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Numerical Simulation of Combustion Process under Different Tertiary Air Swirl Strength of HT-NR_3 Burner

机译:HT-NR_3燃烧器不同三级空气旋流强度下燃烧过程的数值模拟

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With a 600 MW supercritical swirl-opposed pulverized coal fired boiler serving as an object of study, this paper investigates the characteristics of pulverized coal particle trajectory, gas temperature at burner region, recirculation zone and flue gas temperature at the exit of furnace with Furnace software under different tertiary air swirl strength of HT-NR_3 burner. The simulated results indicate that pulverized coal mostly burned out in the space from middle burner area to over-fire air area in swirl-opposed boiler. The side wall of boiler is scoured more seriously by pulverized coal under weak swirl strength. With the increasing of tertiary air swirl strength, the jet extended corner at exit of burners tends to be greater and the circulatory flow of high temperature flue gas is enhanced, it is advantageous to steady burning. Furthermore, the temperature at burner region is high enough to guarantee the pulverized coal fired rapidly and completely, which makes high burn out rate and low rate of flue gas carbon in dust.
机译:用600 MW超临界旋流相对的煤粉锅炉作为研究对象,本文研究了粉煤颗粒轨道,气体温度在燃烧器区域,回流区和烟道气的温度的在炉与炉软件出口处的特征在HT-NR_3燃烧器的不同三级空气旋流强度下。模拟结果表明,粉煤煤在中间燃烧器区域的空间中大多燃烧到旋流相对的锅炉中的过火空气区域。通过较弱的旋流强度,粉煤的侧壁通过粉煤煤更加严重地穿透。随着第三三级空气旋流强度的增加,燃烧器出口处的射流延伸拐角趋于更大,并且高温烟气的循环流动增强,有利的是稳定燃烧。此外,燃烧器区域的温度足够高,以保证粉煤泵迅速且完全燃烧,这使得灰尘中的高燃烧速率和烟气碳的低速率。

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