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LASER-BASED INVESTIGATION OF SOOT FORMATION IN LAMINAR PREMIXED FLAMES AT ATMOSPHERIC AND ELEVATED PRESSURES

机译:常压和升压下层状预混合火焰中烟尘形成的激光研究

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摘要

An experimental investigation into soot formation in laminar pre-mixed flames at atmospheric and elevated pressures (1-5 bar) has been conducted. The flames were produced in a dual-flame burner enclosed in a pressure housing. Quantitative soot volume fraction measurements were obtained using laser-induced incandescence coupled with a quasi-simultaneous absorption measurement for calibration; the data were corrected for signal trapping using an "onion peeling" algorithm. Temperature measurements were obtained using shifted vibrational coherent anti-Stokes Raman scattering, which yields well-resolved, accurate temperature measurements in sooting and nonsooting environments. Results are presented for stable homogeneous flames using air as oxidizer and ethylene, propylene, and toluene as fuels. The variation of soot volume fraction and temperature with height above burner and as a function of fuel, equivalence ratio, and pressure are presented and discussed. The present soot data are well represented by a first-order growth rate law. The data identify trends and features useful for the validation of numerical models of soot formation.
机译:已经进行了在大气压和高压(1-5巴)下层流预混火焰中烟灰形成的实验研究。火焰在封闭在压力壳体中的双火焰燃烧器中产生。烟尘体积分数的定量测量是通过使用激光诱导的白炽光与准同时吸收测量相结合进行的。使用“洋葱皮”算法对数据进行了信号捕获校正。使用位移振动相干反斯托克斯拉曼散射获得温度测量值,该结果在烟尘和非烟尘环境中产生了分辨率良好且准确的温度测量值。给出了使用空气作为氧化剂并使用乙烯,丙烯和甲苯作为燃料的稳定均质火焰的结果。提出并讨论了烟灰体积分数和温度随燃烧器上方高度以及燃料,当量比和压力的变化。一阶增长率定律很好地表示了当前的烟灰数据。数据确定了趋势和特征,可用于验证烟灰形成数值模型。

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