Multi-line OH-LIF for gas-phase temperature and concentration imaging in the SpraySyn burner

IF 5 Q2 ENERGY & FUELS
Sadrollah Karaminejad, Abbas El Moussawi, Thomas Dreier, Torsten Endres, Christof Schulz
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引用次数: 3

Abstract

Gas-phase temperature and OH concentration images are measured in the SpraySyn nanoparticle-synthesis standard burner using multi-line OH laser-induced fluorescence (LIF) thermometry. In this burner, a spray flame fed by a combustible nanoparticle precursor solution is stabilized by a surrounding axisymmetric lean premixed laminar methane/oxygen pilot flame. For measuring OH rotational temperature, the laser is scanned across the 282.05–282.17 nm range and LIF excitation spectra are fitted for each image pixel by simulated spectra. Temperature maps are determined for the pilot flame and the ethanol spray flame with variable dispersion gas flow rates of oxygen used in the two-fluid nozzle. The addition of 2-EHA (2-ethylhexanoic acid) to the solution was found to increase the flame temperature. Laser attenuation across the flame was measured using simultaneous recordings of the fluorescence of uranine/water solution from two dye cuvettes illuminated with the laser sheet before and after the flame and the effect of attenuation was quantified. Absolute OH concentration distributions are determined by combining the LIF images, laser attenuation measurements, and derived temperature distributions. The temporal stability of the flame is investigated for various operating conditions by statistical evaluation of recorded instantaneous OH-LIF images.

用于SpraySyn燃烧器气相温度和浓度成像的多线OH-LIF
采用多线OH激光诱导荧光(LIF)测温技术,在SpraySyn纳米颗粒合成标准燃烧器中测量气相温度和OH浓度图像。在该燃烧器中,由可燃纳米颗粒前驱体溶液供给的喷射火焰被周围的轴对称稀薄预混层流甲烷/氧先导火焰稳定。为了测量OH旋转温度,在282.05 ~ 282.17 nm范围内对激光进行扫描,并通过模拟光谱对每个图像像素拟合LIF激发光谱。温度图被确定为试点火焰和乙醇喷雾火焰与不同的分散气体流速的氧气在双流体喷嘴中使用。发现在溶液中加入2-EHA(2-乙基己酸)可以提高火焰温度。在火焰前后用激光束照射两个染料试管,同时记录铀/水溶液的荧光,测量火焰上的激光衰减,并量化衰减的影响。绝对OH浓度分布是通过结合LIF图像、激光衰减测量和导出的温度分布来确定的。通过统计评估记录的瞬时OH-LIF图像,研究了各种操作条件下火焰的时间稳定性。
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来源期刊
CiteScore
4.20
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0.00%
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