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Cfd Analysis of Heat Transfer in a Microtubular Solid Oxide Fuel Cell Stack

机译:微管固体氧化物燃料电池堆中传热的CFD分析

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摘要

The aim of this work was to achieve a deeper understanding of the heat transfer in a microtubular Solid Oxide Fuel Cell (mSOFC) stack based on the results obtained by means of a Computational Fluid Dynamics tool. Stack performance predictions were based on simulations for a 16 anodesupported mSOFCs sub-stack, which was a component of the overall stack containing 64 fuel cells. The emphasis of the paper was put on steady-state modelling, which enabled identification of heat transfer between the fuel cells and air flow cooling the stack and estimation of the influence of stack heat losses. Analysis of processes for different heat losses and the impact of the mSOFC reaction heat flux profile on the temperature distribution in the mSOFC stack were carried out. Both radiative and convective heat transfer were taken into account in the analysis. Two different levels of the inlet air velocity and three different values of the heat losses were considered. Good agreement of the CFD model results with experimental data allowed to predict the operation trends, which will be a reliable tool for optimisation of the working setup and ensure sufficient cooling of the mSOFC stack.
机译:这项工作的目的是基于通过计算流体动力学工具获得的结果,对微管固体氧化物燃料电池(mSOFC)堆栈中的热传递有更深入的了解。堆的性能预测基于对16个阳极支撑的mSOFCs子堆的仿真,该子堆是包含64个燃料电池的整个堆的组成部分。本文的重点放在稳态建模上,该模型能够识别燃料电池之间的传热以及冷却电池组的气流并估计电池组热量损失的影响。分析了不同热损失的过程以及mSOFC反应热通量分布对mSOFC堆中温度分布的影响。分析中考虑了辐射传热和对流传热。考虑了两种不同的进气速度和三种不同的热损失值。 CFD模型结果与实验数据的良好一致性可以预测运行趋势,这将是优化工作设置并确保mSOFC堆充分冷却的可靠工具。

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