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Soot measurement in diluted methane diffusion flames by multi-pass extinction and laser-induced incandescence

机译:通过多次消光和激光诱导的白炽测量稀释的甲烷扩散火焰中的烟尘

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Multi-pass cavity line-of-sight extinction (MPC-LOSE) and laser-induced incandescence (LH) techniques are deployed to measure the soot volume fraction in a series of nitrogen-diluted flames, which produce only ppm volume mass fractions of soot. The separate suppression effects on soot formation of direct fuel dilution and indirect effects of temperature and residence time are interpreted by using a numerically calculated flow velocity and temperature field using a one-step fast chemistry model. The experimentally determined rate of soot formation is shown to obey approximately the same function of the local temperature for all dilution cases. The results show that a simple one-step reaction model using previously measured activation energies can account for the dilution effect with good accuracy. The results show that the direct effect of dilution on concentration is comparable to the effects of changing the temperature estimated local temperature and residence time. (C) 2018 The Author(s). Published by Elsevier Inc. on behalf of The Combustion Institute.
机译:部署了多通道腔视线消光(MPC-LOSE)和激光诱导白炽灯(LH)技术来测量一系列氮气稀释火焰中的烟灰体积分数,这些火焰仅产生烟灰体积分数的ppm。 。通过使用数值计算的流速和温度场(采用一步快速化学模型)来解释直接燃料稀释对烟灰形成的单独抑制作用以及温度和停留时间的间接影响。在所有稀释情况下,实验确定的烟灰形成速率均遵循与局部温度大致相同的功能。结果表明,使用先前测得的活化能的简单一步反应模型可以很好地说明稀释作用。结果表明,稀释对浓度的直接影响与改变温度估计的局部温度和停留时间的影响相当。 (C)2018作者。由Elsevier Inc.代表燃烧研究所出版。

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