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Numerical and experimental study of two-phase flow uniformity in channels of parallel PEM fuel cells with modified Z-type flow-fields

机译:改进型Z型流场的并联PEM燃料电池通道两相流均匀性的数值和实验研究

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The aim of this study is to improve two-phase flow uniformity of proton exchange membrane fuel cells (PEMFCs) with parallel flow-fields. Therefore, a series of experiments are performed to find the relevance of cathode stoichiometry ratio, unsteady distribution of water coverage ratios and power of a PEMFC with Z-type flow-field. The experimental results indicate that at high cathode stoichiometry ratios, the power and efficiency are stable but their magnitudes are low. In addition, the fuel cell later reaches to its stable power and efficiency. However, the duration of this stability is higher than low cathode stoichiometry ratios. A 3D numerical model is proposed in order to simulate two-phase flow in channels of parallel flow-fields. This model, which is validated by the experimental results, considers the microstructure of gas diffusion layers. By using this model, a modified flow-field with uniform distribution of single-phase and two-phase flow is introduced. Unlike the simple flow-field, the plugs do not exist in the modified flow-field. It has lower two-phase pressure drop than the simple flow-field. The simulation results show that the parasitic power for the air supply system of this modified flow-field is lower than the simple flow-field and therefore its overall efficiency is higher. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是提高具有平行流场的质子交换膜燃料电池(PEMFC)的两相流均匀性。因此,进行了一系列实验以发现阴极化学计量比,水覆盖比的不稳定分布以及具有Z型流场的PEMFC的功率的相关性。实验结果表明,在高阴极化学计量比的情况下,功率和效率稳定,但幅度较低。另外,燃料电池随后达到其稳定的功率和效率。然而,这种稳定性的持续时间高于低阴极化学计量比。为了模拟平行流场通道中的两相流,提出了一个3D数值模型。通过实验结果验证的该模型考虑了气体扩散层的微观结构。通过使用该模型,引入了具有单相和两相流均匀分布的改进流场。与简单流场不同,插头在修改后的流场中不存在。它的两相压降比简单的流场低。仿真结果表明,该改进流场的供气系统寄生功率低于简单流场,因此其整体效率更高。 (C)2018 Elsevier Ltd.保留所有权利。

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