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首页> 外文期刊>Flow, Turbulence and Combustion >Influence of Inlet Dilution of Reactants on Premixed Combustion in a Recuperative Furnace
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Influence of Inlet Dilution of Reactants on Premixed Combustion in a Recuperative Furnace

机译:换热炉中反应物入口稀释对预混燃烧的影响

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This paper presents a numerical study by RANS modeling that investigates the effect of external dilution on the premixed combustion occurring in a recuperative furnace. Calculations are performed using the detailed GRI-Mech 3.0 mechanism to ensure the accuracy of the modeling. Results of the in-furnace flow, temperature, and concentrations of OH, O2, CO2 and NO x are provided. It is found that the external dilution with the inert gas CO2 plays a significant role in establishing the premixed MILD (Moderate or Intense Low-oxygen Dilution) combustion. Externally diluting the reactant mixture not only reduces the initial concentration of O2 but also ensures a stronger internal dilution by recirculation of more hot combustion products. Importantly, the latter effect is more significant for achieving the MILD regime. There is a critical mass fraction of the diluent CO2 present, below which MILD combustion cannot occur. While the traditional premixed flame produces much more NO x than the MILD combustion, the emission of NO x appears to result most from the thermal-NO route and least from the N2O route no matter which mode occurs. Moreover, the present simulation demonstrates that the MILD mode occurs over a wider range of initial reactant conditions for premixed combustion than for diffusion combustion.
机译:本文通过RANS模型进行了数值研究,研究了外部稀释对换热炉中预混合燃烧的影响。使用详细的GRI-Mech 3.0机制进行计算以确保建模的准确性。提供了炉内流量,温度以及OH,O 2 ,CO 2 和NO x 的浓度的结果。发现用惰性气体CO 2 进行的外部稀释在建立预混合MILD(中度或强烈低氧稀释度)燃烧中起着重要作用。从外部稀释反应混合物不仅降低了O 2 的初始浓度,而且通过更多热燃烧产物的再循环确保了更强的内部稀释度。重要的是,后一种效应对于实现MILD机制更为重要。存在稀释剂CO 2 的临界质量分数,低于该质量分数将不会发生MILD燃烧。尽管传统的预混火焰产生的NO x 比MILD燃烧多得多,但NO x 的排放似乎主要来自热NO途径,而最少来自N < sub> 2 O路由,无论发生哪种模式。此外,本模拟表明,与扩散燃烧相比,对于预混合燃烧,MILD模式在更宽的初始反应物条件范围内发生。

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