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首页> 外文期刊>International Journal of Thermal Sciences >Effect of coal-over-coal reburn on furnace temperature and heat flux distributions in 1 MW tangentially fired furnace
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Effect of coal-over-coal reburn on furnace temperature and heat flux distributions in 1 MW tangentially fired furnace

机译:煤粉再燃对1 MW切向燃烧炉的炉温和热通量分布的影响

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摘要

The furnace temperature and heat flux distributions of 1 MW tangentially fired furnace were studied during coal-over-coal reburn, and the influences of the position of reburn nozzle and reburn fuel fraction on furnace temperature and heat flux distributions were investigated. Compared with the baseline, the flue gas temperature is 70-90℃ lower in primary combustion and 130-150℃ higher at furnace exit, and the variations of the flue gas temperature distributions along furnace height are slower. The temperature distribution along the width of furnace wall decreases with the increase of the relative furnace height In the primary combustion zone and the reburn zone, the temperature and heat flux distributions of furnace wall are much non-uniform and asymmetric along the width of furnace wall, those of furnace wall in the burnout zone are relatively uniform, and the temperature non-uniformity coefficients of the primary combustion zone, the reburn zone and the burnout zone are 0.290, 0.100 and 0.031, respectively.
机译:研究了燃煤复燃过程中1 MW切向燃烧炉的炉温和热通量分布,研究了再燃喷嘴位置和再燃燃料分数对炉温和热通量分布的影响。与基线相比,一次燃烧的烟气温度低70-90℃,炉膛出口的烟气温度高130-150℃,烟气温度分布沿炉高的变化较慢。沿炉壁宽度的温度分布随炉相对高度的增加而减小。在一次燃烧区和再燃区,炉壁的温度和热通量分布沿炉壁的宽度非常不均匀且不对称。 ,燃尽区的炉壁温度相对均匀,一次燃烧区,再燃区和燃尽区的温度不均匀系数分别为0.290、0.100和0.031。

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