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Roughness effects of gas diffusion layers on droplet dynamics in PEMFC flow channels

机译:气体扩散层对PEMFC流动通道液滴动力学的粗糙度效应

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Water management remains one of the major challenges in optimising the performance of PEMFCs, in which liquid accumulation and removal in gas diffusion layers (GDLs) and flow channels should be addressed. Here, effects of GDL surface roughness on the water droplet removal inside a PEMFC flow channel have been investigated using the Volume of Fluid method. Rough surfaces are generated according to realistic GDL properties by incorporating RMS roughness and roughness wavelength as the main characteristic parameters. Droplet dynamics including emergence, growth, detachment, and removal in flow channels with various airflow rates are simulated on rough substrates. The influences of airflow rate on droplet dynamics are also discussed by comparing the detachment time and droplet morphology. The liquid removal efficiency subject to different surface roughness parameters is evaluated by droplet detachment time and elongation, and regimes of detachment modes are identified based on the droplet breakup location and detachment ratio. The results suggest that rough surfaces with higher RMS roughness can facilitate the removal of liquid inside flow channel. Whilst surface roughness wavelength is found less significant to the liquid removal efficiency. The results here provide qualitative assessments on identifying the key surface characteristics controlling droplet motion in PEMFC channels. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:水管理仍然是优化PEMFC的性能方面的主要挑战之一,其中应解决气体扩散层(GDL)和流动通道中的液体积累和去除。这里,使用流体方法的体积研究了GDL表面粗糙度对PEMFC流动通道内部的水滴去除的影响。通过将RMS粗糙度和粗糙度波长结合为主要特征参数,根据现实GDL性能产生粗糙表面。在粗糙的基板上模拟包括各种气流速率的流动通道中的出苗,生长,脱离和移除的液滴动力学。还通过比较分离时间和液滴形态来讨论气流率对液滴动力学的影响。通过液滴脱离时间和伸长率评估不同表面粗糙度参数的液体去除效率,并且基于液滴分析位置和分离比来识别分离模式的制度。结果表明,具有较高RMS粗糙度的粗糙表面可以促进液体内部流动通道的去除。虽然表面粗糙度波长对于液体去除效率不太显着。此处的结果提供了对识别PEMFC通道中的液滴运动的关键表面特性的定性评估。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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