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A numerical study on the effect of CO addition on extinction limits and NOx formation in lean counterflow CH4/air premixed flames

机译:贫逆流CH4 /空气预混火焰中添加CO对消光极限和NOx形成影响的数值研究

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The effect of CO addition on extinction and NOx formation in lean premixed counterflow CH4/air flames was investigated by numerical simulation. Detailed chemistry and complex thermal and transport properties were employed. A method that gradually switched off the initial reactions of NO formation from different routes was used to analyse the variation of NO formation mechanism. The results indicate that the addition of certain amount of CO increases the strain extinction limits and reduces the radiation extinction limits. As a result, the lean flammability limit of CH4/air premixed flame is extended to leaner side by the addition of CO. The formation of NO in a flame is increased with the addition of CO at a constant equivalence ratio. For an ultra-lean flame, the increase in the formation of NO is mainly because of the increase in the contribution from the NNH intermediate route, while for a near stoichiometric flame, this increase is mainly attributable to the rise in the contribution from the thermal route. With the fraction of added CO being gradually increased, the formation of NO2 in a flame first decreases and then increases at a given equivalence ratio. The addition of CO reduces the formation N2O in an ultra-lean flame, while affects little on the formation of N2O in a near stoichiometric flame.
机译:通过数值模拟研究了添加CO对稀薄预混逆流CH4 /空气火焰中的消光和NOx形成的影响。使用了详细的化学以及复杂的热和传输性能。采用逐步切断不同路线NO生成初始反应的方法,分析了NO生成机理的变化。结果表明,添加一定量的CO增加了应变的消光极限并降低了辐射的消光极限。结果,通过添加CO将CH 4 /空气预混火焰的稀薄燃烧极限扩展到稀薄侧。通过以恒定的当量比添加CO,增加了火焰中NO的形成。对于超稀薄火焰,NO形成的增加主要是由于NNH中间途径的贡献增加,而对于化学计量接近的火焰,这种增加主要是由于热的贡献增加路线。随着添加的CO的比例逐渐增加,火焰中NO2的形成首先减少,然后以给定的当量比增加。 CO的添加减少了超稀薄火焰中N 2 O的形成,而对近化学计量火焰中N 2 O的形成几乎没有影响。

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