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Performance enhancement of a natural-gas-fired high-temperature thermoelectric generation system: Design, experiment and modelling optimization

机译:天然气燃烧高温热电发电系统的性能提高:设计,实验和建模优化

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摘要

High-temperature thermoelectric generation (TEG) system that driven by combustion is an efficient way for simultaneously providing heat and electric power, but its application prospect is restricted by very low ratio of electric power to heat supply. In this work, an annular high-temperature TEG system is extended by adding medium-temperature TEG modules, and correspondingly a novel two-stage annular multi-hole burner with baffle construction is specially designed to replace original single-stage annular multi-hole burner. The optimal geometric dimensions of the new burner are obtained by conducting a simplified 2D model in ANSYS. Experiment results show that, due to the new burner design, the inner-wall temperature of the high-temperature TEG module is averagely increased by 73 K, bringing an electric power rise of 14.8%; in comparison with the single-stage high-temperature TEG system, the total electric power generation of the high- and medium-temperature coupled TEG system is greatly improved by 73.8%. To further improve the electric performance of the hightemperature TEG module, a well-developed multi-physics field coupled model which containing 2D combustion reactions in the new burner and 1D multi-physical thermoelectric (TE) effects is established to reveal the optimal length and number of TE element, and to assess the optimization of cold-side heat sink.Y
机译:由燃烧驱动的高温热电发电(TEG)系统是同时提供热电和电力的有效方法,但其应用前景受到热电供应的非常低的比率限制。在这项工作中,通过加入中温TEG模块延伸环形高温TEG系统,相应地具有挡板结构的新型两级环形多孔燃烧器,专门设计用于取代原始的单级环形多孔燃烧器。通过在ANSYS中进行简化的2D模型来获得新燃烧器的最佳几何尺寸。实验结果表明,由于新的燃烧器设计,高温TEG模块的内壁温度平均增加73 k,电力上升为14.8%;与单级高温TEG系统相比,高温和中温耦合TEG系统的总电力产生大大提高了73.8%。为了进一步提高高温TEG模块的电力性能,建立了一种开发的多物理场耦合模型,其在新燃烧器和1D多物理热电(TE)效应中包含2D燃烧反应,以揭示最佳长度和数量TE元素,并评估冷侧散热器的优化.Y

著录项

  • 来源
    《Journal of power sources》 |2021年第1期|229704.1-229704.9|共9页
  • 作者单位

    Chongqing Univ Key Lab Low Grade Energy Utilizat Technol & Syst Minist Educ Chongqing 400044 Peoples R China|Chongqing Univ Dept Energy & Power Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Key Lab Low Grade Energy Utilizat Technol & Syst Minist Educ Chongqing 400044 Peoples R China|Chongqing Univ Dept Energy & Power Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Key Lab Low Grade Energy Utilizat Technol & Syst Minist Educ Chongqing 400044 Peoples R China|Chongqing Univ Dept Energy & Power Engn Chongqing 400044 Peoples R China;

    Guizhou Power Grid Co Ltd Elect Power Res Inst Guiyang 550002 Peoples R China;

    Guizhou Power Grid Co Ltd Elect Power Res Inst Guiyang 550002 Peoples R China;

    Chongqing Univ Key Lab Low Grade Energy Utilizat Technol & Syst Minist Educ Chongqing 400044 Peoples R China|Chongqing Univ Dept Energy & Power Engn Chongqing 400044 Peoples R China;

    Chongqing Univ Key Lab Low Grade Energy Utilizat Technol & Syst Minist Educ Chongqing 400044 Peoples R China|Chongqing Univ Dept Energy & Power Engn Chongqing 400044 Peoples R China;

  • 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

    Thermoelectric generation system; Burner design; Computational fluid dynamics; Multi-physical field coupled simulation; Optimization;

    机译:热电发电系统;燃烧器设计;计算流体动力学;多物理场耦合模拟;优化;

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