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聚合物电解质膜燃料电池(PEMFC)多孔气体扩散层中错流的贝克来数分析。

Peclet number analysis of cross-flow in porous gas diffusion layer of polymer electrolyte membrane fuel cell (PEMFC).

作者信息

Suresh P V, Jayanti Sreenivas

机构信息

Department of Chemical Engineering, NIT Warangal, Warangal, 506004, India.

Department of Chemical Engineering, IIT Madras, Chennai, 600036, India.

出版信息

Environ Sci Pollut Res Int. 2016 Oct;23(20):20120-20130. doi: 10.1007/s11356-016-6629-x. Epub 2016 Apr 14.

Abstract

Adoption of hydrogen economy by means of using hydrogen fuel cells is one possible solution for energy crisis and climate change issues. Polymer electrolyte membrane (PEM) fuel cell, which is an important type of fuel cells, suffers from the problem of water management. Cross-flow is induced in some flow field designs to enhance the water removal. The presence of cross-flow in the serpentine and interdigitated flow fields makes them more effective in proper distribution of the reactants on the reaction layer and evacuation of water from the reaction layer than diffusion-based conventional parallel flow fields. However, too much of cross-flow leads to flow maldistribution in the channels, higher pressure drop, and membrane dehydration. In this study, an attempt has been made to quantify the amount of cross-flow required for effective distribution of reactants and removal of water in the gas diffusion layer. Unit cells containing two adjacent channels with gas diffusion layer (GDL) and catalyst layer at the bottom have been considered for the parallel, interdigitated, and serpentine flow patterns. Computational fluid dynamics-based simulations are carried out to study the reactant transport in under-the-rib area with cross-flow in the GDL. A new criterion based on the Peclet number is presented as a quantitative measure of cross-flow in the GDL. The study shows that a cross-flow Peclet number of the order of 2 is required for effective removal of water from the GDL. Estimates show that this much of cross-flow is not usually produced in the U-bends of Serpentine flow fields, making these areas prone to flooding.

摘要

通过使用氢燃料电池来采用氢能经济是解决能源危机和气候变化问题的一种可能方案。聚合物电解质膜(PEM)燃料电池是燃料电池的一种重要类型,存在水管理问题。在一些流场设计中引入错流以增强排水效果。与基于扩散的传统平行流场相比,蛇形流场和交错流场中错流的存在使其在反应物在反应层上的适当分布以及从反应层中排出水方面更有效。然而,过多的错流会导致通道内流动分布不均、压降增大以及膜脱水。在本研究中,已尝试量化在气体扩散层中有效分布反应物和去除水所需的错流量。对于平行、交错和蛇形流动模式,考虑了包含两个相邻通道且底部带有气体扩散层(GDL)和催化剂层的单电池。基于计算流体动力学进行模拟,以研究在GDL中存在错流情况下肋下区域的反应物传输。提出了一种基于佩克莱数的新准则,作为GDL中错流的定量度量。研究表明,要从GDL中有效去除水,需要错流佩克莱数约为2。估计显示,蛇形流场的U形弯处通常不会产生这么多的错流,使得这些区域容易发生水淹。

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