荷下,吹扫操作有利于性能恢复和提高,其时间常数完全取决于当前工作点。在整个启动和瞬态过程中观察到过冲和过冲行为。在不同的电流强度条件下,超调/欠调电压的幅度存在差异。系统工作温度对电流负荷反应迅速,无超调或过调现象。同时,空气流量也直接受到动态负荷需求的影响。而在不同阶跃变化过程中增加的风量并不相同,而是取决于内部反应的要求和泛洪强度。本文的结果可以推广到验证不同FC模型的动态性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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