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Numerical simulations of the slagging characteristics in a down-fired, pulverized-coal boiler furnace

机译:向下燃烧粉煤锅炉炉膛结渣特性的数值模拟

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Numerical studies of the slagging characteristics under different operational conditions in a 300 MW down-fired boiler were carried out using slagging models coupled with gas-solid two phase flow and combustion models. Combined with the real operating conditions; comparative and detailed analysis on the slagging position, extent, and causes is presented. The results show that the serious slagging is mainly on the side walls of the lower furnace. Because of the more rapid expansion of the flue gas under the higher temperature, the flue gas in the furnace center makes the flue gas on both sides deflect and flow to the side walls; and the pulverized-coal flame impinges on the side walls. This results in the slagging on the side walls. Under off-design operating conditions, such as stopping some burners, the local flow field is asymmetric and impinges on the local arch burner, front and rear wall regions where the stopped burners are located. It leads to slight slagging on the arch burner regions and the front and rear wall regions of the lower furnace. Based on the investigation, it has been found that the serious slagging on the side walls can be effectively alleviated by cutting off the burners close to the side walls, reducing boiler load and burning low slagging-tendency coals.
机译:利用排渣模型,结合气固两相流和燃烧模型,对300 MW下火锅炉在不同工况下的排渣特性进行了数值研究。结合实际工况;对结渣的位置,程度和原因进行了比较详细的分析。结果表明,严重的结渣主要在下部炉膛的侧壁上。由于在较高温度下烟气更迅速地膨胀,炉中心的烟气使两侧的烟气偏转并流向侧壁。煤粉火焰撞击在侧壁上。这导致在侧壁上结渣。在非设计运行条件下,例如停止某些燃烧器,局部流场是不对称的,并撞击在停止燃烧器所在的局部拱形燃烧器,前后壁区域。这会导致在拱形燃烧器区域以及下部炉子的前壁和后壁区域上产生轻微的结渣。根据调查,发现通过切断靠近侧壁的燃烧器,减少锅炉负荷并燃烧低结渣倾向的煤,可以有效地减轻侧壁上的严重结渣。

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