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Dynamic numerical analysis of cross-, co-, and counter-current flow configuration of a 1 kW-class solid oxide fuel cell stack

机译:1 kW级固体氧化物燃料电池堆的交叉,并流和逆流配置的动态数值分析

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Alternative designs of planar solid oxide fuel cell stack have been developed over the last decade. Depending on the application, different geometries, materials and flow configurations were adopted. This study investigates a generic solid oxide fuel cell stack with nominal power output above 1.3 kWel. The fuel cell stack is a key component of a highly integrated micro-cogenerator for domestic application. As daily, weekly and monthly variations in the electrical power load are expected, there is a need to develop numerical tools to predict the units performance with high accuracy. Hence, a fully physical dynamic model of a SOFC stack was developed and implemented in Aspen HYSYS 7.2 modeling software to enable predictive analysis of the off-design operation. The presented model exhibits high accuracy and accounts for thermal and electrochemical processes and parameters. The authors present the methodology used in the study to analyze the sensitivity of key parameters to load changes in cross-, co- and counter current flow configuration in the stack. Further functionality of the model, which was validated using manufactures data is discussed. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在过去的十年中,已经开发了平面固体氧化物燃料电池堆的替代设计。根据应用,采用不同的几何形状,材料和流动配置。这项研究调查了标称功率输出高于1.3 kWel的通用固体氧化物燃料电池堆。燃料电池堆是用于家庭应用的高度集成的微型热发电机的关键组件。由于预计电力负荷的每日,每周和每月都会发生变化,因此需要开发数值工具来高精度地预测设备的性能。因此,在Aspen HYSYS 7.2建模软件中开发并实现了SOFC堆栈的完全物理动态模型,以进行非设计操作的预测分析。提出的模型显示出很高的准确性,并考虑了热和电化学过程和参数。作者介绍了该研究中使用的方法,以分析关键参数对堆中交叉,并流和逆流配置中负载变化的敏感性。讨论了使用制造商数据验证的模型的其他功能。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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