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First law thermodynamic analysis of the recuperated humphrey cycle for gas turbines with pressure gain combustion

机译:压力增益燃烧燃气轮机恢复湿润循环的第一定律热力学分析

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摘要

The current work is an analysis of the recuperated Humphrey cycle. Three cycle topologies are studied with and without turbine cooling. The study focuses on the interconnection between combustor pressure gain and heat recuperation. It is an attempt to optimize the cycle topology and configuration to achieve the maximum possible cycle efficiency. It is found that the best option to use recuperation in the Humphrey cycle is to operate the combustor at stoichiometric conditions, without preheating the air fed to it. The combustion air comes effectively form a compressor air bleed. The remaining air is further compressed at the combustor outlet pressure and is fed to a plenum between combustor and turbine once it is preheated by the recuperator. This cycle configuration results in the best performance both in terms of efficiency and specific work. Specifically, an efficiency increase between 2 and 5% points is achieved. This work concludes with a feasibility study for shockless explosion combustion (SEC) for the Humphrey cycle configurations and topologies that achieve an efficiency advantage against the Joule cycle. It is found that realistic SEC combustor lengths and efficiency gains can be simultaneously achieved, albeit not at the cycle configurations with the best performance.
机译:目前的工作是对恢复的汉弗莱周期的分析。使用三个周期拓扑进行,使用涡轮机冷却。该研究侧重于燃烧器压力增益与热回收之间的互连。它试图优化循环拓扑和配置,以实现最大可能的循环效率。结果发现,在汉弗莱循环中使用恢复的最佳选择是在化学计量条件下操作燃烧器,而不预先加热进料到它的空气。燃烧空气有效地形成压缩机空气流出。剩余空气在燃烧器出口压力下进一步压缩,并且一旦通过恢复器预热,就被送入燃烧器和涡轮机之间的增压室。此循环配置在效率和特定工作方面导致最佳性能。具体地,实现了2至5%之间的效率增加。这项工作得出结论,对汉弗莱周期配置和拓扑的可行性爆炸燃烧(SEC),可以实现对焦耳循环的效率优势的影响。发现可以同时实现现实的SEC燃烧器长度和效率提升,尽管不在具有最佳性能的周期配置。

著录项

  • 来源
    《Energy》 |2020年第1期|117492.1-117492.13|共13页
  • 作者单位

    TU Berlin Institute of Fluids Dynamics and Technical Acoustics Mueller-Breslau Strasse 8 10623 Berlin Germany;

    TU Berlin Institute of Fluids Dynamics and Technical Acoustics Mueller-Breslau Strasse 8 10623 Berlin Germany;

    TU Berlin Institute of Fluids Dynamics and Technical Acoustics Mueller-Breslau Strasse 8 10623 Berlin Germany;

    TU Berlin Institute of Fluids Dynamics and Technical Acoustics Mueller-Breslau Strasse 8 10623 Berlin Germany;

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

    Pressure gain combustion; Humphrey cycle; Recuperation; Gas turbine; Emissions; Thermodynamic analysis;

    机译:压力增益燃烧;汉弗莱周期;恢复;燃气轮机;排放;热力学分析;
  • 入库时间 2022-08-18 22:23:05

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