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The probabilistic nature of ignition of turbulent highly-strained lean premixed methane-air flames for low-emission engines

机译:低排放发动机湍流的高应变稀薄预混甲烷-空气火焰着火的概率性质

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摘要

The probabilistic nature of ignition of turbulent highly-strained lean premixed flames has been investigated. Two flow configurations have been considered in this study; counter-flow and bluff-body flames. Different successful and non-successful ignition events in both flows have been observed directly with high-speed imaging. In addition, the flame front structure during the flame propagation following the ignition has been observed using OH-PLIF technique. Moreover, the ignition probability has been measured in both flows with different equivalence ratios and flow velocities. It has been found that high bulk velocities decrease the ignition probability in all locations and for all flames. For counter-flow flames, ignition is sometimes possible even in locations where there is negligible probability of finding flammable mixture and is sometimes impossible in locations with high probability of flammable flow. The edge flame propagation speed has also been detected in this type of flames. For bluff-body flames, the flame propagation behavior following the spark ignition depends mainly on the location of the spark in respect to the recirculation zones. Furthermore, the flame inside the side recirculation zone (SRZ) quenches soon after the whole flame lights-up. Failed ignition has been viewed close to the extinction flow conditions of the flame. Igniting the flame away from the extinction conditions results in 100% ignition probability regardless of the ignition location. However, close to extinction, ignition probability decreases gradually and achieving ignition is not possible at all outside the central recirculation zone (CRZ). The obtained ignition probability contours of both flows have been compared with the previously-studied ignition probability contours of turbulent non-premixed flames of the same burners.
机译:已经研究了湍流高应变的稀薄预混火焰着火的概率性质。这项研究考虑了两种流量配置。逆流和钝体火焰。通过高速成像直接观察到两种流动中不同的成功和不成功点火事件。另外,使用OH-PLIF技术已经观察到在点火之后火焰传播期间的火焰前部结构。而且,已经在两种当量比和流速不同的流动中测量了点火概率。已经发现,高的整体速度降低了所有位置和所有火焰的着火概率。对于逆流火焰,即使在发现可燃混合物的可能性很小的地方,有时也可能点火,而在发生易燃流动的可能性很高的地方,有时是不可能的。在这种类型的火焰中也已经检测到边缘火焰的传播速度。对于钝体火焰,火花点火之后的火焰传播行为主要取决于火花相对于再循环区域的位置。此外,整个火焰点燃后,侧面再循环区(SRZ)内的火焰很快熄灭。在靠近火焰的熄灭流动条件下观察到点火失败。不管熄灭位置如何,远离熄灭条件点燃火焰都会导致100%的点燃概率。但是,在接近灭绝的情况下,着火概率逐渐降低,并且在中央再循环区(CRZ)之外根本不可能实现着火。已将两种流的获得的点火概率轮廓与先前研究的相同燃烧器的湍流非预混火焰的点火概率轮廓进行了比较。

著录项

  • 来源
    《Fuel》 |2014年第15期|97-106|共10页
  • 作者

    Samer F. Ahmed;

  • 作者单位

    Thermofluids Group, Department of Mechanical and Industrial Engineering, College of Engineering, Qatar University, P.O. Box 2713, Doha, Qatar;

  • 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

    Spark ignition; Ignition probability; Lean premixed flames; Bluff body, counter flow;

    机译:火花点火;点火概率;稀薄的预混火焰;虚张声势的身体;逆流;

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