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ON MODELING MULTI-COMPONENT DIFFUSION INSIDE THE POROUS ANODE OF SOLID OXIDE FUEL CELLS USING FICK'S MODEL

机译:Fick模型模拟固体氧化物燃料电池多孔阳极内部的多组分扩散

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摘要

Stefan-Maxwell Model (SMM) and simple Fick's Model (FM) type of relations both including Knudsen diffusion for the calculation of species mole fraction distribution inside the porous anode of a solid oxide fuel cell (SOFC) were compared and it was found that at low current densities the models agree well but as current increases the differences also increase. Based on the findings an empirical correction is proposed for the effective diffusivity used in Fick's Model. The corrected diffusivity coefficient gave better agreement with the Stefan-Maxwell model and even at higher current densities the error is less than 5 %. This correction was implemented via a three-dimensional, in-house SOFC simulation code (DREAM-SOFC) which uses Fick's Model type relations for diffusion flux calculations. The code also takes into account methane steam reforming (MSR) and water gas shift (WGS) reactions and the electrochemical oxidation of both H_2 and CO. As an application, a SOFC button cell which is being tested at West Virginia University was simulated. The results with and without the proposed correction for effective diffusivity are compared.
机译:比较了Stefan-Maxwell模型(SMM)和简单Fick模型(FM)类型的关系,其中包括用于计算固体氧化物燃料电池(SOFC)多孔阳极内部物质摩尔分数分布的克努森扩散。低电流密度模型很吻合,但是随着电流的增加,差异也会增加。基于这些发现,对菲克模型中使用的有效扩散率提出了经验校正。校正后的扩散系数与Stefan-Maxwell模型具有更好的一致性,即使在较高的电流密度下,误差也小于5%。此校正是通过三维内部SOFC模拟代码(DREAM-SOFC)进行的,该代码使用Fick的模型类型关系进行扩散通量计算。该规范还考虑了甲烷蒸汽重整(MSR)和水煤气变换(WGS)反应以及H_2和CO的电化学氧化。作为一种应用,模拟了正在西弗吉尼亚大学测试的SOFC纽扣电池。比较有无建议的有效扩散系数校正的结果。

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