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首页> 外文期刊>Journal of power sources >A three-dimensional numerical model of a micro laminar flow fuel cell with a bridge-shaped microchannel cross-section
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A three-dimensional numerical model of a micro laminar flow fuel cell with a bridge-shaped microchannel cross-section

机译:具有桥形微通道横截面的微层流燃料电池的三维数值模型

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The operation of a laminar flow fuel cell (LFFC) involves complex interplay between various mass and electrochemical transport processes. Hence, to better design and more accurately predict performance, we developed a fully-coupled 3D numerical model that includes all the transport processes and electrochemical phenomena. Specifically, the model is based on the equations for the mass, momentum, species, and charge balances along with Butler-Volmer equations for electrode kinetics. The developed model was in excellent agreement with experimental data on a micro laminar flow fuel cell (μLFFC) with a bridge-shaped microchannel cross-section. Then, we used the model for a parametric study evaluating the influence of different operational and geometrical parameters (bridge aspect ratio, reactant flow rates, oxidant concentration) on the fuel cell performance (peak power density, fuel crossover, crossover current, power losses). The observed correlations were explained on the basis of mass and electrochemical transport phenomena, e.g., the behavior of the depletion zones at the fuel-oxidant and reactant -electrode interfaces. Based on these results, we recommend further design considerations for LFFCs. Although, the model was specifically developed for a particular μLFFC configuration, the computational model can be used to design and predict behavior of a wide variety of LFFC configurations.
机译:层流燃料电池(LFFC)的运行涉及各种质量和电化学传输过程之间的复杂相互作用。因此,为了更好的设计和更准确地预测性能,我们开发了包含所有运输过程和电化学现象的全耦合3D数值模型。具体而言,该模型基于质量,动量,种类和电荷平衡的方程式以及电极动力学的Butler-Volmer方程式。所开发的模型与具有桥形微通道横截面的微层流燃料电池(μLFFC)的实验数据非常吻合。然后,我们将该模型用于参数研究,以评估不同操作和几何参数(桥高宽比,反应物流速,氧化剂浓度)对燃料电池性能(峰值功率密度,燃料交叉,交叉电流,功率损耗)的影响。基于质量和电化学传输现象,例如,燃料-氧化剂和反应物-电极界面处的耗尽区的行为,解释了观察到的相关性。根据这些结果,我们建议对LFFC进行更多设计考虑。尽管该模型是为特定的μLFFC配置专门开发的,但该计算模型可用于设计和预测各种LFFC配置的行为。

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