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Numerical simulation of a mini PEMFC stack

机译:小型PEMFC堆的数值模拟

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Fuel cell modeling and simulation has aroused much attention recently because it can probe transport and reaction mechanism. In this paper, a computational fuel cell dynamics (CFCD) method was applied to simulate a proton exchange membrane fuel cell (PEMFC) stack for the first time. The air cooling mini fuel cell stack consisted of six cells, in which the active area was 8 cm~2 (2 cm X 4 cm). With reasonable simplification, the computational elements were effectively reduced and allowed a simulation which could be conducted on a personal computer without large-scale parallel computation. The results indicated that the temperature gradient inside the fuel cell stack was determined by the flow rate of the cooling air. If the air flow rate is too low, the stack could not be effectively cooled and the temperature will rise to a range that might cause unstable stack operation.
机译:燃料电池的建模与仿真近来引起了人们的广泛关注,因为它可以探测运输和反应机理。本文首次将计算燃料电池动力学(CFCD)方法用于模拟质子交换膜燃料电池(PEMFC)堆。空冷微型燃料电池堆由六个电池组成,其中有效面积为8 cm〜2(2 cm X 4 cm)。通过合理的简化,有效地减少了计算元素,并且可以在无需大规模并行计算的情况下在个人计算机上进行仿真。结果表明,燃料电池堆内部的温度梯度由冷却空气的流量确定。如果空气流速太低,则无法有效地冷却电池堆,温度将升高到可能导致电池堆运行不稳定的范围。

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