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Asymptotic Analysis of the Structure of Rich Methane-Air Flames

机译:富含甲烷 - 空气火焰结构的渐近分析

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The asymptotic structure of unstrained, laminar, fuel-rich, premixed methane flame is analyzed using a reduced chemical-kinetic mechanism made up of three global steps. Analysis is carried out for values of equivalence ratio greater than 1.3. The flame structure is presumed to comprise three zones: an inert preheat zone, a thin reaction zone, and a post-flame zone. In contrast to previous asymptotic analyses of lean flames and moderately rich flames, where the reaction zone of these flames was presumed to be made up of two layers, for rich flames analyzed here all chemical reaction are presumed to take place in one layer. The structure of the reaction zone of rich flames is obtained by integrating two second order ordinary differential equations, one giving the consumption of fuel and the other the consumption of oxygen. For values of equivalence ratio greater than 1.3, burning velocities obtained from the asymptotic analysis are found to agree reasonably well with those obtained using a chemical-kinetic mechanism made up of elementary reactions.
机译:采用由三个全球步骤组成的减少的化学动力学机制,分析了未经训练,层状,富含燃料丰富的预混甲烷火焰的渐近结构。进行分析,对等效比大于1.3的值。推测火焰结构包括三个区域:惰性预热区,薄的反应区和后火焰区。与先前的瘦火焰渐近分析和适度富含火焰的相反,假定这些火焰的反应区由两层组成,对于分析的富含火焰,所有化学反应都被推测在一层中进行。通过整合两个二阶常微分方程,获得富阶常微分方程的反应区的结构,可以获得燃料的消耗和氧气的消耗。对于大于1.3的等效率的值,发现从渐近分析中获得的燃烧速度与使用由基本反应组成的化学动力学机制获得的那些相同。

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