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    变负荷调整和多煤种掺烧对炉内燃烧特性的影响

    Influence of variable load multi-coal blending on furnace combustion characteristics

    • 摘要: 为解决我国电煤供需形势日趋紧张的问题,并最大限度地保证锅炉燃烧的稳定性、经济性和安全性,需对锅炉在不同负荷下混煤掺烧的燃烧特性进行研究,并进一步优化锅炉燃烧工况。以某1000 MW超临界机组锅炉为研究对象,采用Ansys软件中的Meshing和Fluent模块进行炉膛建模,并对其变负荷工况下燃烧神华煤、神华煤掺配印尼煤以及神华煤掺配俄罗斯煤的炉内燃烧过程进行数值模拟,进而分析负荷变化对不同煤种炉内燃烧特性的影响。结果表明:高负荷时,炉内燃烧充分且稳定,但炉内火焰更容易冲刷水冷壁,易产生局部结渣;低负荷时,炉内火焰充满度较差,切圆燃烧的稳定性显著下降,易发生飞灰未燃现象。且随着负荷的降低,水冷壁灰污表面温度也逐渐降低,结渣倾向弱化,沿炉膛高度方向水冷壁吸热不均匀性增大,当负荷进一步降低导致部分燃烧器组停运时,火焰中心高度会降低。研究成果可为电厂变负荷和多煤种掺配提供依据和指导。

       

      Abstract: In order to solve the problem of the increasingly tense situation of coal supply and demand in China, and to ensure the stability, economy and safety of boiler combustion to the greatest extent possible, the combustion characteristics of the boiler under different loads of mixed coal blending need to be studied, and the boiler combustion conditions need to be adjusted further optimally. A 1000 MW supercritical unit boiler is taken as the research object, and Meshing and Fluent modules in Ansys software are used to model the furnace, and numerical simulation is carried out to simulate the combustion process of Shenhua coal, Shenhua coal blended with Indonesian coal, and Shenhua coal blended with Russian coal in the furnace under the variable load condition, so as to analyse the influence of load change on the combustion characteristics of different coal types in the furnace. The results show that: at high load, the combustion in the furnace is sufficient and stable, but the flame in the furnace is more likely to wash the water-cooled wall, which is prone to local slagging; at low load, the flame in the furnace is poorly filled, and the stability of the cut-and-circle combustion decreases significantly, which is prone to the phenomenon of unburned fly ash. And with the reduction of load, the water-cooled wall ash pollution surface temperature is also gradually reduced, slagging tendency weakened, along the furnace height direction of the water-cooled wall heat absorption non-uniformity increases, when the load is further reduced to cause part of the burner group shutdown, the height of the flame centre will be reduced. The research results can provide basis and guidance for variable load and multi-coal blending in power plants.

       

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