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Stabilization of a premixed methane-air flame with a high repetition nanosecond laser-induced plasma

机译:用高重复纳秒激光诱导的等离子体稳定预混合的甲烷 - 空气火焰

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摘要

Abstract Laser-induced plasma ignition has been applied in various combustion systems, however, work on flame stabilization with repetitive laser-induced plasma (LIP) is rather limited. In this paper, stabilization of a premixed methane-air flame with a high repetition nanosecond LIP is reported. The plasma energy coupling and the temporal evolution of the flame kernels generated by the LIPs are investigated with different laser repetition rates, i.e., 1Hz, 100Hz and 250Hz, respectively. The plasma energy coupling is not affected in the air flow and in the premixed methane-air flow with the applied laser repetition rates. Continuous combustion flame stabilization has been achieved with LIPs of 100Hz and 250Hz, in terms of catch-up and merging of the consecutive flame kernels. The flame kernel formed by the last LIP does not affect the evolution of the newly formed flame kernel by the next LIP. The catch-up distance, defined as the distance from the LIP initiation site to the flame kernel catch-up position, is estimated for different laser repetition rates based on the temporal evolution of the flame kernels. A higher laser repetition rate will lead to a shorter catch-up distance which is beneficial for flame stabilization. The up limit for the laser repetition rate to realize effective flame stabilization is determined from the critical inter-pulse delay defined from the onset of the LIP to the return of the initially contraflow propagating lower front to the LIP initiation site. The up limit is 377Hz under the flow conditions of this work (equiva
机译:<![cdata [ 抽象 激光诱导的等离子体点火已经应用于各种燃烧系统,然而,与重复激光诱导的等离子体(唇)相反,对火焰稳定的工作是相当的有限的。本文报道了具有高重复纳秒唇缘的预混合甲烷 - 空气火焰的稳定化。采用不同的激光重复速率研究等离子体能量耦合和由唇缘产生的火焰核的时间演变,即1 Hz,100 Hz和250 Hz。等离子体能量耦合在空气流动中不受影响,并在具有施加的激光重复率的预混合甲烷 - 空气流中。通过100 Hz和250 Hz,延长了连续燃烧火焰稳定化。在追赶和连续火焰的合并方面内核。由最后一个唇部形成的火焰核不会影响新形成的火焰核的进化通过下一个唇部。基于火焰核的时间演变,估计与从唇部启动位置到火焰核追赶位置的距离启动位置的距离的捕获距离。更高的激光重复率将导致较短的捕获距离,这对于火焰稳定性有益。从唇缘上的临界间脉冲延迟确定从唇缘上的临界间脉冲延迟来确定激光重复率的上限,以初始对照传播下部前面的初始逆转录位点。在这项工作的流动条件下,上限为377 Hz(Equiva

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  • 来源
    《Optics & Laser Technology》 |2017年第2017期|共8页
  • 作者单位

    National Key Laboratory of Science and Technology on Tunable Laser Harbin Institute of Technology Harbin 150080 China;

    National Key Laboratory of Science and Technology on Tunable Laser Harbin Institute of Technology Harbin 150080 China;

    National Key Laboratory of Science and Technology on Tunable Laser Harbin Institute of Technology Harbin 150080 China;

    National Key Laboratory of Science and Technology on Tunable Laser Harbin Institute of Technology Harbin 150080 China;

    National Key Laboratory of Science and Technology on Tunable Laser Harbin Institute of Technology Harbin 150080 China;

    National Key Laboratory of Science and Technology on Tunable Laser Harbin Institute of Technology Harbin 150080 China;

    Institute of Combustion Engineering Harbin Institute of Technology Harbin 150001 China;

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

    Laser-induced plasma ignition; Laser-induced plasma; Flame stabilization; Flame kernel;

    机译:激光诱导的等离子体点火;激光诱导的等离子体;火焰稳定;火焰核;

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