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Transient Analysis of Proton Electrolyte Membrane Fuel Cells (PEMFC) at Start-Up and Failure

机译:启动和故障时质子电解质膜燃料电池(PEMFC)的瞬态分析

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摘要

A two-dimensional, transient, single-phase computational model, incorporating water transport in the membrane and the flow and transport of species in porous gas diffusion electrodes is developed to evaluate the transient performance of a PEMFC with interdigitated gas distributors. The co-flow and counter-flow of the anode and cathode reactants are discussed to address their effects on PEMFC performance and transients. The important role of water transport in the membrane on the transients is demonstrated. The membrane's water intake or outtake determines the duration of the transients. The effect of the operating conditions on steady state and transient performances is outlined. Overshoots and undershoots are observed in the average current density, due to a step change in the cell voltage and the cathode pressure under start-up conditions. Simulation results are used to address the role of auxiliary components in the failure modes of the PEMFC.
机译:建立了二维瞬态单相计算模型,该模型结合了膜中的水传输以及多孔气体扩散电极中物质的流动和传输,以评估具有叉指式气体分配器的PEMFC的瞬态性能。讨论了阳极和阴极反应物的并流和逆流,以解决它们对PEMFC性能和瞬态的影响。证明了水在膜中传输对瞬态的重要作用。膜的进水或出水量决定了瞬态的持续时间。概述了工作条件对稳态和瞬态性能的影响。由于在启动条件下电池电压和阴极压力的阶跃变化,在平均电流密度中会观察到过冲和下冲。仿真结果用于解决辅助组件在PEMFC故障模式中的作用。

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