激光诱导白炽灯和角相关光散射研究一维C2H4/空气预混火焰中煤烟体积分数和粒径的增长

IF 1.5 Q3 ENGINEERING, CHEMICAL
Peter Langenkamp, J. A. Oijen, H. Levinsky, A. Mokhov
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引用次数: 0

摘要

采用激光诱导白炽灯(LII)测量烟灰体积分数,角相关光散射(ADLS)测量烟灰体积分数,研究了当量比为2.0 ~ 2.35的燃烧器稳定C2H4/空气预混火焰中烟灰体积分数和骨料粒度随燃烧器高度的变化规律。通过改变未燃混合气的出口速度,以固定的等效比改变火焰温度。使用等效比高达φ = 2.1的火焰中的自发拉曼散射测量温度,结果显示与使用圣地亚哥机制计算的温度具有良好的对应关系(在50 K内)。烟灰体积分数和旋转半径在火焰浓度越高越明显增大。此外,两者都表现出对火焰温度的非单调依赖,体积分数在~1675 K时达到最大值,旋转半径在~1700 K时达到最大值。将测量结果与两种不同的半经验双方程烟尘形成模型的计算结果进行了比较。使用这两种机制的数值计算基本上高估了测量到的煤烟体积分数,尽管模型在更丰富的火焰中表现得更好。虽然计算值在φ = 2.35时有所改善,但考虑颗粒凝聚的模型对所有等效比的测量旋转半径的预测过高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Growth of Soot Volume Fraction and Aggregate Size in 1D Premixed C2H4/Air Flames Studied by Laser-Induced Incandescence and Angle-Dependent Light Scattering
The growth of soot volume fraction and aggregate size was studied in burner-stabilized premixed C2H4/air flames with equivalence ratios between 2.0 and 2.35 as function of height above the burner using laser-induced incandescence (LII) to measure soot volume fractions and angle-dependent light scattering (ADLS) to measure corresponding aggregate sizes. Flame temperatures were varied at fixed equivalence ratio by changing the exit velocity of the unburned gas mixture. Temperatures were measured using spontaneous Raman scattering in flames with equivalence ratios up to ϕ = 2.1, with results showing good correspondence (within 50 K) with temperatures calculated using the San Diego mechanism. Both the soot volume fraction and radius of gyration strongly increase in richer flames. Furthermore, both show a nonmonotonic dependence on flame temperature, with a maximum occurring at ~1675 K for the volume fraction and ~1700 K for the radius of gyration. The measurement results were compared with calculations using two different semiempirical two-equation models of soot formation. Numerical calculations using both mechanisms substantially overpredict the measured soot volume fractions, although the models do better in richer flames. The model accounting for particle coagulation overpredicts the measured radii of gyration substantially for all equivalence ratios, although the calculated values improve at ϕ = 2.35.
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来源期刊
Journal of Combustion
Journal of Combustion ENGINEERING, CHEMICAL-
CiteScore
2.00
自引率
28.60%
发文量
8
审稿时长
20 weeks
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