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Thermal stress and probability of survival investigation in a multi-bundle integrated-planar solid oxide fuel cells IP-SOFC (integrated-planar solid oxide fuel cell)

机译:多束集成平面固体氧化物燃料电池IP-SOFC(集成平面固体氧化物燃料电池)中的热应力和生存率研究

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摘要

A multi-cell model based on a prototypical, IP-SOFC (integrated-planar solid oxide fuel cell) stack design was constructed in this study to perform comprehensive thermal stress analyses and to calculate the probability of survival. The temperature profiles generated by a thermo-electrochemical model were applied to calculate the thermal stress distributions in a multiple-cell module. The effect of coefficient of thermal expansion and Young's modulus variation of the materials used in the IP-SOFC are investigated in a parameter study. The results indicate that the IP-SOFC cells are submitted to the moderate thermal stress at the inlet fuel-flow and it undergoes a high thermal stress at the outlet of the module. The mechanical and the thermal proprieties mismatch between the layers had a greater influence on the strain and on the probability of survival of the cell components. The probability of survival of the electrolyte is lower than the other components. The global durability of the cell components has been increased by decreasing the operating temperature. The results obtained from the comparison between the bundles performances indicate that the bundle to bundle power increased continuously, however the probability of survival decreases. The optimum performances have been obtained for the fourth bundle.
机译:在这项研究中,建立了一个基于原型IP-SOFC(集成平面固体氧化物燃料电池)堆栈设计的多电池模型,以进行全面的热应力分析并计算存活率。应用热电化学模型生成的温度曲线来计算多电池模块中的热应力分布。在参数研究中研究了IP-SOFC中使用的材料的热膨胀系数和杨氏模量变化的影响。结果表明,IP-SOFC电池在入口燃料流处承受适度的热应力,并且在模块出口处承受高的热应力。层之间的机械和热特性不匹配对应变和细胞组分存活的可能性具有更大的影响。电解质存活的可能性低于其他组分。通过降低工作温度,提高了电池组件的整体耐久性。从捆束性能之间的比较获得的结果表明,捆束对捆束的功率连续增加,但是存活的可能性降低。对于第四束,已获得最佳性能。

著录项

  • 来源
    《Energy》 |2014年第1期|378-386|共9页
  • 作者单位

    Equipe TurboMach, Universite Mohamed V Agdal, Ecole Mohamadia d'Ingenieurs, Laboratoire de Turbomachines, EMI B.P: 765 Avenue Ibn Sina, Agdal, Rabat, Morocco;

    Laboratoire Magnetisme, Universite Mohamed V Agdal, Materiaux Magnetiques, Micro-onde et ceramique, Ecole normale superieure, BP 9235, Ocean, Rabat 1000, Morocco,Hassan Ⅱ Academy of Science and Technology, Rabat, Morocco;

    Equipe TurboMach, Universite Mohamed V Agdal, Ecole Mohamadia d'Ingenieurs, Laboratoire de Turbomachines, EMI B.P: 765 Avenue Ibn Sina, Agdal, Rabat, Morocco;

    L2MCS - Laboratoire de Mecanique des Materiaux et Calcul des Structures, ENSET-Rabat, B.P. 6207, Av. Armee Royale, Madinat Al Irfane Rabat, Morocco;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Integrated-planar solid oxide fuel cell; Fuel cell modeling; Thermal stress; Probability of survival;

    机译:集成平面固体氧化物燃料电池;燃料电池建模热应力;生存概率;

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