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Effect of GDL permeability on water and thermal management in PEMFCs-I. Isotropic and anisotropic permeability

机译:GDL渗透性对PEMFCs-I中水和热管理的影响。各向同性和各向异性渗透率

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The performance of proton exchange membrane fuel cells (PEMFCs) with various isotropic and anisotropic permeabilities of the gas diffusion layer (GDL) was investigated using computational fluid dynamics analysis. A three-dimensional, non-isothermal model was employed with a single straight channel; both humidification and phase transportation were included in the model. The total water and thermal management for systems operating at high current densities was obtained. The results showed that the cell performance deteriorated for low isotropic permeability of the GDL. Water removal from the cathode GDL was significantly reduced in systems with low isotropic permeability or anisotropic systems with low permeabilities in both the in-plane and through-plane directions. Moreover, both the in-plane and through-plane permeabilities were found to affect water and thermal management in PEMFCs, especially in the low permeability ranges. Variations in GDL permeability had a greater influence on ohmic losses than on cathode overpotentials because the former losses depend on water and thermal management. In addition, the results showed that water and thermal management was good in systems in which the permeability in at least one direction (in-plane or through-plane) was high, whereas systems with low permeability in both the in-plane and through-plane directions exhibited poor water and thermal management. However, heat removal in PEMFCs was negatively affected by low permeability, leading to higher temperatures in the cell. The present numerical results suggested that modeling with isotropic permeability conditions may overpredict the cell performance, and inaccurately predict the water and thermal management in PEMFCs.
机译:使用计算流体动力学分析研究了质子交换膜燃料电池(PEMFCs)在气体扩散层(GDL)的各向同性和各向异性渗透率下的性能。使用单一直通道的三维非等温模型。该模型包括加湿和相输运。获得了在高电流密度下运行的系统的总水和热管理。结果表明,对于低各向同性的GDL,电池性能下降。在各向同性渗透率较低的系统或在面内和通透方向均具有低渗透率的各向异性系统中,从阴极GDL去除的水明显减少。此外,发现面内和面内渗透率都会影响PEMFC中的水和热管理,尤其是在低渗透率范围内。 GDL渗透率的变化对欧姆损耗的影响比对阴极过电势的影响更大,因为前者的损耗取决于水和热管理。此外,结果表明,在至少一个方向(面内或贯通面)渗透率较高的系统中,水和热管理状况良好,而在面内和贯通方向均具有较低渗透率的系统中,水和热管理状况良好飞机方向显示出不良的水和热管理。但是,PEMFC中的散热受到低渗透性的不利影响,从而导致电池温度升高。目前的数值结果表明,在各向同性渗透条件下进行建模可能会过高地预测电池性能,并会错误地预测PEMFC中的水和热管理。

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