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Channel Geometric Scales Effect on Performance and Optimization for Serpentine Proton Exchange Membrane Fuel Cell (PEMFC)

机译:通道几何尺度对蛇纹石质子交换膜燃料电池(PEMFC)性能和优化的影响

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A three dimensional computational fluid dynamics model is proposed in this paper to investigate the effect of flow field design and dimensions of bipolar plates on performance of serpentine proton exchange membrane fuel cell (PEMFC). A complete fuel cell of 25 cm~2 with 25 channels have been used. The aim of the work is to investigate the effect of flow channels and ribs scales on overall performance of PEM fuel cell. Therefore, geometric aspect ratio parameter defined as (width of flow channel/width of rib) is used. Influences of the ribs and openings current collector scales have been studied and analyzed in order to find the optimum ratio between them to enhance the production of courant density of PEM fuel cell. Six kind of serpentine designs have been used in this paper included different aspect ratio varying from 0.25 to 2.33 while the active surface area and number of channels are keeping constant. Aspect ratio 0.25 corresponding of (0.4 mm channel width/1.6mm ribs width), and Aspect ratio2.33 corresponding of (0.6 mm channel width/1.4mm ribs width. The results show that the best flow field designs (giving the maximum density of current) are which there dimensions of channels width is minimal and ribs width is maximal (Γ≈0.25). Also decreasing width of channels enhance the pressure drop inside the PEM fuel cell, this causes an increase of gazes velocity and enhance convection process, therefore more power generation.
机译:本文提出了三维计算流体动力学模型,研究了双极板的流场设计和尺寸对蛇纹石质子交换膜燃料电池(PEMFC)性能的影响。已经使用了25cm〜2的完整燃料电池,其中25厘米〜2。该工作的目的是探讨流动通道和肋条尺度对PEM燃料电池整体性能的影响。因此,使用定义为(肋条流动通道/宽度的宽度)的几何纵横比参数。研究和分析了肋和开口集电体缩放的影响,以找到它们之间的最佳比率,以增强PEM燃料电池的龙头密度的产生。本文已经使用了六种蛇形设计,包括不同的纵横比从0.25到2.33变化,而主动表面积和通道的数量保持恒定。纵横比0.25对应(0.4mm通道宽/ 1.6mm肋条),纵横比2.33对应(0.6mm通道宽/ 1.4mm肋骨宽度。结果表明,最佳流场设计(给出最大密度电流是,通道宽度的尺寸最小,肋条宽度是最大的(γ≈0.25)。相同的通道宽度也增强了PEM燃料电池内的压降,这导致凝视速度增加,增强了对流过程,因此更多发电。

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