Performance Investigation of a Novel Staggered Round Table Channel for Proton Exchange Membrane Fuel Cells

IF 3.6 4区 工程技术 Q3 ENERGY & FUELS Energy technology Pub Date : 2024-10-29 DOI:10.1002/ente.202401226
Xiaohui Jiang, Yangyang Chen, Yong Zhang, Meng Gu, Kehui Xiong, Xi Yang
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Abstract

Based on the internal mass transfer of a proton exchange membrane fuel cell (PEMFC), a novel staggered round table channel is proposed, namely, round table stoppers are arranged on both sides of the channel and in the direction of gas flow. The study systematically investigates the effects of various structural parameters on the PEMFC performance, including the arrangement of round tables on both sides of the channel, radius, degree of sparseness, and number. It is found that the staggered arrangement can improve the cell performance more significantly, and the current density can be increased by 5.0% compared with the direct channel. With the proper increase of the radius and number of round tables, the round table stopper forces the reactant to diffuse downward and improves the uniformity of reactant distribution. Compared with other sparsity, the equidistant arrangement of stoppers in the channel is conductive to accelerating the convective mass transfer and drainage characteristics of the cell. As shown by numerical analysis results, the performance and dewatering efficiency of PEMFC are the best when the round tables on both sides are staggered, the radius is 0.65 mm, the number is 10, and the round table in the channel is arranged equidistantly.

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质子交换膜燃料电池新型交错圆台通道的性能研究
基于质子交换膜燃料电池(PEMFC)的内部传质,提出了一种新型交错圆台通道,即在通道两侧和气体流动方向布置圆台挡板。研究系统地考察了各种结构参数对 PEMFC 性能的影响,包括通道两侧圆台的布置、半径、稀疏程度和数量。研究发现,交错排列能更明显地改善电池性能,与直接通道相比,电流密度可提高 5.0%。随着圆台半径和数量的适当增加,圆台挡板迫使反应物向下扩散,改善了反应物分布的均匀性。与其他疏导方式相比,在通道中等距离布置挡板有利于加速电池的对流传质和排水特性。数值分析结果表明,当两侧圆台交错排列、半径为 0.65 毫米、数量为 10 个、通道内圆台等距排列时,PEMFC 的性能和脱水效率最佳。
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来源期刊
Energy technology
Energy technology ENERGY & FUELS-
CiteScore
7.00
自引率
5.30%
发文量
0
审稿时长
1.3 months
期刊介绍: Energy Technology provides a forum for researchers and engineers from all relevant disciplines concerned with the generation, conversion, storage, and distribution of energy. This new journal shall publish articles covering all technical aspects of energy process engineering from different perspectives, e.g., new concepts of energy generation and conversion; design, operation, control, and optimization of processes for energy generation (e.g., carbon capture) and conversion of energy carriers; improvement of existing processes; combination of single components to systems for energy generation; design of systems for energy storage; production processes of fuels, e.g., hydrogen, electricity, petroleum, biobased fuels; concepts and design of devices for energy distribution.
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