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3D investigation of the channel cross-section configuration effect on the power delivered by PEMFCs with straight channels

机译:3D研究通道横截面配置对直线通道PEMFC传递的功率的影响

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摘要

In the present study, a three-dimensional (CFD) model is performed to investigate the effects of the channel cross-section shape on power density, pressure drop and local transport phenomena of the single straight channel PEMFC. 30 forms of channel cross-section including 5 well-known and 25 new innovative channel cross-section configurations have been investigated using ANSYS-FLUENT. The carried out experimental and numerical validations to verify the present model accuracy have shown a good agreement. The channel cross-section shapes have a significant influence on the power density at medium and higher current density. The best performance is reported by the channel cross-section configuration that has a trapezoidal bottom shape and an inverted trapezoidal top form. Whereas, the worst performance is obtained by the channel cross-section configuration that has an inverted half elliptical bottom shape and an inverted trapezoidal top form. A bad choice of the channel cross-section configuration can lead to a power density loss of 4.65%. The largest pressure drop is obtained from the triangular channel cross-section form whereas; the smallest pressure drop is reported by the rectangular channel cross-section shape.
机译:在本研究中,执行三维模型(CFD)以研究通道横截面形状对单直通道PEMFC的功率密度,压降和局部传输现象的影响。使用ANSYS-FLUENT已研究了30种形式的通道横截面,包括5个著名的通道横截面配置和25种新的创新性通道横截面配置。为验证当前模型的准确性而进行的实验和数值验证已显示出良好的一致性。通道横截面形状对中等和更高电流密度下的功率密度有重大影响。具有梯形底部形状和倒梯形顶部形状的通道横截面配置报告了最佳性能。然而,通过具有倒半椭圆形底部形状和倒梯形顶部形状的通道横截面构造获得最差的性能。通道横截面配置的错误选择会导致功率密度损失4.65%。从三角形通道的横截面形式获得最大的压降,而;矩形通道的横截面形状报告了最小的压降。

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