首页> 外文会议>4th International Conference on Fuel Cell Science, Engineering, and Technology 2006 pt.A >ANALYTICAL SOLUTION FOR TWO-PHASE FLOW IN PEMFC GAS DIFFUSION LAYER
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ANALYTICAL SOLUTION FOR TWO-PHASE FLOW IN PEMFC GAS DIFFUSION LAYER

机译:PEMFC气体扩散层两相流的解析解

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Thermal and water management is critical to fuel cell performance. It has been shown that gas diffusion layer (GDL) can impose the mass transport limit; for example, it can block the reactant transport to active layer when flooding occurs at high current density conditions. Micro porous layer (MPL) in conjunction with backing layer (BL) has been used as a GDL material and was shown to be effective for water management. To study the transport processes in GDL and MPL modified GDL, an analytical solution is derived current study for calculation of two-phase, multicomponent transport in GDL. Two models were considered, the unsaturated flow model (UFM) and the separate flow model (SFM). Comparison of the calculated saturation level and oxygen mass fraction shows that UFM calculation can underestimate, as well as overestimate the saturation and oxygen concentration. The SFM was used to study the effects due to GDL property variations. The calculation shows that increase in liquid water transport in an MPL modified GDL is due to the abrupt change of liquid water flow rate when a step change in porosity or permeability is imposed. The calculation further shows that particle size of around 1 urn would be a good choice for MPL as it results in higher oxygen concentration at active layer and lower saturation in GDL.
机译:热和水管理对于燃料电池的性能至关重要。已经表明,气体扩散层(GDL)可以施加传质极限。例如,当在高电流密度条件下发生溢流时,它可以阻止反应物传输到活性层。微多孔层(MPL)与衬里层(BL)一起用作GDL材料,并显示出对水管理有效。为了研究GDL和MPL修饰的GDL中的传输过程,导出了一种分析解决方案,用于计算GDL中两相多组分传输。考虑了两个模型,非饱和流动模型(UFM)和独立流动模型(SFM)。计算饱和度和氧气质量分数的比较表明,UFM计算可以低估以及高估饱和度和氧气浓度。 SFM用于研究由于GDL属性变化而产生的影响。该计算表明,MPL修改的GDL中液体水传输的增加是由于在施加孔隙率或渗透率的阶跃变化时液体水流量的突然变化所致。计算结果进一步表明,对于MPL而言,约1微米的粒径将是一个不错的选择,因为它会导致活性层的氧浓度更高,而GDL的饱和度更低。

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