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Numerical study on the influence of hydrogen addition on soot formation in a laminar ethylene-air diffusion flame

机译:层状乙烯-空气扩散火焰中加氢对烟灰形成影响的数值研究

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The influence of hydrogen addition to the fuel of an atmosphere pressure coflow laminar ethylene-air diffusion flame on soot formation was studied by numerical simulation. A detailed gas-phase reaction mechanism, which includes aromatic chemistry up to four rings, and complex thermal and transport properties were used. The fully coupled elliptic governing equations were solved. The interactions between soot and gas-phase chemistry were taken into account. Radiation heat transfer from CO_2, CO, H_2O, and soot was calculated using the discrete-ordinates method coupled to a statistical narrow-band-correlated K-based wide-band model. The predicted results were compared with the available experimental data and analyzed. It is indicated that the addition of hydrogen to the fuel in an ethylene-air diffusion flame suppresses soot formation through the effects of dilution and chemistry. This result is in agreement with available experiments. The simulations further suggest that the chemically inhibiting effect of hydrogen addition on soot formation is due to the decrease of hydrogen atom concentration in soot surface growth regions and higher concentration of molecular hydrogen in the lower flame region.
机译:通过数值模拟研究了加氢到大气压同流层状乙烯-空气扩散火焰的燃料中对烟灰形成的影响。使用了详细的气相反应机理,该机理包括多达四个环的芳族化学反应以及复杂的热和输运性质。求解了完全耦合的椭圆控制方程。考虑了烟灰和气相化学之间的相互作用。使用与统计窄带相关的基于K的宽带模型耦合的离散坐标方法,计算了CO_2,CO,H_2O和烟灰的辐射传热。将预测结果与可用的实验数据进行比较并进行分析。已经表明,在乙烯-空气扩散火焰中向燃料中添加氢通过稀释和化学作用抑制了烟灰的形成。该结果与可用实验一致。模拟进一步表明,氢的添加对烟灰形成的化学抑制作用是由于烟灰表面生长区域中氢原子浓度的降低和较低火焰区域中分子氢浓度的增加所致。

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