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Effects of Blowing Conditions on the Dispersion States of Materials Charged into Bottom Blown Oxygen Smelting Furnace

机译:吹气条件对炉底吹氧熔炉中物料弥散状态的影响

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Recent years, bottom blown oxygen copper smelting process has been widely used in China. Besides many advantages such as autothermal operation, this technology is still in developing stage. This topic aims at promoting the dispersion of materials charged into the bottom blown smelting furnace used in the process. Based on the similarity theory, a 1/5 scaled physical model of smelting furnace was constructed. Polypropene particles were used as charged materials. High-speed camera was used to record the phenomenon of the particles dispersion under different gas-flow rates, nozzle diameters and installation angles of nozzles. Image processing software was used for obtaining the particles concentration under different conditions. Results show that when the gas flow rate increases, charged materials disperse better. With the same gas flow, the increasing of nozzle diameter promotes the dispersion effect of materials. The effects of installation angles are opposite for nozzles with diameter of 2.50 and 5.92 mm.
机译:近年来,底部吹氧铜的冶炼工艺已在中国得到广泛应用。除了自动热运行等诸多优点外,该技术还处于开发阶段。本主题旨在促进物料分散到该过程中使用的底部吹炼炉中。基于相似理论,建立了1/5比例的冶炼炉物理模型。聚丙烯颗粒用作带电材料。使用高速摄像机记录了在不同的气体流量,喷嘴直径和喷嘴安装角度下颗粒的分散现象。使用图像处理软件获得不同条件下的颗粒浓度。结果表明,当气体流速增加时,带电物质的分散效果更好。在相同的气体流量下,喷嘴直径的增加会促进材料的分散效果。对于直径为2.50和5.92 mm的喷嘴,安装角度的影响是相反的。

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