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Numerical analysis of water transport through the membrane electrolyte assembly of a polymer exchange membrane fuel cell

机译:水通过聚合物交换膜燃料电池的膜电解质组件传输的数值分析

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摘要

The effects of water transport through membrane electrolyte assembly of a polymer exchange membrane fuel cell on cell performance has been studied by a onedimensional, nonisothermal, steady-state model. Three forms of water are considered in the model: dissolved water in the electrolyte or membrane, and liquid water and water vapor in the void space. Phase changes among these three forms of water are included based on the corresponding local equilibriums between the two involved forms. Water transport and its effect on cell performance have been discussed under different operating conditions by using the value and the sign of the net water transport coefficient, which is defined by the net flux of water transported from the anode side to the cathode side per proton flux. Optimal cell performance can be obtained by adjusting the liquid water saturation at the interface of the cathode gas diffusion layer and flow channels.
机译:通过一维非等温稳态模型研究了水通过聚合物交换膜燃料电池的膜电解质组件传输对电池性能的影响。模型中考虑了三种形式的水:电解质或膜中的溶解水,以及空隙中的液态水和水蒸气。基于这两种形式的水之间相应的局部平衡,包括了这三种形式的水之间的相变。已经通过使用净水输送系数的值和符号讨论了在不同操作条件下的水输送及其对电池性能的影响,该净水输送系数的值和符号由每质子通量从阳极侧向阴极侧输送的水的净通量定义。通过调节阴极气体扩散层和流道界面处的液态水饱和度,可以获得最佳的电池性能。

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