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A short review of aging mechanism modeling of proton exchange membrane fuel cell in transportation applications

机译:质子交换膜燃料电池在运输中的老化机理建模简述

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This paper presents a short review of the aging mechanism modeling of proton exchange membrane (PEM) fuel cell in automotive applications. The fuel cell aging mechanism is particularly important for fuel cell transportation applications, because the degradation rates of a fuel cell could increase very fast when operating at different transient conditions, such as: load cycles, start-stop cycles, fuel starvation, high temperature or low humidification. The objective of this paper is to give a state-of-the-art introduction of models for different PEM fuel cell aging phenomena. In the first part of this paper, a summary and analyses of the different aging phenomena that can be observed in PEM fuel cell are made based on literature review. Secondly, a summary of some mathematical PEMFC aging phenomena models is presented, with a focus on the models that describe the aging phenomena related specifically to automotive applications.
机译:本文简要概述了汽车应用中质子交换膜(PEM)燃料电池的老化机理模型。燃料电池老化机制对于燃料电池运输应用尤其重要,因为当在不同的瞬态条件(例如负载循环,起停循环,燃料不足,高温或高温)下运行时,燃料电池的降解速度可能会非常快地增加。低加湿。本文的目的是针对不同的PEM燃料电池老化现象提供最新的模型介绍。在本文的第一部分中,基于文献综述对PEM燃料电池中可观察到的不同老化现象进行了总结和分析。其次,总结了一些数学PEMFC老化现象模型,重点介绍了描述与汽车应用相关的老化现象的模型。

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