首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A NUMERICAL STUDY OF THE EFFECT OF FLOW PLATE GEOMETRY ON THE PRESSURE DISTRIBUTION AND CHANNEL-TO-CHANNEL FLOW CROSS-OVER IN A PEM FUEL CELL USING A SERPENTINE FLOW CHANNEL SYSTEM
【24h】

A NUMERICAL STUDY OF THE EFFECT OF FLOW PLATE GEOMETRY ON THE PRESSURE DISTRIBUTION AND CHANNEL-TO-CHANNEL FLOW CROSS-OVER IN A PEM FUEL CELL USING A SERPENTINE FLOW CHANNEL SYSTEM

机译:蛇形流动通道系统使用蛇形燃料电池在PEM燃料电池压力分布和通道流动交叉中的流动板几何效果的数值研究

获取原文

摘要

It is common in a PEM fuel cell to have the air flow through serpentine channels with a rectangular cross-sectional shape in a flow plate. There is a porous diffusion layer adjacent to this flow plate. Flow cross-over of air through the porous diffusion layer from one part of the channel to another can occur. as a result of the pressure differences between different parts of the channel, and it causes the flow rate through the channel to vary with distance along the channel and also has an influence on the pressure distribution along the channel. These changes in the pressure distribution as a result of cross-over can effect the fuel cell performance. In the present study the conditions under which cross-over occurs and the effects of the cross-over on the pressure distribution and local channel flow rates have been examined by numerically solving for the flow through the plate-porous layer assembly. Two flow channel arrangements have been considered: (i) a single serpentine channel flow system with different land widths between the channel sections (ii) a two-channel parallel serpentine flow system. A single phase flow has been considered. The governing equations have been written in dimensionless form using the channel width as the length scale and the mean velocity in the channel as the velocity scale. The resultant set of dimensionless equations has been numerically solved using a commercial finite element code, FIDAP. The solution was obtained by simultaneously numerically solving the dimensionless governing equations for the flow in the channels and for the flow through the porous gas diffusion layer. The numerical calculations were obtained using a commercial finite element code, FIDAP.
机译:在PEM燃料电池中常见,以使空气流过蛇形通道,在流动板中具有矩形横截面形状。邻近该流动板的多孔扩散层。通过从通道的一部分到另一个部分的多孔扩散层流过空气。由于通道的不同部分之间的压力差异,并且它导致通过通道的流速随着通道的距离而变化,并且对沿着通道的压力分布产生影响。由于交叉的导致压力分布的这些变化可以影响燃料电池性能。在本研究中,通过数值求解通过板多孔层组件,通过数值求解流动来检查交叉发生和交叉对压力分布和局部通道流速的条件。已经考虑了两个流动通道布置:(i)单个蛇形通道流量系统,在通道部分(ii)之间具有不同的陆宽度的陆宽度,双通道并联蛇形流动系统。已经考虑了单相流。控制方程已经以无量纲形式用频道宽度写成为长度尺度和频道中的平均速度作为速度比例。使用商业有限元码,Fidap,在数值求解的无量纲方程集。通过同时求解用于通道中的流动的无量纲的控制方程,并通过多孔气体扩散层的流动来实现溶液。使用商业有限元码,Fidap获得数值计算。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号