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Numerical analysis of pulverized coal combustion characteristics using advanced low-NO_x burner

机译:先进的低NO_x燃烧器对煤粉燃烧特性的数值分析

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摘要

A three-dimensional numerical simulation is applied to a pulverized coal combustion field in a test furnace equipped with an advanced low-NO_x burner called CI-α burner, and the detailed combustion characteristics are investigated. In addition, the validities of the existing NO_x formatiom and reduction, models are examined. The results show that a recirculation flaw is formed in the high-gas-temperature region near the CI-α burner outlet, and this lengthens the residence time of coal particles in this high-temperature region, promotes the evolution of volatile matter and the progress of char reaction, and produces an extremely low-O_2 region for effective NO reduction. It is also found thai, by lessening the effect of NO reduction in Levy et al.'s model and taking the NO formation from char N into account, the accuracy of the NO prediction is improved. The efficiency factor of the conversion of char N to NO affects the total NO concentration downstream after the injection of staged combustion air.
机译:在装有先进的低NO_x燃烧器CI-α燃烧器的试验炉中,对煤粉燃烧场进行了三维数值模拟,并研究了详细的燃烧特性。此外,还检查了现有NO_x格式和还原模型的有效性。结果表明,在CI-α燃烧器出口附近的高温区域形成了再循环缺陷,延长了煤颗粒在该高温区域的停留时间,促进了挥发物的释放和发展。碳反应的产生,并产生极低的O_2区域,以有效还原NO。还发现,通过减少Levy等人模型中NO还原的影响并考虑到char N中的NO形成,NO预测的准确性得到了提高。炭N转化为NO的效率因子会影响分阶段燃烧空气注入后下游的总NO浓度。

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