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Adiabatic premixed combustion in a gaseous fuel porous inert media under high pressure and temperature: Novel flame stabilization technique

机译:在高压和高温下在气态燃料多孔惰性介质中进行绝热预混燃烧:新型火焰稳定技术

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摘要

This work presents an experimental investigation to study the characteristics of combustion using a premixed methane-air mixture within a non-homogeneous porous inert medium (PIM) under high pressure and temperature. In order to obtain a stable flame under these operating conditions within PIM, a novel flame stabilization technique in porous inert media (PIM) combustion under high pressure and temperature has been developed and evaluated. The proposed technique avoids the draw backs of the hitherto developed techniques by properly matching the flow and flame speeds and, consequently, ensuring a stable combustion, for a wide range of operating pressure and temperature. The success of this technique permits the extension of PIM combustion to new applications such as gas turbines. The validity of this new technique has been assessed experimentally in detail by analyzing combustion inside a prototype burner. The effects of various operating conditions, such as initial preheating temperature and elevated pressure, have been examined for an output power range between 5 and 40 kW. The experiments covered a broad spectrum of operating conditions ranging from a mixture inlet temperature of 20 ℃ and pressure ratio of 1 up to a temperature of 400 ℃ and a pressure ratio of 9. Evaluation of the results revealed excellent flame stability with respect to both flashback and blow-out limits throughout all the operating conditions studied, including relative air ratios far beyond the normal lean limit. While the blow-out stability showed no significant dependence on pressure, it was strongly determined by the preheating mixture inlet temperature. A remarkable broadening of the stability range from 0.6 to 1.0 on preheating to 400 ℃ was observed. This reveals the potential of pre-heat temperature to improve the dynamic modularity of the burner.
机译:这项工作提出了一项实验研究,以研究在高压和高温下在非均质多孔惰性介质(PIM)中使用预混合的甲烷-空气混合物的燃烧特性。为了在PIM内的这些工作条件下获得稳定的火焰,已经开发并评估了在高压和高温下在多孔惰性介质(PIM)燃烧中的新型火焰稳定技术。所提出的技术通过适当地匹配流速和火焰速度避免了迄今开发的技术的缺点,并因此在宽的工作压力和温度范围内确保了稳定的燃烧。该技术的成功使PIM燃烧扩展到了诸如燃气轮机之类的新应用。通过分析原型燃烧器内部的燃烧,已通过实验详细评估了这项新技术的有效性。对于5至40 kW的输出功率范围,已检查了各种操作条件(例如初始预热温度和高压)的影响。实验涵盖了广泛的工作条件,范围从混合气体入口温度20℃,压力比1到温度400℃和压力比9。评估结果表明,两种回火均具有出色的火焰稳定性。在研究的所有工作条件下的爆燃极限,包括相对空气比都远远超出正常的稀燃极限。吹出稳定性对压力没有显着影响,但其强烈取决于预热混合物的入口温度。预热至400℃时,稳定性范围从0.6到1.0显着扩大。这揭示了预热温度改善燃烧器动态模块性的潜力。

著录项

  • 来源
    《Fuel》 |2011年第2期|p.647-658|共12页
  • 作者单位

    Mechanical Power Engineering Department, Faculty of Engineering, Tanta University, Tanta 31521, Egypt,Also at Electromechanical Engineering Department, The College of Industrial Technology, P.O. Box 841, Misurata, Libya;

    Mechanical Engineering Department, Faculty of Engineering and Technology, University of Jordan, Amman 11942, Jordan;

    Department of Chemical Engineering, Faculty of Engineering, Al-Hussein Bin Talal University, Ma'an, Jordan;

    Department of Environmental Engineering, Faculty of Engineering, Al-Hussein Bin Talal University, Ma'an, Jordan;

    Institute of Thermal Engineering, Technische UniversitSt Bergakademie Freiberg, D-09599 Freiberg, Germany;

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

    adiabatic combustion; porous inert media (PIM); flame stabilization; high pressure; high temperature;

    机译:绝热燃烧多孔惰性介质(PIM);火焰稳定;高压力;高温;

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