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Analysis and optimization of solid oxide fuel cell-based auxiliary power units using a generic zero-dimensional fuel cell model

机译:使用通用零维燃料电池模型对基于固体氧化物燃料电池的辅助动力装置进行分析和优化

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摘要

Fuel-cell-based auxiliary power units can help to reduce fuel consumption and emissions in transportation. For this application, the combination of solid oxide fuel cells (SOFCs) with upstream fuel processing by autothermal reforming (ATR) is seen as a highly favorable configuration. Notwithstanding the necessity to improve each single component, an optimized architecture of the fuel cell system as a whole must be achieved. To enable model-based analyses, a system-level approach is proposed in which the fuel cell system is modeled as a multi-stage thermo-chemical process using the "flowsheeting" environment PRO/ll~(TM). Therein, the SOFC stack and the ATR are characterized entirely by corresponding thermody-namic processes together with global performance parameters. The developed model is then used to achieve an optimal system layout by comparing different system architectures. A system with anode and cathode off-gas recycling was identified to have the highest electric system efficiency. Taking this system as a basis, the potential for further performance enhancement was evaluated by varying four parameters characterizing different system components. Using methods from the design and analysis of experiments, the effects of these parameters and of their interactions were quantified, leading to an overall optimized system with encouraging performance data.
机译:基于燃料电池的辅助动力装置可帮助减少运输中的燃料消耗和排放。对于此应用程序,固态氧化物燃料电池(SOFC)与通过自热重整(ATR)进行上游燃料处理的组合被视为非常有利的配置。尽管有必要改进每个单个部件,但必须实现整个燃料电池系统的优化架构。为了实现基于模型的分析,提出了一种系统级方法,其中使用“流程图”环境PRO / II-TM将燃料电池系统建模为多级热化学过程。其中,SOFC堆和ATR的特征完全在于相应的热动力学过程以及整体性能参数。然后,通过比较不同的系统体系结构,使用开发的模型来获得最佳的系统布局。带有阳极和阴极废气再循环的系统被认为具有最高的电气系统效率。以该系统为基础,通过改变表征不同系统组件的四个参数,评估了进一步提高性能的潜力。使用设计和实验分析中的方法,对这些参数及其相互作用的影响进行了量化,从而得到了一个具有令人鼓舞的性能数据的整体优化系统。

著录项

  • 来源
    《Journal of power sources》 |2011年第22期|p.9500-9509|共10页
  • 作者

    S. Goell; R.C. Samsun; R. Peters;

  • 作者单位

    Forschungszentrum juellich GmbH, Institute of Energy and Climate Research (1EK-3). D-52425 Jillich. Germany;

    Forschungszentrum juellich GmbH, Institute of Energy and Climate Research (1EK-3). D-52425 Jillich. Germany;

    Forschungszentrum juellich GmbH, Institute of Energy and Climate Research (1EK-3). D-52425 Jillich. Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    apu; sofc; autothermal reformer; process simulation; design of experiments;

    机译:阿普sofc;自热重整器过程模拟;实验设计;
  • 入库时间 2022-08-18 00:24:36

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