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EFFECTS OF CHANNEL WIDTH AND LEWIS NUMBER ON THE MULTIPLE FLAME REGIMES AND PROPAGATION LIMITS IN MESOSCALE

机译:通道宽度和刘易斯数对中尺度多火焰系统和传播极限的影响

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摘要

The effects of channel width and Lewis number on the propagation limits and flame transition between multiple flame regimes in meso-scale combustion were studied experimentally and numerically using methane and propane-air mixtures. The experimental results showed that both methane and propane-air flames have multiple flame regimes. It was also shown that there existed non-monotonic dependence of flame speeds on equivalence ratio. Moreover, the results also showed that there are two different flame transitions, a direct transition and an extinction transition, depending on the channel width, Lewis number, and flow velocity. For the first time, a two-dimensional numerical simulation was conducted to predict the transition between different flame regimes and to examine the effects of channel width, Lewis number, and flow rates. The results showed that flame stretch had a significant effect on the extinction limit and the flame bifurcation. The predicted results agreed qualitatively well with the experiment.
机译:使用甲烷和丙烷-空气混合物,通过实验和数值研究了通道宽度和路易斯数对中尺度燃烧中多种火焰状态之间的传播极限和火焰过渡的影响。实验结果表明,甲烷和丙烷空气火焰都具有多种火焰状态。还表明,火焰速度对当量比存在非单调依赖性。而且,结果还表明,取决于通道宽度,路易斯数和流速,存在两种不同的火焰转变,即直接转变和熄灭转变。首次进行了二维数值模拟,以预测不同火焰状态之间的过渡,并检查通道宽度,路易斯数和流速的影响。结果表明,火焰拉伸对消光极限和火焰分叉有显着影响。预测结果与实验定性吻合良好。

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