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EFFECT OF AIR COFLOW ON LEAN PREMIXED FLAMES ON A STRATIFIED BURNER

机译:气流对分层燃烧器上稀薄的预燃火焰的影响

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The characteristics of lean premixed flames with and without air coflow were investigated to reveal the effects of the position of injected air and of the velocity ratio on the lift-off flame configuration. For lean premixed flames without air coflow, four configurations under decreased equivalence ratios were classified as cone flame, lift-off flame, near-blowout flame, and extinction. With air coflow, the variation of the position of injection showed that the outer air injection had a definite impact on the lift-off flame, whereas for the inner one there was no impact. The present results reveal that there are effective velocity ratios at which a flame configuration is altered from a lift-off flame to a cone-like flame. The key mechanism is that the flow field in the co-recirculation zone altered from entrainment flow for a lift-off flame to an 'impinging' reverse flow for a cone-like flame. This wall-like air coflow accumulated the hot combustion products in the co-recirculation zone, resulting in a lift-off flame base propagating nearer the burner exit. The temperature distribution and the intensity of chemiluminescence in the co-recirculation zone demonstrated enhanced stabilization of the flame.
机译:研究了有和没有空气同流的稀薄预混火焰的特性,以揭示注入空气的位置和速度比对剥离火焰构型的影响。对于没有气流的稀薄预混火焰,在降低当量比的情况下,将四种构型分类为锥形火焰,提离火焰,近爆燃火焰和熄灭。在空气同流的情况下,喷射位置的变化表明,外部空气喷射对提升火焰有确定的影响,而对于内部空气则没有影响。目前的结果表明,存在有效的速度比,在该速度比下,火焰构型从提离火焰变为圆锥形火焰。关键机制是,在共同再循环区中的流场从用于上升火焰的夹带流变为用于锥形火焰的“冲击”逆流。这种类似壁的空气同流将热燃烧产物积聚在共同再循环区内,从而导致离焰根基在燃烧器出口附近传播。共再循环区中的温度分布和化学发光强度表明火焰稳定性增强。

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