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Determination of the effective thermal conductivity of gas diffusion layers in polymer electrolyte membrane fuel cells: a comprehensive fractal approach

机译:确定聚合物电解质膜燃料电池中气体扩散层的有效导热系数:一种全面的分形方法

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摘要

Accurate determination of the effective thermal conductivity of gas diffusion layers used in polymer electrolyte membrane fuel cells is very critical for efficient thermal and water management. In this paper, effective thermal conductivity of a diffusion medium material with and without polytetrafluoroethylene (PTFE) was estimated using a fractal approach. Fractal dimensions were obtained using the measured pore size distributions of the samples. The predicted through-plane thermal conductivities were in good agreement with the experimentally measured data. It was demonstrated that such a fractal technique can be employed, with slight modifications, to estimate in-plane thermal conductivity. Besides, application of a random multifractal simulation to obtain the required tortuous fractal dimension is introduced, which can be helpful in the absence of scanning electron microscopy images. It was shown that the tortuous fractal dimension obtained is in good agreement with the reported value in the literature. Finally, variation of the tortuous fractal dimensions with PTFE contents was also determined, which is of practical importance when estimating thermal conductivity of diffusion media with different amount of PTFE contents.
机译:准确确定聚合物电解质膜燃料电池中使用的气体扩散层的有效导热系数对于有效的热和水管理至关重要。在本文中,使用分形方法估算了有和没有聚四氟乙烯(PTFE)的扩散介质材料的有效导热率。分形尺寸是使用测得的样品孔径分布获得的。预测的贯穿平面热导率与实验测量的数据非常吻合。已经证明,可以使用这种分形技术,并进行一些修改,以估计平面内热导率。此外,介绍了应用随机多重分形模拟获得所需的曲折分形维数的方法,这在没有扫描电子显微镜图像的情况下可能会有帮助。结果表明,获得的曲折分形维数与文献报道的值非常吻合。最后,还确定了曲折形分形尺寸随PTFE含量的变化,这在估算具有不同PTFE含量的扩散介质的热导率时具有实际意义。

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