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Influence of gas compression on flame acceleration in the early stage of burning in tubes

机译:管内燃烧初期气体压缩对火焰加速的影响

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摘要

The mechanism of finger flame acceleration at the early stage of burning in tubes was studied experimentally by Clanet and Searby [Combust. Flame 105 (1996) 225] for slow propane-air flames, and elucidated analytically and computationally by Bychkov et al. [Combust. Flame 150 (2007) 263J in the limit of incompressible flow. We have now analytically, experimentally and computationally studied the finger flame acceleration for fast burning flames, when the gas compressibility assumes an important role. Specifically, we have first developed a theory through small Mach number expansion up to the first-order terms, demonstrating that gas compression reduces the acceleration rate and the maximum flame tip velocity, and thereby moderates the finger flame acceleration noticeably. This is an important quantitative correction to previous theoretical analysis. We have also conducted experiments for hydrogen-oxygen mixtures with considerable initial values of the Mach number, showing finger flame acceleration with the acceleration rate much smaller than those obtained previously for hydrocarbon flames. Furthermore, we have performed numerical simulations for a wide range of initial laminar flame velocities, with the results substantiating the experiments. It is shown that the theory is in good quantitative agreement with numerical simulations for small gas compression (small initial flame velocities). Similar to previous works, the numerical simulation shows that finger flame acceleration is followed by the formation of the "tulip" flame, which indicates termination of the early acceleration process.
机译:Clanet和Searby [Combust.com.cn]对在管子燃烧初期手指火焰加速的机理进行了实验研究。火焰105(1996)225],适用于慢速丙烷-空气火焰,并由Bychkov等人在分析和计算中进行了阐述。 [燃烧。 Flame 150(2007)263J处于不可压缩流量的极限。现在,我们已经在气体可压缩性起重要作用的情况下,通过分析,实验和计算研究了快速燃烧火焰的手指火焰加速。具体而言,我们首先通过小马赫数展开直至一阶项来发展一种理论,证明了气体压缩会降低加速度和最大火焰尖端速度,从而显着降低手指火焰的加速度。这是对先前理论分析的重要定量修正。我们还对具有相当大的马赫数初始值的氢-氧混合物进行了实验,显示出手指火焰的加速度远小于以前从碳氢化合物火焰获得的加速度。此外,我们对广泛的初始层流火焰速度进行了数值模拟,结果证实了该实验。结果表明,该理论与数值模拟在气体压缩较小(初始火焰速度较小)方面具有良好的定量一致性。与以前的工作类似,数值模拟表明手指火焰加速之后是“郁金香”火焰的形成,这表明早期加速过程已终止。

著录项

  • 来源
    《Combustion and Flame》 |2013年第1期|97-111|共15页
  • 作者单位

    Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544-5263, USA,Combustion Research Facility, Sandia National Laboratories, Livermore, CA 94550, USA;

    Department of Mechanical and Aerospace Engineering, West Virginia University, Morgantown, WV 26506-6106, USA;

    Institute for Nuclear and Energy Technologies, Karlsruhe Institute of Technology, Kaiserstrasse 12, 76131 Karlsruhe, Germany;

    Department of Applied Mechanics, Chalmers University of Technology, 41296 Coeteborg, Sweden;

    Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544-5263, USA,Center for Combustion Energy, Tsinghua University, Beijing 100084, China;

    Department of Physics, Umea University, 90187 Umea, Sweden;

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

    hydrogen-oxygen premixed flames; flame acceleration; compressibility; finger flames; tulip flames;

    机译:氢氧预混火焰;火焰加速可压缩性手指火焰郁金香火焰;
  • 入库时间 2022-08-18 00:11:44

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