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Improved energy performance of a PEM fuel cell by introducing discontinuous S-shaped and crescent ribs into flowing channels

机译:通过将不连续的S形和新月形肋引入流动通道来改善PEM燃料电池的能量性能

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摘要

Better mass transfer, more uniform temperature distribution, small pressure drop, and improved electrochemical performance can be achieved by designing better flow field in PEM fuel cells. In this paper, based on the concept of a sinusoidal rib, two kinds of discontinuous ribs: S-shaped rib and crescent rib, are proposed and introduced into the flow channels of a PEM fuel cell. Results show that the proposed ribs improve the flow field, and the local convection effect becomes stronger due to the velocity field changes. Moreover, a better distribution of O-2 concentration is obtained from the better flow pattern, resulting in an improvement of the electrochemical rate and an increase of the temperature. The pressure drop is effectively reduced, and the electrochemical efficiency is improved by up to 23.61% in the condition of high current density, compared to those of the baseline sinusoidal ribbed flow field. (C) 2021 Elsevier Ltd. All rights reserved.
机译:通过在PEM燃料电池中设计更好的流场,可以实现更好的传质,更均匀的温度分布,小的压降和改善的电化学性能。 本文基于正弦肋的概念,提出了两种不连续肋:S形肋和新月形肋,并引入PEM燃料电池的流动通道。 结果表明,由于速度场变化,所提出的肋条改善流场,局部对流效果变得更强。 此外,从更好的流动模式获得O-2浓度的更好分布,导致电化学速率的提高和温度的增加。 与基线正弦肋流动场相比,电化学效率在高电流密度的条件下提高了高达23.61%的高达23.61%。 (c)2021 elestvier有限公司保留所有权利。

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