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Analysis of processes in planar solid oxide fuel cells

机译:平面固体氧化物燃料电池的工艺分析

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摘要

In this paper, a platform for solid oxide fuel cell (SOFC) simulation has been developed and the corresponding algorithms are presented. The platform is capable of dealing with fully coupled multiphysical processes and simulating the behaviors of three flow configurations. "Border effects" were revealed and it is important to understand the scale-up topic in SOFC development. The determining steps in cell performance are proposed and respective schemes are provided to enhance cell performance according to the determining steps. The characteristics of the three flow configurations were analyzed and compared. The cross-flow configuration was given negative recommendations for its unsatisfactory performance in uniformly distributing cell temperature and current density. The co-flow configuration could intrinsically obtain a uniform current density distribution with the disadvantage of steadily increasing cell temperature from fuel inlet to outlet. The counter-flow configuration had "localized enhancement effects" near the fuel inlet and cell performance substantially benefited from these effects. But the operating conditions of the counter-flow configuration should be deliberately adjusted to avoid an excessively high cell temperature.
机译:本文开发了固体氧化物燃料电池(SOFC)仿真平台,并提出了相应的算法。该平台能够处理完全耦合的多物理过程并模拟三种流动配置的行为。揭示了“边界效应”,了解SOFC开发中的放大主题很重要。提出了小区性能中的确定步骤,并根据确定步骤提供了相应的方案以增强小区性能。分析并比较了三种流动配置的特征。错流配置由于其在均匀分配电池温度和电流密度方面的不令人满意的性能而被给予负面建议。并流配置可固有地获得均匀的电流密度分布,其缺点是从燃料入口到出口的电池温度稳定增加。逆流构造在燃料入口附近具有“局部增强作用”,并且电池性能基本上受益于这些作用。但是,应谨慎调整逆流配置的操作条件,以避免电池温度过高。

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