首页> 外文会议>International Symposium on Solid Oxide Fuel Cells >Influence of Convective Heat Transfer by Air Flow on Local Current/Temperatures Along Microtubular Solid Oxide Fuel Cells In-situ Identified by Electrode-segmentation Method for Co- and Counter-flow Configurations
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Influence of Convective Heat Transfer by Air Flow on Local Current/Temperatures Along Microtubular Solid Oxide Fuel Cells In-situ Identified by Electrode-segmentation Method for Co- and Counter-flow Configurations

机译:通过电极 - 分割方法对沿着微管固体氧化物燃料电池的局部电流/温度对局部电流/温度的影响,通过电极分割方法对逆流构造的局部电流/温度

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Contribution of spatial temperature variations to thermo-mechanical stresses along microtubular solid oxide fuel cells is often numerically estimated with local temperatures calculated by thermo-electrochemical models. This method is preferred due to the lack of experimental data. Not only to provide experimental data but also to reduce the temperature variations, in this paper we are analyzing the in-situ measured local temperatures and currents along a cell. We have measured the local properties by electrode-segmentation method for co- and counter-flow configurations at various air flow velocities. Gas flow configuration shows a substantial impact on both longitudinal temperature and current variations. Under the identical conditions, the counter-flow exhibits larger variations in both temperatures and currents. We conclude that air flow velocity determines the longitudinal temperature distributions, whereas its effect on the current distribution profile is negligible. With these findings, we anticipate larger thermo-mechanical stresses in the counter-flow configuration at high air flow velocities.
机译:沿着微管固体氧化物燃料电池的空间温度变化对热机械应力的贡献通常通过热电化学模型计算的局部温度来数值估计。由于缺乏实验数据,这种方法是优选的。不仅提供实验数据,还不得降低温度变化,在本文中,我们正在分析原位测量的局部温度和沿着细胞的电流。我们已经通过电极分割方法测量了局部特性,用于各种气流速度的共同和反流配置。气流配置显示对纵向温度和电流变化的显着影响。在相同的条件下,逆流在温度和电流中表现出更大的变化。我们得出结论,空气流速决定了纵向温度分布,而其对电流分布型材的影响是可忽略不计的。通过这些发现,我们预计在高空气流速下的反流配置中的较大热机械应力。

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