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Numerical investigation of the local extinction and re-ignition mechanisms of premixed flame in a micro combustor with a flame holder and preheating channels

机译:带有火焰固定器和预热通道的微型燃烧室中预混火焰局部熄灭和重燃机理的数值研究

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A novel combustor with a flame holder and preheating channels, which takes advantage of heat and flow recirculation, was developed to improve the stability of the micro flame in our previous work. The results demonstrated that the lean methane/air premixed flame could be stabilized within a wide operating range. Certainly, the flame blows off when the equivalence ratio of the fuel mixture becomes too small or too big or the Reynolds number is too large. The present work reports and analyzes the blow-off dynamics of a methane/air laminar premixed flame at a relatively large Reynolds number under the synergistic effect of heat and flow recirculation. Interestingly, a flame with local extinction and re-ignition appears, which is first found in the micro combustor. The underlying mechanisms of this interesting phenomenon are systematically discussed in terms of the flow recirculation effect, stretch effect, conjugate heat exchange, and preferential transport effect. We find that the counter flow in the recirculation zone and stretch effect induce the local extinction of the flame. The smaller heat loss from the residual flame to the flame holder and the better preferential transport effect contribute to the re-ignition of the fuel mixture. The preheating effect on the unburned fuel mixture is not expected to be insignificant for the local extinction and re-ignition phenomenon. These results mean that the generated mechanism of the flame with local extinction and re-ignition in the micro combustor is different from that in the conventional combustors.
机译:在我们以前的工作中,开发了一种新颖的带有火焰保持器和预热通道的燃烧器,该燃烧器利用了热量和气流的再循环,从而提高了微火焰的稳定性。结果表明,贫甲烷/空气预混火焰可在较宽的工作范围内稳定。当然,当燃料混合物的当量比变得太小或太大或雷诺数太大时,火焰就会熄灭。本工作报告并分析了在热和气流再循环的协同作用下,雷诺数较大的甲烷/空气层流预混火焰的吹气动力学。有趣的是,出现了局部熄灭和重燃的火焰,该火焰首先在微型燃烧器中发现。从流动再循环效应,拉伸效应,共轭热交换和优先运输效应方面系统地讨论了这种有趣现象的潜在机理。我们发现再循环区中的逆流和拉伸效应引起了火焰的局部熄灭。从残留火焰到火焰保持器的热损失越小,优先运输效果越好,则有助于燃料混合物的重新点火。对于局部熄灭和重燃现象,预料对未燃烧的燃料混合物的预热作用并不重要。这些结果意味着在微型燃烧器中产生的具有局部熄灭和重燃的火焰的机理不同于常规燃烧器中的火焰。

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