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Numerical studies on rib & channel dimension of flow-field on PEMFC performance

机译:PEMFC流场肋与槽道尺寸的数值研究

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Distributions in reactant species concentration in a PEMFC cause distributions in local current density, temperature and water over the area of a PEMFC. These can lead to effects such as flooding or drying of the membrane and cause stresses in different regions of the fuel cell. Changing flow-field configuration, including channel path length, width, or height to distribute the gas more evenly, is one method of minimizing these stresses. This work numerically investigated how serpentine flow-fields with different channel/rib's cross section areas affect performance and species distributions for both automotive and stationary conditions. Further, the influence of flow direction to performance and its distribution was also reported. The prediction revealed that for stationary condition, narrower channel with wider rib spacing gives higher performance but opposite results when automotive condition is applied.
机译:PEMFC中反应物物种浓度的分布会导致PEMFC区域内局部电流密度,温度和水的分布。这些会导致诸如膜的溢流或干燥之类的影响,并在燃料电池的不同区域产生应力。改变流场配置(包括通道路径的长度,宽度或高度以使气体更均匀地分布)是使这些应力最小化的一种方法。这项工作以数值方式研究了具有不同通道/肋的横截面积的蛇形流场如何影响汽车和固定条件下的性能和物种分布。此外,还报道了流向对性能及其分布的影响。该预测表明,对于静止状态,较窄的通道和较宽的肋骨间距可提供更高的性能,但在应用汽车条件时却获得相反的结果。

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