高炉热诊断与控制新方法的阐述与实现

Yurii S. Semenov
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引用次数: 4

摘要

在优质炉料和工艺燃料供应不稳定的情况下,为达到高炉运行可接受的技术经济指标,制定有效的高炉热控制新手段成为现实。2011年10月至2016年12月期间,在Enakievo钢铁厂(EMZ,乌克兰)3号高炉进行的研究结果。在此期间,各种燃料添加剂在其变化范围内被广泛使用,并且装药材料的组成具有多种成分和可变质量的特点。在炉料含量上,使用了各种添加剂:铁矿石、石灰石、转炉炉渣、球团筛成块、含锰添加剂。为合理选择炉料方案提供了新思路,保证了高炉在不同热工艺条件下的经济稳定运行。首次阐述了沿炉半径气流温度分布的估计指标,确定了在各种气体动力和燃料条件下运行时其变化的合理范围,制定了沿炉半径气流温度分布的要求。通过对3号高炉运行5年来炉衬温度沿炉身高度变化信息的分析,确定了炉衬温度的变化值,反映了高炉中上部炉衬部分或完全磨损的情况。对炉底和其他部分的炉衬进行了温度测定,显示了下部区域不稳定保护桨的形成,以及完全没有保护桨的温度特征。研究了加入蒸汽、天然气和煤粉量增加时的鼓风方式对从风口区到炉顶沿炉体高度的外围气流温度分布变化的影响。为此,提出了一种炉体外围粘塑性状态区边界的识别方法。阐述了高炉长时间停机不攻铁后的应急回炉规范。调整了高炉炉料中使用含锰材料的工艺,在炉料质量低且不稳定、喷煤粉的条件下,最有效地洗出炉膛。
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Elaboration and realization of new approaches to diagnostic and control of blast furnace heat
Under conditions of unstable supply of quality charge materials and technological fuel, the elaboration of new effective means of blast furnace heat control becomes actual for reaching acceptable technical and economic indices of its operation. Results of the studies carried out at the BF No. 3 of Enakievo steel-works (EMZ, Ukraine) during the period from October 2011 until December 2016 presented. During the period, various fuel additives to the blast were used within a wide range of their variation, and composition of charge materials was characterized by numerous components and variable quality. In the charge content, various additives were used: iron ore, limestone, BOF slag, briquettes of pellets siftings, manganese-containing additives. The new approach to the selection of rational charging programs was justified, providing stable economic BF running under variation of heat technological conditions. For the first time the temperature indices of estimation of gas stream distribution along the furnace radius were elaborated, the rational ranges of their variation at the operation under various gas-dynamic and fuel conditions determined, requirements to the gas stream temperature distribution along the furnace radius formulated. Based on analysis of information about lining temperature along the furnace height over the five year of EMZ BF No. 3 running, its values were ascertained, showing the partial or complete lining wear in the middle and upper part of the shaft. For the lining of the furnace bottom and other parts the temperature was ascertained, showing the formation in the lower zone unstable protective scull, as well the temperature characterizing its complete absence. The influence of blast mode during addition into it an increased volume of steam, natural gas and pulverized coal on variation of distribution of peripheral gas stream temperature along the furnace height from the tuyere zone to the top studied. It became a reason for an elaboration a method of the identification of the viscous-plastic state zone border in the peripheral zone of the furnace. Regulations of the blowing-in of blast furnaces after a long time stoppage without tapping the emergency hot metal elaborated. The technology of usage manganese-containing materials in the BF charge adjusted, which demonstrated the most effective washing out of the hearth under conditions of low and unstable charge materials quality and pulverized coal injection.
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