首页> 外文会议>ASME summer heat transfer conference;HT2009 >EFFECT OF THE CAPILLARY PROPERTY OF POROUS MEDIA ON THE WATER TRANSPORT CHARACTERISTICS IN A PASSIVE LIQUID-FEED DMFC
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EFFECT OF THE CAPILLARY PROPERTY OF POROUS MEDIA ON THE WATER TRANSPORT CHARACTERISTICS IN A PASSIVE LIQUID-FEED DMFC

机译:多孔液体DMFC中多孔介质的毛细管特性对水传输特性的影响

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The porous diffusion medium (DM) used in fuel cells has a complex heterogeneous structure in which both hydrophilic and hydrophobic pores coexist. The capillary flow in such a mixed-wet DM is mainly controlled by the capillary pressure and saturation relation (CPSR). In order to investigate the water transport characteristics in a passive DMFC, taking into account the coexistence of the hydrophilic and hydrophobic pores in the DM, we presented the mechanisms of capillary flow in the mixed-wet DM and provided a comprehensive evaluation of the CPSRs used in various existing fuel cell studies. Then, based on a two-dimensional two-phase non-isothermal model for the passive DMFC, we also investigated the liquid transport phenomena through the mixed-wet DM by employing an experimentally measured mixed-wet CPSR. Moreover, we compared the water transport predicted by the mixed-wet CPSR and the uniform-wet Leverett CPSR for better understanding of the liquid water transport in passive DMFCs. The results show that water transport in the passive DMFC depends greatly on the CPSR of the DM, which demonstrates an urgent need for the accurate CPSRs of the DM used in fuel cells. It is also shown that the dependence of water transport on the CPSRs can be significantly influenced by the use of a hydrophobic air filter layer at the cathode.
机译:燃料电池中使用的多孔扩散介质(DM)具有复杂的异质结构,其中亲水孔和疏水孔共存。这种混合湿DM中的毛细流动主要由毛细压力和饱和度关系(CPSR)控制。为了研究被动DMFC中的水传输特性,考虑到DM中亲水和疏水孔的共存,我们介绍了混合湿DM中的毛细流动机理并提供了对所用CPSR的综合评估在各种现有的燃料电池研究中。然后,基于无源DMFC的二维两相非等温模型,我们还使用实验测量的混合湿CPSR研究了液体通过混合湿DM的传输现象。此外,我们比较了混合湿式CPSR和均匀湿式Leverett CPSR预测的水传输,以更好地了解被动DMFC中的液态水传输。结果表明,无源DMFC中的水传输在很大程度上取决于DM的CPSR,这表明迫切需要用于燃料电池的DM的精确CPSR。还显示出水传输对CPSR的依赖性可通过在阴极处使用疏水性空气过滤器层而显着影响。

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