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Etude locale de la thermique dans les piles à combustibles pour application automobile. Corrélation à la durée de vie

机译:汽车应用燃料电池散热的本地研究。与生活的关系

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摘要

One of the main challenges for Proton Exchange Membrane Fuel Cells development is the performance loss, which largely limits the durability. The study of the degradation phenomena of the different MEA components is a challenge addressed by many researchers, but a study at a stack scale is needed in order to better understand the ageing mechanisms. Indeed, in an industrial fuel cell the operating conditions are not homogeneous as for laboratory fuel cells, especially as regards thermal aspects. The heterogeneities are particularly emphasized for automotive fuel cells, because of the compactness constraint of the cooling circuit. Moreover, the requirements of cold start should be considered, as well as the inertial effects of the stacks and the increased heterogeneities during the driving cycles.In this work, the effects of the temperature heterogeneities and hot spots on the automotive fuel cell performances and degradations are investigated. The study is conducted in different conditions: nominal conditions, load/thermal cycling and New European Driving Cycles (NEDC).The work is composed of an experimental study, which consists of ageing tests on fuel cells and on-line diagnosis at both global and local scales. At the end of the tests, post-mortem analyses of the aged components are conducted. In parallel, a physic-based model is developed in order to predict the local temperature and humidity in the different components of the cell. Then, the impact of the reactive gases and cooling flow fields design on the thermal and water management of the cell is investigated. Finally, the experimental and modeling results are coupled in order to investigate the correlation between heat management, water management and degradations.
机译:质子交换膜燃料电池开发的主要挑战之一是性能损失,这在很大程度上限制了耐久性。对不同MEA组件的降解现象的研究是许多研究人员面临的挑战,但是为了更好地了解老化机理,还需要进行堆栈式研究。实际上,在工业燃料电池中,操作条件与实验室燃料电池不同,尤其在热方面。由于冷却回路的紧凑性约束,对于汽车燃料电池特别强调了异质性。此外,还应考虑冷启动的要求以及电池组的惯性效应和行驶周期中异质性的增加。在这项工作中,温度异质性和热点对汽车燃料电池性能和退化的影响被调查。该研究是在不同条件下进行的:标称条件,负载/热循环和新欧洲行驶循环(NEDC)。这项工作由一项实验研究组成,该研究包括燃料电池的老化测试以及全球和全球的在线诊断本地规模。测试结束时,将对老化的组件进行事后分析。同时,开发了基于物理的模型,以预测电池不同组件中的局部温度和湿度。然后,研究了反应气体和冷却流场设计对电池的热和水管理的影响。最后,将实验结果和模型结果结合起来,以研究热管理,水管理和降解之间的相关性。

著录项

  • 作者

    Nandjou Fredy;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 fr
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