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Kinetic Analysis of the Chemical Structure of Filtration-Combustion Waves in Fuel-Lean Gases

机译:贫燃油中过滤燃烧波化学结构的动力学分析

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摘要

On the basis of skeleton diagrams and sensitivity analysis, the structure of the heat-release region, special features of formation of radicals, and methane-oxidation dynamics under conditions of filtration combustion of an ultralean methane-air mixture are considered in detail. It is shown that the exothermal region consists of two consecutive peaks, the first one due to oxidation of hydrocarbons and hydrogen by OH radicals and the other due to the CO oxidation reaction. Several specific regions are identified in the wave, depending on the prevailing reactions of branching of radical chains. The main chain mechanism of formation of radicals is the reaction CH_3+O_2=CH_3O+O in the regio of "low" temperatures, the reaction HO_2+CH_3=CH_3O+OH in the "transitional" region, and the reaction H+O_2=O+OH in the region of "high" temperatures. Two former regions correspond to the preheating zone, and the latter corresponds to the reaction zone of the wave of filtration of gases.
机译:根据骨架图和敏感性分析,详细考虑了超稀甲烷-空气混合物过滤燃烧条件下的放热区结构,自由基形成的特殊特征以及甲烷氧化动力学。结果表明,放热区由两个连续的峰组成,第一个峰是由于烃和氢被OH自由基氧化所致,另一个峰是由于CO氧化反应所致。根据自由基链支化的主要反应,在波中确定了几个特定区域。自由基形成的主链机理是“低温”区域的反应CH_3 + O_2 = CH_3O + O,“过渡”区域的反应HO_2 + CH_3 = CH_3O + OH和反应H + O_2 = O + OH在“高温”区域。前两个区域对应于预热区,后者对应于气体过滤波的反应区。

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