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Characteristics of Microscale Combustion in a Narrow Heated Channel

机译:狭窄加热通道中微尺度燃烧的特征

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The characteristics of microscale combustion were investigated by using a microchan-nel heated by an external source.The inner diameter of the channel was 2 mm,which was slightly smaller than the quenching distance of the stoichiometric methane-air mixture under normal conditions.The effects of the equivalence ratio and the averaged flow velocity on the characteristics of combustion in the microchannel were examined.At a channel-wall temperature of approx=1000 deg C,flames could be stabilized at equivalence ratios of 0.05-1.9 and mixture velocities up to 150 cm/sec in a U-shaped quartz-glass channel.At moderate equivalence ratios and lower velocity conditions within the flammability region,oscillatory combustion was observed.A simple analytical model predicting flame oscillations on the basis of the linear analysis of steady solutions is proposed.
机译:使用外部加热的微通道研究了微尺度燃烧的特性。通道的内径为2 mm,比通常情况下化学计量甲烷-空气混合物的猝灭距离略小。考察了当量比和平均流速对微通道燃烧特性的影响。在大约= 1000℃的通道壁温度下,当当量比为0.05-1.9且混合物速度高达150℃时,火焰可以稳定下来。在U型石英玻璃通道中以cm / sec为单位。在可燃区域内的中等当量比和较低速度条件下,观察到振荡燃烧。基于稳态溶液的线性分析,提出了一种简单的预测火焰振荡的分析模型。 。

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