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首页> 外文期刊>Journal of power sources >Three-dimensional modeling and experimental investigation for an air-breathing polymer electrolyte membrane fuel cell (PEMFC)
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Three-dimensional modeling and experimental investigation for an air-breathing polymer electrolyte membrane fuel cell (PEMFC)

机译:透气聚合物电解质膜燃料电池的三维建模与实验研究

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An air-breathing polymer electrolyte membrane fuel cell bears many advantages, which are important for portable-power applications. However, several barriers must be overcome before an air-breathing PEMFC achieve commercially wide-scale adoption. In this paper, with emphasis on improving the performance of air-breathing PEMFC, the simulation and experiment has been done simultaneously. Considering the natural convection in the cathode side, electrochemical reaction in the catalyst layer, water transport in the membrane, a coupled three-dimensional complex model has been developed in this work. The parameters which greatly affect the performance of an air-breathing PEMFC have been calculated for the base case such as the distribution of water and reactant, temperature and electrochemical performance. To validate the numerical result, the experiment test system have been designed to investigate the temperature distribution and cell performance. The results from this work show that the performance of air-breathing PEMFCs is strongly affected by natural convection feature. The concentration losses play a major role on the cell performance. The ambient relative humidity also has significant effect on the cell performance. The fields of water, temperature, velocity and electrochemical reaction have strong interaction on each others.
机译:透气的聚合物电解质膜燃料电池具有许多优点,这对于便携式电源应用很重要。但是,在空气呼吸型PEMFC达到商业化大规模采用之前,必须克服几个障碍。在本文中,着重于提高空气呼吸PEMFC的性能,同时进行了仿真和实验。考虑到阴极侧的自然对流,催化剂层中的电化学反应,膜中的水传输,已在此工作中开发了耦合的三维复杂模型。在基本情况下,已计算出对空气呼吸式PEMFC性能有重大影响的参数,例如水和反应物的分布,温度和电化学性能。为了验证数值结果,设计了实验测试系统以研究温度分布和电池性能。这项工作的结果表明,自然对流特性会严重影响呼吸式PEMFC的性能。浓度损失对电池性能起主要作用。环境相对湿度也会对电池性能产生重大影响。水,温度,速度和电化学反应等领域之间具有很强的相互作用。

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