Flow-field design of the bipolar plates in polymer electrolyte membrane fuel cell: Problem, progress, and perspective

IF 5 Q2 ENERGY & FUELS
Yong Zhang , Zhengkai Tu
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引用次数: 0

Abstract

As a promising carbon-neutral technology, the polymer electrolyte membrane fuel cell (PEMFC) is gaining considerable attention over the past decades. Many problems in PEMFC performance and durability can be ultimately ascribed to the flow-field design, which is a complex and systematic work owing to the inherent sophisticated nature of the PEMFC with multicomponent mass transportation and multiphysics field coupling. This paper presents a critical review of the state-of-the-art flow-field designs and an in-depth analysis of the key problems involved from a perspective of efficient mass transport within the PEMFC. In particular, flow-optimization principles are discussed specifically for the enhancement in reactant mass transfer, water management, optimized opening ratio, uniformity of flow distribution, and choice of appropriate numerical approaches assisting the flow-field design. The material formability and forming accuracy and their effects are also discussed for metallic bipolar plates. The objective of this review work is to present a comprehensive overview of the problems, progresses, and perspectives of the flow-field designs for bipolar plates in PEMFC and provide a general theoretical instruction for present and future relevant R&D activities that aim at high-performance, durable, and low-cost fuel cells.

聚合物电解质膜燃料电池双极板的流场设计:问题、进展与展望
聚合物电解质膜燃料电池(PEMFC)作为一种前景广阔的碳中性技术,在过去几十年里受到了广泛关注。PEMFC 性能和耐用性方面的许多问题最终都可归咎于流场设计,由于 PEMFC 本身具有多组分质量传输和多物理场耦合的复杂性质,因此流场设计是一项复杂而系统的工作。本文从 PEMFC 内部有效质量传输的角度出发,对最先进的流场设计进行了批判性评述,并对其中涉及的关键问题进行了深入分析。特别是,本文讨论了流场优化原则,尤其是在增强反应物传质、水管理、优化开口率、流场分布均匀性以及选择适当的数值方法辅助流场设计等方面。此外,还讨论了金属双极板的材料成型性和成型精度及其影响。本综述旨在全面概述 PEMFC 中双极板流场设计的问题、进展和前景,并为当前和未来旨在实现高性能、耐用和低成本燃料电池的相关研发活动提供总体理论指导。
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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CiteScore
4.20
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