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On Modernization of Air Supply Systems for Improvement of Gas Distribution in Shaft Furnaces

机译:以供气系统现代化改进轴炉气体分布的现代化

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The paper presents a developed method for assessment of gas distribution over the cross section of a shaft furnace working in the countercurrent conditions. This method is scientifically based on the fundamental principles of the countercurrent heat exchange theory in shaft furnaces, i.e. dependences of the temperature field throughout the burden bed height on the ratio between heat capacities of gas and burden flows. The ratio between the gas flow heat capacity and burden flow heat capacity at the stock line level is determined by the averaged gas temperature at the burden bed output. By comparing these data, we estimated directions for improving the gas distributing system. Efficiency of this method was assessed when analyzing the system of air supply to the shaft furnace at one of the Ural plants. The analysis showed the main drawbacks of the existing gas distributing system and enabled to determine the main directions for reconstruction of this system. On the basis of the analysis results related to operation of the tuyeres and distribution manifold, we proposed more efficient options of their parameters, i.e. manifold cross-section area, tuyere number and diameter, angle of tuyere inclination to the horizontal. These changes provided a uniform distribution of gases across the furnace and improved conditions for melt flow in the furnace. Thus, we established virtually equal conditions for development of heat and mass transfer processes in the work space of the shaft furnace. The modernized system of air supply to MMSK's shaft furnace increased the furnace performance by 14.14% in terms of burden, by 23.27% in terms of matte, by 15.15% in terms of slag and by 6.65% in terms of thermal efficiency. At the same time, the following parameters were reduced: specific fuel consumption (anthracite) by 17.46% and dust discharge by 40.5%. When supplying air to the furnace through the inclined tuyeres, it became possible to reduce formation of accretions and provide new working conditions for operating personnel due to a more uniform gas distribution across the horizontal section of the furnace. Within six months of furnace operation the personnel had no problems related to its operation.
机译:本文提出了一种用于评估在逆流条件下工作的轴炉横截面上的气体分布的方法。这种方法基于轴熔炉中的逆流热交换理论的基本原理,即温度场在整个负荷床高度依赖于气体和负荷流动的比例。气流热容量与储存线路水平的负荷流热容量之间的比率由负荷床输出的平均气体温度决定。通过比较这些数据,我们估计了改善气体分配系统的方向。当分析到其中一个植物植物的空气供应系统时,评估该方法的效率。分析显示了现有气体分配系统的主要缺点,并启用了确定该系统重建的主要方向。在分析结果的基础上,与细纹和分配歧管的操作相关,我们提出了更有效的参数选择,即歧管横截面区域,大教横截面区域,对水平的风口倾向的角度。这些变化提供了炉子穿过炉子的气体的均匀分布,以及熔炉中的熔体流动的改进条件。因此,我们在轴炉的工作空间中建立了几乎相同的发育热量和传质过程的条件。在MMSK的轴炉的现代化空气供应系统中,在负担方面增加了14.14%,在哑光方面增加了23.27%,在渣中的15.15%,在热效率方面达到6.65%。同时,降低了以下参数:特定的燃料消耗(无烟煤)17.46%,粉尘放电40.5%。当通过倾斜的Tuerees供应空气到炉子时,可以减少由于炉子水平段的均匀气体分布更均匀的气体分布,因此可以减少吸引的形成并为操作人员提供新的工作条件。在炉膛六个月内,人员与其运作没有任何问题。

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