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Numerical predictions of burner performance during pulverized coal combustion

机译:煤粉燃烧过程中燃烧器性能的数值预测

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The performance of four burners in terms of temperature and velocity profiles, residence time and NO{sub}x emissions was predicted using numerical simulations and a two-dimensional model for pulverized coal combustion. Numerical predictions for two burners used in a pilot-scale 0.5 MM Btu/hr (146.5 kW) Down-fired combustor (DFC) are presented. Two other burner configurations were evaluated and compared with the ones used with the DFC for attaining lower NO{sub}x levels. Simulations were conducted for both coal and coal-water slurry as primary fuels. A sensitivity analysis of predictions with respect to variations of the model parameters was performed. The results suggest that the higher NO{sub}x reduction with one of the burners used in the DFC is due to the improved near-burner aerodynamics and to better flame attachment. These improved conditions are influenced by a combination of geometric and flow parameters, such as burner dimensions, quarl diameter, inlet velocity, inlet temperature and swirl number.
机译:使用数值模拟和用于粉煤燃烧的二维模型来预测四个燃烧器的性能,停留时间和NO {Sub} X排放。提出了两个用于试验尺度0.5mm BTU / HR(146.5 kW)下烧燃烧器(DFC)的两个燃烧器的数值预测。评估另外两种刻录机配置,并与DFC一起使用的其他燃烧器配置进行了比较,以获得较低的NO {SUB} x级别。为煤和煤浆料作为主要燃料进行模拟。执行关于模型参数变化的预测的灵敏度分析。结果表明,DFC中使用的一个燃烧器的较高的{亚} x减少是由于改进的近燃烧器空气动力学和更好的火焰附着。这些改进的条件受几何和流动参数的组合的影响,例如燃烧器尺寸,Quarl直径,入口速度,入口温度和旋流。

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