...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Lean Operation of a Pulse Detonation Combustor by Fuel Stratification
【24h】

Lean Operation of a Pulse Detonation Combustor by Fuel Stratification

机译:燃料分层脉冲爆震燃烧器的稀释操作

获取原文
获取原文并翻译 | 示例
           

摘要

Pressure gain combustion is a promising concept to substantially increase the thermal efficiency of gas turbines. One possible implementation that has been frequently investigated is pulse detonation combustors (PDCs), as they permit stable and reliable operation. At the same time, the need for part-load operation and low NO_x emissions requires combustion concepts in the lean regime. However, realizing lean combustion is still very challenging in PDCs since the deflagration to detonation transition (DDT) is very sensitive to the reactant composition. This work investigates an approach to realize lean combustion in PDC by applying fuel stratification experimentally. The scope is to find the necessary increase of fuel concentration inside the predetonation chamber to provide reliable DDT with respect to the overall equivalence ratio. Emission measurements in the exhaust of the PDC allow for a quantification of the NO_x emissions as a function of the injected fuel profile. A valveless PDC test rig is used, which contains a shock focusing geometry for detonation initiation and is ignited by a spark plug close to the upstream end wall. The subsequent expansion of the burned gas and interaction of the flame front with turbulence leads to the formation of a leading shock inside the predetonation chamber, which is then focused inside a converging-diverging geometry. The successful initiation of a detonation wave by shock focusing is very sensitive to the pressure ratio across the leading shock, which can be influenced by initial pressure, reactant composition and flow velocity. Results reveal that fuel stratification allows for reliable detonation initiation at a global equivalence ratio of Φ_(glob) = 0.65, whereas repeatable successful operation with nonstratified fuel injection is limited to Φ_(glob)≥ 0.85.
机译:压力增益燃烧是一种有希望的概念,以大大提高燃气轮机的热效率。经常调查的一种可能的实现是脉冲爆震燃烧器(PDC),因为它们允许稳定可靠的操作。与此同时,对部分负荷操作和低NO_X排放的需求需要在精益方案中燃烧概念。然而,在PDC中实现贫燃烧仍然非常具有挑战性,因为爆压转变(DDT)对反应物组合物非常敏感。这项工作通过实验应用燃料分层来研究一种方法来实现PDC中的贫燃烧。范围是在预谐腾室内找到必要的燃料浓度的增加,以相对于整个等效比提供可靠的DDT。 PDC排气中的发射测量允许定量NO_X排放作为注入的燃料轮廓的函数。使用VALVELESS PDC测试钻机,其包含用于爆轰起始的冲击聚焦几何形状,并且通过靠近上游端壁的火花塞点燃。随后的燃烧气体的膨胀和火焰前面与湍流的相互作用导致预谐波内部的引导冲击,然后将其聚焦在会聚的几何形状内。通过冲击聚焦的爆炸波的成功启动对引起休克的压力比非常敏感,这可能受初始压力,反应物组合物和流速的影响。结果表明,燃料分层允许以φ_(球)= 0.65的全局等效比以可靠的爆轰发起,而使用非加入燃料喷射的可重复成功的操作仅限于φ_(球)≥0.85。

著录项

  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2021年第5期|051009.1-051009.8|共8页
  • 作者单位

    Chair of Fluid Dynamics Institute of Fluid Dynamics and Technical Acoustics Technische Universitaet Berlin Mueller-Breslau-Strafie 8 Berlin 10623 Germany;

    Chair of Fluid Dynamics Institute of Fluid Dynamics and Technical Acoustics Technische Universitaet Berlin Mueller-Breslau-Strafie 8 Berlin 10623 Germany;

    Chair of Combustion Kinetics Institute of Fluid Dynamics and Technical Acoustics Technische Universitaet Berlin Mueller-Breslau-Strasse 8 Berlin 10623 Germany;

    Chair of Combustion Kinetics Institute of Fluid Dynamics and Technical Acoustics Technische Universitaet Berlin Mueller-Breslau-Strasse 8 Berlin 10623 Germany;

    Chair of Fluid Dynamics Institute of Fluid Dynamics and Technical Acoustics Technische Universitaet Berlin Mueller-Breslau-Strasse 8 Berlin 10623 Germany;

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

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号