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Numerical Simulation of Combustion Characteristics and NOx Emissions in a 300 MWe Utility Boiler with Different Outer Secondary-Air Vane Angles

机译:不同外部二次风叶片角度的300 MWe电站锅炉燃烧特性和NOx排放的数值模拟

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摘要

We experimentally and numerically studied the pulverized-coal combustion process and NO_x emissions for a 300 MW_e wall-fired boiler burning bituminous coal. Measurements of the polar components of the gas velocity made with a particle-dynamics anemometer and calculated values are found to be in good agreement. Good agreement was also found for the CO_2 concentration, NO_x concentration, and combustible material content in the fly ash between simulation and industrial experiments performed on full-scale boilers. For enhanced ignition-dual register (EI-DR) burners, pulverized coal is spread widely from the burner. Some pulverized-coal particles are thrown to the furnace hopper, and much pulverized coal is swept to the furnace hopper at the bottom of the boiler. As the outer secondary-air vane angle increases, the temperature of the water-cooled tube wall region near the burners and furnace hopper increases. Changes in the NOx concentration at the furnace outlet are not simply linear with changes in the outer secondary-air vane angle. The NOx concentration at the furnace outlet was lowest (420.2 ppm at 6% O_2) for an outer secondary-air vane angle of 35° and highest (468.2 ppm at 6% O_2) for an outer secondary-air vane angle of 30°. This represents an increase of 11.4%.
机译:我们通过实验和数值研究了300 MW_e烟煤燃烧壁式锅炉的粉煤燃烧过程和NO_x排放。发现用粒子动力学风速计测量的气体速度的极性分量与计算值非常吻合。在大型锅炉的模拟和工业实验之间,还发现粉煤灰中的CO_2浓度,NO_x浓度和可燃物质含量具有良好的一致性。对于增强型点火双点火(EI-DR)燃烧器,煤粉从燃烧器中广泛散布。一些煤粉被扔到炉斗中,许多煤粉被扫到锅炉底部的炉斗中。随着外部二次风叶片角度的增加,靠近燃烧器和炉料斗的水冷管壁区域的温度会增加。炉膛出口处NOx浓度的变化不仅与外部二次风叶片角度的变化呈线性关系。对于35°的外部二次空气叶片角度,炉膛出口处的NOx浓度最低(420.2 ppm),对于30°的外部二次空气叶片角度而言最高(468.2 ppm,6%O_2)。这意味着增长了11.4%。

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