首页> 外文会议>First International Conference on Fuel Cell Science, Engineering and Technology Apr 21-23, 2003 Rochester, New York >INVESTIGATION OF TRANSPORT PHENOMENA IN MICRO FLOW CHANNELS FOR MINIATURE FUEL CELLS
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INVESTIGATION OF TRANSPORT PHENOMENA IN MICRO FLOW CHANNELS FOR MINIATURE FUEL CELLS

机译:微型燃料电池微流路中运输现象的研究

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This paper presents a study on the transport phenomena related to gas flow through fuel cell micro-channels, specifically the impact of dimensional scale on the order of 100 microns and below. Especially critical is the ability to experimentally verify model predictions, and this is made efficiently possible by the use of structural photopolymer (SU-8) to directly fabricate functional fuel cell micro-channels. The design and analysis components of this investigation apply 3-D multi-physics modeling to predict cell performance under micro-channel conditions. Interestingly, the model predicts that very small channels (specifically 100 microns and below) result in a significantly higher peak power density than larger counterparts. SU-8 micro-channels with different feature sizes have been integrated into fuel cell prototypes and tested for comparison against model predictions. The results not only demonstrate that the SU-8 channels with metal current collector show quite appreciable performance, but also provide experimental verification of the merits of channel miniaturization. As predicted, the performance in terms of peak power density increases as the feature size of the channel decreases, even though the pressure drop is higher in the more narrow channels. So it has been observed both theoretically and experimentally that cell performance shows an improving trend with micro-channels, and design optimization for miniature fuel cell provides a powerful method for increasing power density.
机译:本文提出了与气体流过燃料电池微通道有关的传输现象的研究,特别是尺寸尺度对100微米及以下数量级的影响。通过实验验证模型预测的能力尤其重要,通过使用结构光敏聚合物(SU-8)直接制造功能性燃料电池微通道,可以有效地实现这一点。这项研究的设计和分析组件采用3-D多物理场建模来预测微通道条件下的电池性能。有趣的是,该模型预测非常小的通道(特别是100微米及以下)会比较大的通道产生更高的峰值功率密度。具有不同特征尺寸的SU-8微通道已集成到燃料电池原型中,并经过测试以与模型预测进行比较。结果不仅表明带有金属集电器的SU-8通道表现出相当可观的性能,而且还提供了通道小型化优点的实验验证。如预测的那样,即使在更狭窄的通道中压降较高,但随着峰值功率密度的增加,随着通道特征尺寸的减小,性能也会提高。因此,从理论上和实验上都可以观察到,随着微通道的出现,电池性能呈现出改善的趋势,而微型燃料电池的设计优化为提高功率密度提供了一种有力的方法。

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