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Evaluation of fuel cell system efficiency and degradation at development and during commercialization

机译:在开发和商业化过程中评估燃料电池系统的效率和退化

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摘要

Two primary parameters stand out for characterizing fuel cell system performance. The first and most important parameter is system efficiency. This parameter is relatively easy to define, and protocols for its assessment are already available. Another important parameter yet to be fully considered is system degradation. Degradation is important because customers desire to know how long their purchased fuel cell unit will last. The measure of degradation describes this performance factor by quantifying, for example, how the efficiency of the unit degrades over time. While both efficiency and degradation concepts are readily understood, the coupling between these two parameters must also be understood so that proper testing and evaluation of fuel cell systems is achieved. Tests not properly performed, and results not properly understood, may result in improper use of the evaluation data, producing improper R&D planning decisions and financial investments. This paper presents an analysis of system degradation, recommends an approach to its measurement, and shows how these two parameters are related and how one can be "traded-off" for the other.
机译:在表征燃料电池系统性能方面,有两个主要参数非常突出。第一个也是最重要的参数是系统效率。此参数相对容易定义,并且已经可以使用其评估协议。尚未完全考虑的另一个重要参数是系统性能下降。降级很重要,因为客户希望知道购买的燃料电池单元可以使用多长时间。降级的度量通过量化(例如)设备的效率如何随时间降级来描述此性能因素。尽管效率和降级概念都容易理解,但还必须理解这两个参数之间的耦合,以便实现燃料电池系统的正确测试和评估。测试未正确执行且结果未正确理解,可能会导致评估数据使用不当,从而导致研发计划决策和财务投资不正确。本文介绍了系统性能下降的分析,提出了一种测量系统性能的方法,并说明了这两个参数之间的关系以及如何才能“权衡”另一个参数。

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