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METHANE FLAME PROPAGATION IN COMPOSITIONALLY STRATIFIED GASES

机译:成分分层气体中的甲烷火焰传播

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Flame propagation in compositionally stratified methane-air mixtures was studied experimentally as a function of the equivalence ratio distribution in the unburnt mixture. Stratification was established in a controlled manner using a convective-diffusive balance in a very slow fuel-air mixture flow in an optically accessible test chamber. The flame speed was shown to be significantly higher than the one corresponding to a homogeneous mixture of the local equivalence ratio for mixture compositions close to the lean flammability limit. Also a significant extension of the lean flammability limit was observed. It was established that the local spatial gradient of the equivalence ratio was not sufficient to describe the departure of stratified combustion from quasi-homogeneity. Instead, an appropriately defined integral parameter that depended on the history of flame propagation was shown to determine when the flame could not be treated as a series of premixed flamelets propagating at the local adiabatic flame speed.
机译:根据未燃烧混合物中当量比分布的函数,对组成分层的甲烷-空气混合物中的火焰传播进行了实验研究。使用对流扩散平衡在可光学访问的测试室内非常缓慢的燃料-空气混合物流中,以受控方式建立分层。对于混合物组合物,接近贫燃极限的情况,显示出火焰速度明显高于对应于局部当量比的均质混合物的速度。还观察到稀燃性极限的显着扩展。已经确定,当量比的局部空间梯度不足以描述分层燃烧与准均质性的偏离。取而代之的是,显示了取决于火焰传播历史的适当定义的积分参数,以确定何时不能将火焰视为以局部绝热火焰速度传播的一系列预混小火焰。

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