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Model of Cellular Instability of Flames of Ternary Mixtures

机译:三元混合物火焰的细胞不稳定性模型

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A simple phenomenological diffusive-thermal model of cellular instability of premixed flames of ternary mixtures is developed and presented.The model shows that preferential diffusion can alter stoichiometry of the mixture,i.e.,the ratio of the fuel and oxidizer concentrations,and also its effective dilution by an inert.Key parameters of the model are estimated using numerical modeling of burning velocities.Laminar burning velocities are calculated for hydrogen-oxygen-nitrogen,methane-oxygen-nitrogen,and propane-oxygen-nitrogen mixtures.Conditions for the appearance of cellular instability in ternary mixtures are determined and compared with experiments.In good agreement with experimental observations,the diffusive-thermal instability is predicted in hydrogen flames with equivalence ratios psi approx.< 1.45,in lean methane flames with psi approx.< 1.02,and in rich propane flames with psi approx.> 1.03.The magnitude of the change in the local flame velocity due to preferential diffusion is evaluated.It is demonstrated that nitrogen diffuses faster than oxygen in hydrogen-air and methane-air flames,while oxygen diffuses faster than nitrogen in flames of propane and other heavier hydrocarbons.In mixtures of air with propane or heavier hydrocarbons,the transition between stable and unstable regimes is predicted in mixtures that are leaner than the mixture corresponding to the peak of the burning velocity curve,in agreement with experimental observations.
机译:建立并给出了简单的三元混合物预混火焰细胞不稳定性的现象扩散热模型。该模型表明,优先扩散可以改变混合物的化学计量,即燃料和氧化剂的比例,以及有效稀释。通过燃烧速度的数值模型估算模型的关键参数。计算氢-氧-氮,甲烷-氧-氮和丙烷-氧-氮混合物的层流燃烧速度。细胞外观的条件确定了三元混合物的不稳定性,并与实验进行了比较。与实验观察结果很好地吻合,预测了当量比psi约<1.45的氢火焰,在psi约<1.02的稀甲烷火焰中的扩散热不稳定性。 psi值大于1.03的富丙烷火焰由于优先扩散而引起的局部火焰速度变化的幅度结果表明,在氢气和甲烷空气火焰中,氮的扩散速度快于氧气,而在丙烷和其他重烃的火焰中,氧气的扩散速度快于氮气。在空气与丙烷或重烃的混合物中,与实验观察结果一致,在比燃烧速度曲线的峰值对应的混合物更稀的混合物中预测到稳定和不稳定的状态。

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