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An optimized microstructure to minimizing in-plane and through-plane pressure drops of fibrous materials: Counter-intuitive reduction of gas diffusion layer permeability with porosity

机译:优化的微观结构,可最大程度地减少纤维材料的平面内和平面内压降:孔隙率反而降低了气体扩散层的渗透性

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摘要

The present study experimentally investigates the realistic functionality of in-plane and through-plane pressure drops of layered fibrous media with porosity, fiber diameter, fiber spacing, fiber-fiber angles and fiber-flow angles. The study also reveals that pressure drop may increase with porosity and fiber diameter under specific circumstances. This counter-intuitive point narrows down the validity range of widely-used permeability-porosity-diameter models or correlations. It is found that, for fibrous materials, the most important parameter that impacts the in-plane pressure drop is not their porosities but the number of fibers extended in the flow direction.
机译:本研究实验研究了层状纤维介质的平面内和平面内压降的实际功能,这些孔隙率,纤维直径,纤维间距,纤维-纤维角度和纤维流动角度。研究还表明,在特定情况下,压降可能随孔隙率和纤维直径的增加而增加。这个违反直觉的观点缩小了广泛使用的渗透率-孔隙率-直径模型或相关性的有效范围。已经发现,对于纤维材料,影响平面内压降的最重要参数不是其孔隙率,而是在流动方向上延伸的纤维数量。

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