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A three-dimensional mixed-domain PEM fuel cell model with fully-coupled transport phenomena

机译:具有完全耦合传输现象的三维混合域PEM燃料电池模型

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摘要

A three-dimensional mixed-domain PEM fuel cell model with fully-coupled transport phenomena has been developed in this paper. In this model, after fully justified simplifications, only one set of interfacial boundary conditions is required to connect the water content equation inside the membrane and the equation of the water mass fraction in the other regions. All the other conservation equations are still solved in the single-domain framework. Numerical results indicate that although the fully-coupled transport phenomena produce only minor effects on the overall PEM fuel cell performance, i.e. average current density, they impose significant effects on current distribution, net water transfer coefficient, velocity and density variations, and species distributions. Intricate interactions of the mass transfer across the membrane, electrochemical kinetics, density and velocity variations, and species distributions dictate the detailed cell performances. Therefore, for accurate PEM fuel cell modeling and simulation, the effects of the fully-coupled transport phenomena could not be neglected.
机译:本文建立了具有完全耦合传输现象的三维混合域PEM燃料电池模型。在该模型中,经过充分合理的简化,只需要一组界面边界条件即可连接膜内部的水分方程和其他区域的水质量分数方程。所有其他守恒方程仍在单域框架中求解。数值结果表明,尽管完全耦合的传输现象对整体PEM燃料电池的性能(即平均电流密度)仅产生很小的影响,但它们对电流分布,净水传输系数,速度和密度变化以及物种分布产生了显着影响。跨膜的传质,电化学动力学,密度和速度变化以及物种分布的复杂相互作用决定了详细的电池性能。因此,对于精确的PEM燃料电池建模和仿真,不能忽略全耦合运输现象的影响。

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