Analysis of the gas-dynamic operation of the furnace space and the path "blast furnace – dust collector" when changing the design of the flues

B. V. Kornilov, O. Chaika, V. V. Lebid, A. O. Moskalyna
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Abstract

gas removal path without heat exchange, obtained with the use of numerical modeling and with engineering methods, are compared. It is established that the difference between the results obtained by numerical simulations and engineering methods does not exceed 7 %. The paper presents the results of the analysis of the relationships between the design of the furnace and the parameters of the furnace gas flow with the gas-dynamic mode of operation of the blast furnace and the path of "dirty" gas from the furnace to the dust collector. The gas-dynamic calculation is made and the estimation of change of a design of insertion of flues in a furnace dome taking into account necessity of installation on it сoneless loading device is given. The heat-gas-dynamic calculation is realized and the influence of change of gas-dynamic parameters of gas flow and cross-sectional area of flues on change of pressure losses, speed and temperature difference of blast furnace gas in its path from furnace to dust collector is determined. It is established that the gas velocity in the charge-free zone of the furnace is a determining parameter for pressure losses not only in the furnace space, but also for the gas-dynamic operation of the Blast Furnace – Dust Collector tract.
分析了改变烟道设计时炉膛空间和“高炉-集尘器”路径的气动力运行情况
对数值模拟和工程方法得到的无换热气体去除路径进行了比较。通过数值模拟和工程方法获得的结果之间的差异不超过7%。本文介绍了分析高炉设计和高炉气流参数与高炉气体动力学运行模式以及“脏”气体从高炉到除尘器的路径之间关系的结果。进行了气体动力学计算,并估计了在考虑到安装在炉圆顶上的必要性的情况下,在炉圆顶中插入烟道的设计的变化。实现了热风动力学计算,确定了气流和烟道截面积的气体动力学参数变化对高炉煤气从炉膛到除尘器路径上的压力损失、速度和温差变化的影响。已经确定,高炉无料区的气体速度不仅是炉膛内压力损失的决定参数,也是高炉-除尘器区气体动态运行的决定参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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