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EXPERIMENTAL STUDY OF A FLICKERING METHANE DIFFUSION FLAME WITH COFLOW OF OXYGEN-ENRICHED AIR

机译:富氧空气流动的甲烷化弥散火焰的实验研究

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摘要

In this study, the effect of a coflow of oxygen enriched air on the flickering of methane laminar diffusion flame is investigated using two visualization methods. Characteristics of the flame and instabilities of the shear layer between the hot combustion products and ambient air are extracted from flame images at various oxidizer flow rates and oxygen enrichments. These data are linked to the origins of the flame tip oscillations and to the presence or not of a detachment of the top of the flame. We observed that, when the flame is lifted, bulk flickering is always present because the flame remains in the zone of instabilities development. However, an increase of the oxygen enrichment decreases the flame length and the lift height and the instabilities observed in the external shear layer are pushed downstream modifying the behavior of the flame oscillation. Above a given oxygen content, the flame oscillations are observed to disappear.
机译:在这项研究中,使用两种可视化方法研究了富氧空气共流对甲烷层流扩散火焰闪烁的影响。在各种氧化剂流量和氧气富集情况下,从火焰图像中提取火焰的特性和热燃烧产物与周围空气之间的剪切层的不稳定性。这些数据与火焰尖端振荡的起源以及火焰顶部是否存在分离有关。我们观察到,当火焰升起时,由于火焰仍停留在不稳定区域内,因此总会出现闪烁现象。然而,氧气富集的增加会降低火焰长度和升程高度,并且在外部剪切层中观察到的不稳定性会被推向下游,从而改变火焰振荡的行为。超过给定的氧含量,观察到火焰振荡消失。

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