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Analysis of the flamelet model for calculation of emissions of pollutants by combustors

机译:用于计算燃烧器污染物排放的小火焰模型的分析

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摘要

Features of the simulation of the formation of pollutants-nitrogen oxides (NO (x) ) and carbon oxide (CO)-in combustion are considered. The causes of a possible decrease in accuracy in the estimation of NO (x) and CO emission in the context of the stationary flamelet model, which is caused by the nonequilibrium character of combustion, are analyzed. It is shown that, in the case of diffusion combustion of fuel in traditional chambers, the formation of NO (x) and CO has a nonstationary character amplified by an additional factor, i.e., high gradients of the scalar dissipation of the recovered fuel concentration. A promising method for enhancing the flamelet model, which is connected with transfer to the model in the nonstationary formulation, is considered. By the example of combustion of methane as a model fuel for natural gas, it shown that the flamelet model in the nonstationary formulation favors enhanced accuracy when evaluating NO (x) and CO emission.
机译:考虑了燃烧过程中污染物-氮氧化物(NO(x))和碳氧化物(CO)形成的模拟特征。分析了在固定小火焰模型的情况下由燃烧的非平衡特性引起的NO(x)和CO排放估算精度可能降低的原因。结果表明,在传统的燃烧室中进行燃料的扩散燃烧的情况下,NO(x)和CO的形成具有非平稳特性,该特性会被附加因子放大,即所回收燃料浓度的标量耗散的高梯度。考虑了一种有希望的增强小火焰模型的方法,该方法与以非平稳公式转移到模型有关。以甲烷作为天然气模型燃料的燃烧实例为例,它表明非平稳公式中的小火焰模型有助于评估NO(x)和CO排放时提高精度。

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