Experimental and numerical investigation of obstacle effect on the performance of PEM fuel cell

障碍物 质子交换膜燃料电池 材料科学 压力降 燃烧 机械 电压 氢燃料 电流(流体) 航程(航空) 燃料电池 核工程 汽车工程 环境科学 电气工程 热力学 化学工程 化学 复合材料 物理 工程类 有机化学 法学 政治学
作者
A.A. Ebrahimzadeh,I. Khazaee,Ahmad Fasihfar
出处
期刊:International Journal of Heat and Mass Transfer [Elsevier]
卷期号:141: 891-904 被引量:55
标识
DOI:10.1016/j.ijheatmasstransfer.2019.07.034
摘要

Fuel cells are an alternative energy technology that generates electric energy through the reaction between hydrogen and oxygen. These devices are particularly interesting due to high efficiencies relative to traditional combustion engines and low emissions, producing only heat and water as waste products. One of the key parameters in designing this type of fuel cell is the shape and dimensions of gas flow field channels on the bipolar plates. In this research, the obstacle is simulated by selecting the obstacle geometry in the channel path, and after choosing the best range (height), the best obstacle width is analyzed to have better performance. The simulation is done for the non-obstacle case and obstacles with 0.5, 1, 1.5 and 2 mm heights and 0.9, 1.8, 2.7 and 3.6 mm widths, respectively. The obtained results for PEMFC show that the height of 1.5 mm and the width of 3.6 mm have the highest impact on the fuel cell efficiency regarding species consumption, pressure drop and current density. Furthermore, for the best geometry dimension and arrangement of obstacles four types of obstacle including triangular, cylindrical, square and trapezoidal are simulated. Finally fuel cell with triangular and square obstacles as optimum flow field is designed, manufactured and tested. The results have shown that using a triangular obstacle at a voltage of 0.6 V, the current density is increased by more than 50% compared to unobstructed.
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