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V.2. Liquid-fuelled flames with imposed air oscillation

机译:V.2。带有空气振荡的液体燃料火焰

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The secondary air flow of a swirl stabilised burner was oscillated at a frequency of 350 Hz for swirl numbers of 0.66, 0.7 and 0.81. Time dependent phase-Doppler velocimentry quantified the spray and the air flow and chemiluminescence of the CH radicals the shape and area of kerosene fuelled flames. The results suggest that the imposed oscillations shed a series of vortex rings at the burner exit with the oscillation frequency, increasing mixing and distorting the reaction zone, and potentially reducing the NO_x emissions. The flame lifted off for a critical amplitude, which increased with swirl number, due to the translation of the recirculation zone at a downstream position leading to increased stretch rate, evaluated frm the temporal variation of the flame area, and local extinction in the near burner region.
机译:涡流稳定的燃烧器的二次空气流以350 Hz的频率振荡,涡流数为0.66、0.7和0.81。时间相关的相位多普勒测速可以量化喷雾,CH自由基的气流和化学发光,以及煤油燃烧的火焰的形状和面积。结果表明,强加的振荡会以振荡频率在燃烧器出口处产生一系列涡流环,从而增加混合并扭曲反应区,并可能减少NO_x排放。火焰升起一个临界振幅,该临界振幅随着旋流数的增加而增加,这归因于再循环区域在下游位置的平移导致拉伸率的提高,评估了火焰区域的时间变化以及附近燃烧器的局部熄灭区域。

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