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首页> 外文期刊>Journal of power sources >CFD prediction of shunt currents present in alkaline fuel cells
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CFD prediction of shunt currents present in alkaline fuel cells

机译:CFD预测碱性燃料电池中存在的分流电流

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A CFD study was conducted for the electrolyte transport in a single-cell alkaline fuel cell. The transport model that accounts for the balance of mass, momentum, energy, species and electric charge in the electrolyte was solved. The CFD results captured the presence of primary and secondary (shunt) currents in the liquid electrolyte. The shunt currents were present in the regions adjacent to the separator inlet and exit, but not inside the separator nor in the extended channels. The calculated local shunt current density in the corner regions of the separator inlet and exit was higher than the average primary current. The results also showed that the IR loss due to the electric potential drop at high current densities is comparable to the overpotential loss at the anode. Passive and active mitigation measures against the shunt currents were suggested.
机译:针对单电池碱性燃料电池中的电解质运输进行了CFD研究。解决了解释电解质中质量,动量,能量,种类和电荷平衡的传输模型。 CFD结果捕获了液体电解质中存在一次和二次(并联)电流。分流电流存在于与分离器入口和出口相邻的区域中,但不存在于分离器内部或延伸通道中。在分离器入口和出口的拐角区域中计算出的局部旁路电流密度高于平均初级电流。结果还表明,由于在高电流密度下的电势下降而导致的IR损失与阳极处的过电势损失相当。提出了针对分流电流的被动和主动缓解措施。

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