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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effect of the burner position on an austenitizing process in a walking-beam type reheating furnace
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Effect of the burner position on an austenitizing process in a walking-beam type reheating furnace

机译:燃烧器位置对步行型再加热炉奥氏体化工艺的影响

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An analysis of the effect of burner location on the performance of a walking-beam type reheating furnace for an austenitizing process is presented in this work. Four configurations were evaluated, where the main difference was the position of four high-speed self-recuperative burners. The analysis was done through computational fluid dynamics (CFD) simulations, using a set of models suitable, and previously validated, to consider combustion, heat transfer, and billet heating, all in a 3D steady-state calculation. The self-recuperative burners were modeled by programming a custom user-defined-function (UDF) for the specific burner. This UDF calculates air preheating temperature in each burner as a function of air mass flow rate and the flue gas temperature entering the burner recuperator. The efficiency of the heating process, the billet heating characteristics, and the heat transfer rate to the billets for the different configurations were analyzed and compared. The results show that position and type of burners have a great effect on the furnace performance. The entrance of cold air through the furnace openings was responsible for the lower efficiencies and some billet heating problems observed. The configuration with the burners staggered on the sidewalls presented the best results in terms of energy efficiency and the billet heating characteristics required for an austenitizing process (heating rate, austenitizing temperature, holding time, and temperature uniformity).
机译:本作作品,介绍了对燃烧器定位对奥氏体化工艺进行步进式再加热炉性能的影响。评估了四种配置,其中主要区别是四个高速自恢复燃烧器的位置。通过计算流体动力学(CFD)模拟,使用适合和先前验证的一组模型来完成分析,以考虑燃烧,传热和坯料加热,以考虑3D稳态计算。通过编程特定刻录机的自定义用户定义函数(UDF)来建模自恢复燃烧器。该UDF根据空气质量流量和进入燃烧器恢复器的烟气温度计算每个燃烧器中的空气预热温度。分析了加热过程的效率,坯料加热特性和用于不同配置的坯料的传热速率。结果表明,燃烧器的位置和类型对炉子性能有很大影响。通过炉子开口的冷空气的入口负责效率较低,观察到一些坯料加热问题。在侧壁上交错的燃烧器的配置呈现了奥氏体化工艺所需的能效和坯料加热特性的最佳结果(加热速率,奥氏体化温度,保持时间和温度均匀性)。

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