Barrel effect in an air-cooled proton exchange membrane fuel cell stack

被引:10
作者
Yu, Xianxian [1 ]
Cai, Shanshan [1 ]
Luo, Xiaobing [1 ]
Tu, Zhengkai [1 ]
机构
[1] Huazhong Univ Sci & Technol, Sch Energy & Power Engn, Wuhan 430074, Peoples R China
基金
中国国家自然科学基金;
关键词
Proton exchange membrane fuel cell; Air-cooled; Reverse pressure drop; Degradation; Consistency; PERFORMANCE;
D O I
10.1016/j.energy.2023.129668
中图分类号
O414.1 [热力学];
学科分类号
摘要
The performance of a single cell affects the proton exchange membrane fuel cell (PEMFC) stack's overall output performance, and the barrel effect occurs in PEMFC stacks. This research presents strategies to alleviate single cell performance degradation in an air-cooled PEMFC stack. Results show that the poorest cell performance is caused by location-related issues. By embedding a copper plate in the position of cell-1, a hollow chamber replaces the cell-1 flow field. The stack equipped with an embedded copper plate achieved its peak power at 2151.22 W under a current of 40 A, signifying an 8.6 % enhancement in performance compared to the original stack. The incorporation of carbon paper and copper plates contributes to the establishment of a uniform stress distribution within the stack, consequently resulting in enhanced voltage consistency, characterized by a minimal variance value of approximately 0.033. Furthermore, the output performance of cell-1 increased by 0.101 V in the stack with copper plate compared to the original stack under 30 A current loading. By introducing a copper plate, the hollow gas chamber replaces the low pressure-drop cells position, effectively resolving the barrel effect in the PEMFC stack, and alleviating the single-cell degradation problem.
引用
收藏
页数:10
相关论文
共 44 条
[11]   Optimization of the performance, operation conditions and purge rate for a dead-ended anode proton exchange membrane fuel cell using an analytical model [J].
Dashti, Isar ;
Asghari, Saeed ;
Goudarzi, Mohammad ;
Meyer, Quentin ;
Mehrabani-Zeinabad, Arjomand ;
Brett, Dan J. L. .
ENERGY, 2019, 179 :173-185
[12]   An open-cathode PEMFC efficiency optimization strategy based on exergy analysis and data-driven modeling [J].
Deng, Bo ;
Huang, Wentao ;
Jian, Qifei .
ENERGY, 2023, 264
[13]   Recent development in design a state-of-art proton exchange membrane fuel cell from stack to system: Theory, integration and prospective [J].
Fan, Lixin ;
Tu, Zhengkai ;
Chan, Siew Hwa .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (21) :7828-7865
[14]   Direct methanol fuel cell (DMFC) and H2 proton exchange membrane fuel (PEMFC/H2) cell performance under atmospheric flight conditions of Unmanned Aerial Vehicles [J].
Gonzalez-Espasandin, Oscar ;
Leo, Teresa J. ;
Raso, Miguel A. ;
Navarro, Emilio .
RENEWABLE ENERGY, 2019, 130 :762-773
[15]   Optimization of entrance geometry and analysis of fluid distribution in manifold for high-power proton exchange membrane fuel cell stacks [J].
Huang, Fuxiang ;
Qiu, Diankai ;
Peng, Linfa ;
Lai, Xinmin .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (52) :22180-22191
[16]   Analysis and improvement of flow distribution in manifold for proton exchange membrane fuel cell stacks [J].
Huang, Fuxiang ;
Qiu, Diankai ;
Xu, Zhutian ;
Peng, Linfa ;
Lai, Xinmin .
ENERGY, 2021, 226
[17]   Evaluating the effect of refined flow channels in a developed biomimetic flow field on PEMFC performance [J].
Huang, Haozhong ;
Li, Xuan ;
Li, Songwei ;
Guo, Xiaoyu ;
Liu, Mingxin ;
Wang, Tongying ;
Lei, Han .
ENERGY, 2023, 266
[18]   Simulation of fine mesh implementation on the cathode for proton exchange membrane fuel cell (PEMFC) [J].
Hwang, Jenn-Jiang ;
Dlamini, Mangaliso Menzi ;
Weng, Fang-Bor ;
Chang, Tseng ;
Lin, Chih-Hong ;
Weng, Shih-Cheng .
ENERGY, 2022, 244
[19]   Promoting developments of hydrogen production from renewable energy and hydrogen energy vehicles in China analyzing a public-private partnership cooperation scheme based on evolutionary game theory [J].
Jiang, Wenyin ;
Liu, Can ;
Sun, Zhigang .
ENERGY, 2023, 278
[20]   Designing the next generation of proton-exchange membrane fuel cells [J].
Jiao, Kui ;
Xuan, Jin ;
Du, Qing ;
Bao, Zhiming ;
Xie, Biao ;
Wang, Bowen ;
Zhao, Yan ;
Fan, Linhao ;
Wang, Huizhi ;
Hou, Zhongjun ;
Huo, Sen ;
Brandon, Nigel P. ;
Yin, Yan ;
Guiver, Michael D. .
NATURE, 2021, 595 (7867) :361-369