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首页> 外文期刊>Journal of power sources >Validity Of Two-phase Polymer Electrolyte Membrane Fuel Cell Models With Respect To The Gas Diffusion Layer
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Validity Of Two-phase Polymer Electrolyte Membrane Fuel Cell Models With Respect To The Gas Diffusion Layer

机译:两相聚合物电解质膜燃料电池模型对气体扩散层的有效性

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A dynamic two-phase model of a proton exchange membrane fuel cell with respect to the gas diffusion layer (GDL) is presented and compared with chronoamperometric experiments. Very good agreement between experiment and simulation is achieved for potential step voltammetry (PSV) and sine wave testing (SWT). Homogenized two-phase models can be categorized in unsaturated flow theory (UFT) and multiphase mixture (M~2) models. Both model approaches use the continuum hypothesis as fundamental assumption. Cyclic voltammetry experiments show that there is a deterministic and a stochastic liquid transport mode depending on the fraction of hydrophilic pores of the GDL. ESEM imaging is used to investigate the morphology of the liquid water accumulation in the pores of two different media (unteflonated Toray-TGP-H-090 and hydrophobic Freudenberg H2315 13). The morphology of the liquid water accumulation are related with the cell behavior. The results show that UFT and M~2 two-phase models are a valid approach for diffusion media with large fraction of hydrophilic pores such as unteflonated Toray-TGP-H paper. However, the use of the homgenized UFT and M~2 models appears to be invalid for GDLs with large fraction of hydrophobic pores that corresponds to a high average contact angle of the GDL.
机译:提出了质子交换膜燃料电池相对于气体扩散层(GDL)的动态两相模型,并将其与计时电流实验进行了比较。对于潜在的步进伏安法(PSV)和正弦波测试(SWT),实验与仿真之间取得了很好的一致性。均质的两相模型可以分为不饱和流动理论(UFT)和多相混合物(M〜2)模型。两种模型方法都使用连续性假设作为基本假设。循环伏安法实验表明,取决于GDL亲水孔的比例,存在确定性和随机的液体传输模式。 ESEM成像用于研究两种不同介质(未絮凝的Toray-TGP-H-090和疏水性Freudenberg H2315 13)的孔隙中液态水积聚的形态。液态水积聚的形态与细胞行为有关。结果表明,UFT和M〜2两相模型是解决不带Toray-TGP-H纸的亲水孔较大的扩散介质的有效方法。但是,均质化的UFT和M〜2模型对于具有大量疏水孔(对应于GDL的平均接触角较高)的GDL似乎无效。

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