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Extinction and flame bifurcations of stretched dimethyl ether premixed flames

机译:拉伸的二甲醚预混火焰的熄灭和火焰分叉

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Extinction limits and flame bifurcation of lean premixed dimethyl ether-air flames are numerically investigated using the counterflow flame with a reduced chemistry. Emphasis is paid to the combined effect of radiation and flame stretch on the extinction and flammability limits. A method based on the reaction front is presented to predict the Markstein length. The predicted positive Markstein length agrees well with the experimental data. The results show that flow stretch significantly reduces the flame speed and narrows the flammability limit of the stretched dimethyl ether-air flame. It is found that the combined effect of radiation and flow stretch results in a new flame bifurcation and multiple flame regimes. At an equivalence ratio slightly higher than the flammability limit of the planar flame, the distant flame regime appears at low stretch rates. With an increase in the equivalence ratio, in addition to the distant flame, a weak flame isola emerges at moderate stretch rates. With a further increase in the equivalence ratio, the distant flame and the weak flame branches merge together, resulting in the splitting of the weak flame branch into two weak flame branches, one at low stretch and the other at high stretch. Flame stability analysis demonstrates that the high stretch weak flame is also stable. Furthermore, a K-shaped flammability limit diagram showing various flame regimes and their extinction limits is obtained.
机译:使用化学还原后的逆流火焰,对稀薄的预混合二甲醚-空气火焰的燃烧极限和火焰分叉进行了数值研究。重点放在辐射和火焰延伸对消光和可燃性极限的综合影响上。提出了一种基于反应前沿的方法来预测马克斯坦长度。 Markstein预测的正长度与实验数据非常吻合。结果表明,气流拉伸显着降低了火焰速度并缩小了拉伸后的二甲醚-空气火焰的可燃性极限。发现辐射和流动拉伸的共同作用导致了新的火焰分叉和多种火焰状态。当当量比略高于平面火焰的可燃极限时,在低拉伸速率下出现远处的火焰状态。随着当量比的增加,除了远处的火焰外,在中等拉伸速率下还会出现弱的火焰岛。随着当量比的进一步增加,远处的火焰和弱火焰分支合并在一起,从而导致弱火焰分支分裂为两个弱火焰分支,一个处于低拉伸,另一个处于高拉伸。火焰稳定性分析表明,高拉伸弱火焰也是稳定的。此外,获得了显示各种火焰状态及其消光极限的K型可燃极限图。

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