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Governing processes of gas and oil injection into the blast furnace

机译:高炉煤气和石油注入的控制过程

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To enhance the blast furnace process, the practice of injecting reducing agents into the blast furnace is used. In a metallurgical plant of the voestalpine Stahl, so far the injection of oil is practiced. The availability of gases like coke oven gas (COG) makes it possible to substitute reducing agents like heavy oil. The injection of gas and oil, respectively, shows different reaction characteristics and therefore different reducing conditions are obtained. In this work, theoretical considerations are made about the different conversion characteristics of oil and gas. The calculations, done by using computational fluid dynamics (CFD), provide a detailed description of the oil and gas flow injected in the hot blast. For gas injection, the mixing of gas and blast and their conversion are considered in tuyere and raceway. For oil injection, additionally the evaporation of the oil droplets takes place. The injection of gas with one lance shows an inhomogeneous distribution in temperature and velocity due to the high injection velocity compared to oil injection. For the injection of oil, evaporation of the oil droplets takes place and the gas formed reacts with the hot blast. There, the distribution of temperature, velocity and concentrations is more homogeneous than for gas injection. A variation of the oil droplet size injected shows for larger droplets (400 mu m and more) an incomplete evaporation and distributions similar as for the gas injection.
机译:为了增强高炉工艺,使用了将还原剂注入高炉的方法。迄今为止,在奥钢联斯塔尔的冶金厂中,都在进行注油。焦炉煤气(COG)等气体的可用性使得可以替代重油等还原剂。分别注入天然气和石油显示出不同的反应特性,因此获得了不同的还原条件。在这项工作中,对油气的不同转化特性进行了理论考虑。通过使用计算流体动力学(CFD)进行的计算提供了对喷入热风中的油气流的详细描述。对于注气,在风口和管道中考虑了气体和爆炸的混合及其转化。对于注油,另外会发生油滴的蒸发。与喷油相比,由于喷油速度高,用一根喷枪喷出的气体显示出温度和速度的不均匀分布。为了注入油,油滴发生蒸发,形成的气体与热风反应。那里,温度,速度和浓度的分布比注气更均匀。注入的油滴尺寸的变化表明,较大的油滴(400微米及以上)的蒸发和分布与气体注入相似。

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