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Thermodynamic analysis of a tri-generation system based on micro-gas turbine with a steam ejector refrigeration system

机译:基于微型燃气轮机和蒸汽喷射制冷系统的三联发电系统的热力学分析

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摘要

In the present work, performance of new configuration of Micro-gas turbine cogeneration and tri-generation systems, with a steam ejector refrigeration system and Heat recovery Steam Generator (HRSG) are studied. A micro-gas turbine cycle produces 200 KW power and exhaust gases of this micro-gas turbine are recovered in an HRSG. The main part of saturated steam in HRSG is used through a steam ejector refrigeration system to produce cooling in summer. In winter, this part of saturated steam is used to produce heating. In the first part of this paper, performance evaluation of this system with respect to Energy Utilization Factor (EUF), Fuel Energy Saving Ratio (FESR), thermal efficiency, pinch point temperature difference, net power to evaporator cooling load and power to heat ratio is carried out. It has been shown that by using the present cogeneration system, one can save fuel consumption from about 23% in summer up to 33% in winter in comparison with separate generation of heating, cooling and electricity.rnIn the second part of this paper, exergy analysis of the system has been done. It has been shown that combustion chamber; HRSG and heat exchanger are recognized as the largest sources of exergy losses respectively.
机译:在当前的工作中,研究了具有蒸汽喷射器制冷系统和热回收蒸汽发生器(HRSG)的微型燃气轮机热电联产和三联产系统的新配置的性能。微型燃气轮机循环产生200千瓦的功率,该微型燃气轮机的废气在HRSG中回收。 HRSG中饱和蒸汽的主要部分通过蒸汽喷射器制冷系统使用,以在夏季产生冷却。在冬季,这部分饱和蒸汽用于产生热量。在本文的第一部分中,针对该系统的性能评估,包括能源利用率(EUF),燃料节能比(FESR),热效率,夹点温差,蒸发器冷却负荷的净功率和功率热比完成了。研究表明,与单独供热,制冷和电力发电相比,通过使用目前的热电联产系统,可以将燃料消耗从夏季的约23%节省到冬季的33%。rn系统分析已经完成。已经表明,燃烧室; HRSG和热交换器分别被认为是最大的火用损失来源。

著录项

  • 来源
    《Energy》 |2010年第5期|p.2203-2209|共7页
  • 作者单位

    Combined Heat & Power Specialized Unit, Energy Eng. Department, Power and Water University of Technology, Tehran, Iran;

    rnMechanical Eng. Department, KH.N. Toosi University, Tehran, Iran;

    rnCombined Heat & Power Specialized Unit, Energy Eng. Department, Power and Water University of Technology, Tehran, Iran;

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

    Tri-generation; ejector; gas turbine; exergy; performance parameters;

    机译:三代;顶出器燃气轮机;火用性能参数;

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