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首页> 外文期刊>International Journal of Thermal Sciences >Soot characterization with laser-induced incandescence applied to a laminar premixed ethylene-air flame
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Soot characterization with laser-induced incandescence applied to a laminar premixed ethylene-air flame

机译:应用于层状预混乙烯-空气火焰的激光诱导白炽烟尘表征

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摘要

Laser-induced incandescence (LII) has emerged as a promising non-invasive technique for measuring spatially and temporally resolved soot volume fraction and size. In this investigation we try to assess its performance in more detail by characterizing primary particle sizes using time-resolved LII and soot volume fractions by 2D LII. The experiments were performed at a fixed location in premixed ethylene/air flames burning on a sintered stainless-steel plug (McKenna) burner with varying values of the equivalence ratio for primary particle sizing and on the burner axis for concentration measurements. Maximum soot concentrations follow a power law behavior with equivalence ratio. The primary particle sizes obtained from LII decay curves are in good agreement with the values measured by other techniques and show a clear rise of particle size with equivalence ratio. The data analyzed with the help of a validated LII model will be useful for the further development of soot formation models.
机译:激光诱导白炽灯(LII)已经成为一种有前途的无创技术,可用于测量在空间和时间上解决的烟灰体积分数和大小。在这项研究中,我们尝试通过使用时间分辨的LII和2D LII的烟灰体积分数表征一次粒径来更详细地评估其性能。实验是在固定位置进行的,在预混合的乙烯/空气火焰中,在烧结的不锈钢塞(McKenna)燃烧器上燃烧,该燃烧器具有不同的当量比值用于初级颗粒筛分,并在燃烧器轴上用于浓度测量。最大烟灰浓度遵循具有当量比的幂律行为。从LII衰减曲线获得的初级粒径与通过其他技术测得的值高度吻合,并且显示出当量比明显提高了粒径。在经过验证的LII模型的帮助下分析的数据将有助于进一步发展烟灰形成模型。

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