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A generalized burke-schumann formulation for hydrogen-oxygen diffusion flames maintaining partial equilibrium of the shuffle reactions

机译:氢氧扩散火焰的通用burke-schumann公式,可保持混洗反应的部分平衡

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摘要

Under a wide range of conditions of ambient pressures, temperatures, dilutions and strain rates, nonpremixed combustion in hydrogen-oxygen systems maintains partial equilibrium of the four two-body chain-carrying reactions while experiencing finite rates of the three-body radical-recombination reactions H + 03 + M -+ HOa + M and H + H + M -+ H2 + M. There then exists a three-step reduced mechanism, with H as the only intermediate species and concentrations of the radicals O, OH and H02 related to that of H through steady states. The conservation equations corresponding to this chemical description are formulated here in terms of generalized coupling functions that account for species diffusivities that differ from the thermal diffusivity, providing a set of equations that describe the flame structure for strain conditions ranging from near extinction to weakly strained flames. As a model example, the formulation is applied to the analysis of flame development in the hydrogen-air laminar mixing layer with free-stream temperatures above the crossover temperature corresponding to the second explosion limit. The formulation can be used for many other model problems as well as for computational studies of nonpremixed combustion in complex configurations involving both laminar and turbulent flows.
机译:在宽范围的环境压力,温度,稀释度和应变率条件下,氢氧系统中的非预混燃烧在四个三体自由基重组反应的速率有限的情况下,维持了四个两体链式反应的部分平衡。 H + 03 + M-+ HOa + M和H + H + M-+ H2 +M。然后存在一个三步还原机理,其中H是唯一的中间物种,与自由基O,OH和H02相关通过稳态达到H的值此处,根据该化学描述的守恒方程式是根据广义耦合函数来公式化的,该泛函函数解释了与热扩散率不同的物质扩散率,提供了一组方程式,描述了从近乎熄灭到弱应变火焰的应变条件下的火焰结构。作为模型示例,该公式适用于氢气-空气层流混合层中火焰发展的分析,自由流温度高于对应于第二爆炸极限的交叉温度。该公式可用于许多其他模型问题,以及用于涉及层流和湍流的复杂配置中非预混燃烧的计算研究。

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