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Edge flame instability in low-strain-rate counterflow diffusion flames

机译:低应变率逆流扩散火焰中的边缘火焰不稳定性

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Experiments in low-strain-rate methane-air counterflow diffusion flames diluted with nitrogen have been conducted to study flame extinction behavior and edge flame oscillation in which flame length is less than the burner diameter and thus lateral conductive heat loss, in addition to radiative loss, could be high at low global strain rates. The critical mole fraction at flame extinction is examined in terms of velocity ratio and global strain rate. Onset conditions of the edge flame oscillation and the relevant modes are also provided with global strain rate and nitrogen mole fraction in the fuel stream or in terms of fuel Lewis number. It is observed that flame length is intimately relevant to lateral heat loss, and this affects flame extinction and edge flame oscillation considerably. Lateral heat loss causes flame oscillation even at fuel Lewis number less than unity. Edge flame oscillations, which result from the advancing and retreating edge flame motion of the outer flame edge of low-strain-rate flames, are categorized into three modes: a growing, a decaying, and a harmonic-oscillation mode. A flame stability map based on the flame oscillation modes is also provided for low-strain-rate flames. The important contribution of lateral heat loss even to edge flame oscillation is clarified finally.
机译:已经进行了用氮气稀释的低应变率甲烷-空气逆流扩散火焰的实验,以研究火焰长度小于燃烧器直径的火焰的熄灭行为和边缘火焰振荡,从而除了辐射损失之外还产生侧向传导热损失在较低的全球应变率下可能很高。根据速度比和整体应变率检查了火焰熄灭时的临界摩尔分数。还以燃料流中的整体应变率和氮摩尔分数或以燃料刘易斯数来提供边缘火焰振荡的发生条件和相关模式。可以看出,火焰长度与侧向热损失密切相关,这极大地影响了火焰的熄灭和边缘火焰的振荡。即使在燃料路易斯数小于1时,侧向热损失也会引起火焰振荡。由低应变速率火焰的外火焰边缘的前进和后退边缘火焰运动引起的边缘火焰振荡可分为三种模式:增长模式,衰减模式和谐波振荡模式。还为低应变率火焰提供了基于火焰振荡模式的火焰稳定性图。最后阐明了侧向热损失甚至对边缘火焰振荡的重要贡献。

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