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MODELING OF POST-COMBUSTION IN AN ELECTRIC ARC FURNACE

机译:电弧炉燃烧后的建模

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In the electric arc furnace (EAF) process, post-combustion (PC) technology is applied to utilize the chemical energy in the CO and H_2 evolving off of the steel bath through the injection of oxygen. PC technology also improves productivity and helps to optimize the benefits of oxygen and fuel injection. In order to obtain insight on the characteristics of PC inside an electric-arc furnace, a computational fluid dynamics (CFD) model was developed to investigate the combustion characteristics in the EAF with a flat bath assumption. The natural gas is used in EAF operation process, however, the natural gas combustion is not included in this CFD model to simplify the model towards examining the effect of CO post-combustion. The eddy-dissipation (ED) was employed to model the combustion reactions. The CFD model was validated with literature on the flow velocity and temperature profiles. The effects of CO post-combustion and the oxygen mass flow rate on the furnace heat transfer efficiency in the EAF were studied.
机译:在电弧炉(EAF)工艺中,采用了后燃烧(PC)技术来利用通过注入氧气从钢水浴中逸出的CO和H_2中的化学能。 PC技术还可以提高生产率,并有助于优化氧气和燃料喷射的益处。为了深入了解电弧炉内PC的特性,建立了计算流体动力学(CFD)模型,以研究平炉假设下的电弧炉中的燃烧特性。 EAF操作过程中使用了天然气,但是,此CFD模型中不包括天然气燃烧,以简化该模型以检查CO后燃的影响。涡流消散(ED)被用来模拟燃烧反应。用关于流速和温度分布的文献验证了CFD模型。研究了CO后燃烧和氧气质量流量对电弧炉电炉传热效率的影响。

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