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首页> 外文期刊>Journal of power sources >Analysis of thermal and water management with temperature-dependent diffusion effects in membrane of proton exchange membrane fuel cells
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Analysis of thermal and water management with temperature-dependent diffusion effects in membrane of proton exchange membrane fuel cells

机译:质子交换膜燃料电池膜中温度依赖性扩散效应的热和水管理分析

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摘要

In the present work, the detailed thermal and water management in the membrane of proton exchange membrane fuel cells (PEMFC) is investigated numerically. The coupling effects of mass diffusion and temperature gradient on the water distribution in the membrane are taken into account with consideration of the temperature-dependent diffusivity. Thermal and water transport equations with various boundary conditions are solved by the control volume finite difference method. Predictions show that under the conditions of fixed water concentration at the cathode side, the effect of cathode temperature, T_c, on the water concentration is significant. Increases in T_c may lead to an increase in membrane dehydration. At the water-flux condition on the cathode side, the influence of the operating temperature on the water distribution in the membrane shows a similar trend. The effects of the anode temperature, T_a, on the water management in the membrane are also examined. It is found that T_a has considerable impact on the water content in the membrane. In addition, high current density may cause non-uniformity of the temperature distribution in the membrane.
机译:在目前的工作中,对质子交换膜燃料电池(PEMFC)的膜中的热和水的详细管理进行了数值研究。考虑到温度相关的扩散率,考虑了质量扩散和温度梯度对膜中水分布的耦合作用。通过控制体积有限差分法求解了各种边界条件下的热输水方程。预测表明,在阴极侧水浓度固定的条件下,阴极温度T_c对水浓度的影响非常明显。 T_c的增加可能导致膜脱水的增加。在阴极侧的水通量条件下,工作温度对膜中水分布的影响显示出相似的趋势。还检查了阳极温度T_a对膜中水分管理的影响。发现T_a对膜中的水含量具有相当大的影响。另外,高电流密度可能导致膜中温度分布的不均匀。

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