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首页> 外文期刊>Theoretical foundations of chemical engineering >Probability Density Function Modeling of Turbulence/Chemistry Interactions in Methane Flame Enrichment by Hydrogen
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Probability Density Function Modeling of Turbulence/Chemistry Interactions in Methane Flame Enrichment by Hydrogen

机译:氢气富集甲烷火焰中湍流/化学相互作用的概率密度函数建模

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摘要

The present investigation illustrates a computational study of the turbulent diffusion flame in a cylindrical burner that is confined by two coaxial jets (methane/hydrogen and air). This is to improve the reactive mixture, the reactants combustion and to reduce the concentration of carbon monoxide as pollutant chemical species. The coupled models LES/PDF are, hereby, used to surmount the turbulence/chemistry interaction in the transport equations of chemical species. The predicted mixture fraction, the progress variable, and the carbon monoxide mass fraction are selected to validate the coupled models with respect to the experimental references data. Furthermore, the same scalar parameters which are considered in the previous numerical validation are evaluated from different fuel compositions of the hydrogen and the methane percentage to supply the combustion chamber. The computed results are carried out by FLUENT-CFD; where, they prove that hydrogen addition reduces the carbon monoxide concentration in the combustion products and improves the reactants combustion caused by the rich mixture.
机译:本研究说明了对圆柱形燃烧器中湍流扩散火焰的计算研究,该燃烧器受两个同轴射流(甲烷/氢气和空气)限制。这是为了改善反应性混合物,反应物的燃烧并降低作为污染物化学物质的一氧化碳的浓度。因此,耦合模型LES / PDF用于克服化学物种迁移方程中的湍流/化学相互作用。选择预测的混合物分数,过程变量和一氧化碳质量分数以验证关于实验参考数据的耦合模型。此外,在先前的数值验证中考虑的相同标量参数是根据不同的氢和甲烷百分比的燃料成分来供应燃烧室的。计算结果由FLUENT-CFD进行;其中,他们证明了氢的添加降低了燃烧产物中一氧化碳的浓度,并改善了由浓混合气引起的反应物燃烧。

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