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A physical modelling study to determine the influence of slag on the fluid flow in the AOD converter process

机译:一种物理建模研究,以确定炉渣对AOD转换器过程流体流动的影响

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摘要

A 1:4.6 scale physical model of a production argon oxygen decarburisation (AOD) converter was used to study the influence of top slag on the AOD process. Specifically, the gas penetration depth, fluid flow and slag behaviour under different nozzle diameters, nozzle numbers and gas flow rates were studied. The results show that the relative gas penetration depth generally increases linearly with an increased gas flow rate and a decreased nozzle size. Furthermore, the slag thickness increases linearly with an increased gas flow rate. In addition, the open-eye size was found to increase exponentially with an increased gas flow rate. Overall, three kinds of fluid flow patterns were found in the experiments: (i) a counter-clockwise rotation, (ii) a clockwise rotation and (iii) a double circulation with the plume in the middle of the converter. A counter-clockwise rotation was most common for the current experimental conditions.
机译:A.6 4.6规模的生产氩气脱碳(AOD)转换器的物理模型用于研究顶部炉渣对AOD过程的影响。 具体地,研究了不同喷嘴直径,喷嘴数和气流速率下的气体穿透深度,流体流动和炉渣行为。 结果表明,相对气体渗透深度通常随着气体流速的增加和降低的喷嘴尺寸而导致线性增加。 此外,炉渣厚度随着气体流速的增加而线性增加。 此外,发现睁眼尺寸以增加的气体流速呈指数增加。 总的来说,在实验中发现了三种流体流动模式:(i)逆时针旋转,(ii)顺时针旋转和(iii)在转换器中间的羽流双循环。 逆时针旋转对于当前的实验条件最常见。

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