质子交换膜燃料电池(PEMFC)水/热管理进展:从理论到当前挑战和实时故障诊断方法

Hossein Pourrahmani , Adel Yavarinasab , Majid Siavashi , Mardit Matian , Jan Van herle
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引用次数: 27

摘要

质子交换膜燃料电池(PEMFC)是内燃机(ICE)减少污染的一种很有前途的替代品。PEMFC的最新进展正朝着实现更高的功率密度、减少换料时间和减少降解的方向发展,以促进氢迁移率的商业化。模型辅助堆组件开发、诊断和管理对于确保改进堆设计和操作以应对PEMFC现有的实施挑战至关重要。过去的评论通常涉及特定方面,很难向读者全面了解水管理方面的关键挑战和进展。本文旨在提供一个全面的来源,从实验、分析和数值的角度回顾烟囱的关键操作挑战和解决方案,以改善水/热管理和冷启动。除了介绍开发分析模型的基本理论外,还介绍了流场设计、纳米流体冷却剂和冷启动方法的最新进展。此外,还描述了微观结构性能和多孔层设计对水/热管理的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Progress in the proton exchange membrane fuel cells (PEMFCs) water/thermal management: From theory to the current challenges and real-time fault diagnosis methods

Proton Exchange Membrane Fuel Cells (PEMFCs) are known as a promising alternative for internal combustion engines (ICE) to reduce pollution. Recent progress of PEMFCs is heading towards achieving higher power densities, reducing the refueling time, and decreasing the degradations, to facilitate the commercialization of hydrogen mobility. Model-assisted stack component development, diagnosis, and management are essential to ensure improved stack design and operation for tackling the existing implementation challenges of PEMFCs. Past reviews usually touched on a specific aspect, which can hardly provide the readers a complete picture of the key challenges and advances in water management. This paper aims at delivering a comprehensive source to review, from both experimental, analytical, and numerical viewpoints, the key operational challenges, and solutions of the stack to improve water/thermal management and cold start. In addition to presenting the fundamental theory to develop an analytical model, the recent advances in the flow field design, nanofluid coolants, and cold-start methods. Furthermore, the impacts of microstructural properties and the design of the porous layers on the water/thermal management are described.

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