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Advanced control of liquid water region in diffusion media of polymer electrolyte fuel cells through a dimensionless number

机译:通过无量纲数高级控制聚合物电解质燃料电池扩散介质中的液态水区域

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In the present work, a three-dimension (3-D) model of polymer electrolyte fuel cells (PEFCs) is employed to investigate the complex, non-isothermal, two-phase flow in the gas diffusion layer (GDL). Phase change in gas flow channels is explained, and a simplified approach accounting for phase change is incorporated into the fuel cell model. It is found that the liquid water contours in the GDL are similar along flow channels when the channels are subject to two-phase flow. Analysis is performed on a dimensionless parameter Da(0) introduced in our previous paper [Y. Wang and K. S. Chen, Chemical Engineering Science 66 (2011) 3557-3567] and the parameter is further evaluated in a realistic fuel cell. We found that the GDL's liquid water (or liquid-free) region is determined by the Da(0) number which lumps several parameters, including the thermal conductivity and operating temperature. By adjusting these factors, a liquid-free GDL zone can be created even though the channel stream is two-phase flow. Such a liquid-free zone is adjacent to the two-phase region, benefiting local water management, namely avoiding both severe flooding and dryness. Published by Elsevier B.V.
机译:在本工作中,聚合物电解质燃料电池(PEFC)的三维(3-D)模型用于研究气体扩散层(GDL)中复杂,非等温的两相流动。解释了气体流动通道中的相变,并将考虑相变的简化方法纳入了燃料电池模型。发现当通道受到两相流动时,GDL中的液态水轮廓沿流道相似。分析是在我们先前的论文中介绍的无量纲参数Da(0)上进行的。 Wang and K. S. Chen,Chemical Engineering Science 66(2011)3557-3567],并且在实际的燃料电池中进一步评估了该参数。我们发现,GDL的液态水(或无液态)区域是由Da(0)数确定的,Da(0)数集了多个参数,包括热导率和工作温度。通过调整这些因素,即使通道流为两相流,也可以创建无液体的GDL区域。这样的无液区与两相区相邻,有利于局部水管理,即避免了严重的洪水和干燥。由Elsevier B.V.发布

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