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Numerical analysis of effects of flow channel size on reactant transport in a proton exchange membrane fuel cell stack

机译:流道尺寸对质子交换膜燃料电池堆反应物迁移影响的数值分析

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摘要

Numerical simulation of transport phenomena in a six-cell PEM fuel cell stack is performed to adjust the gas channel size of individual cells to obtain evenly distributed cell voltages. Commercial software, CFD-ACE+, is used as the solution code, and the effects of various combinations of geometric parameters of the channels are investigated, including the channel width ratios (∧) and the heights of the gas channels (h). Furthermore, a six-cell fuel cell stack was assembled for experiments, and the polarization curves of the stack were measured. With the help of the experimental data, the values of the physical and electrochemical parameters adopted in the computation model are determined, and the computation model is then used in numerical simulation. Under the assumption of no dry out in the cells, an even voltage distribution can be obtained if the distribution of reactant gas is uniform among the cells. In this study, better combinations of the channel width ratios and the heights of gas channels for individual cells are proposed to yield a uniform distribution of the reactant gases in the cells. An adjustment of the geometric parameters of gas channels that leads to evenly distributed voltages is attempted, and a 16.5% increase in the performance of the fuel cell stack is observed simply by adjusting the sizes of the gas channels.
机译:对六芯PEM燃料电池堆中的传输现象进行了数值模拟,以调整单个电池的气体通道大小,以获得均匀分布的电池电压。使用商业软件CFD-ACE +作为解决方案代码,并研究了通道几何参数的各种组合的影响,包括通道宽度比(ratio)和气体通道高度(h)。此外,组装六电池燃料电池堆以进行实验,并测量电池堆的极化曲线。借助实验数据,确定计算模型中采用的物理和电化学参数的值,然后将计算模型用于数值模拟。在电池中没有干燥的假设下,如果反应气体在电池中的分布均匀,则可以获得均匀的电压分布。在这项研究中,提出了单个单元的通道宽度比和气体通道高度的更好组合,以产生反应气体在单元中的均匀分布。试图对导致均匀分布的电压的气体通道的几何参数进行调节,并且仅通过调节气体通道的尺寸即可观察到燃料电池堆的性能提高了16.5%。

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