Powder transport behavior in RH degasser with powder injection through up snorkel: a transient numerical model

被引:4
|
作者
Liu, Zhuang [1 ,2 ]
Lou, Wen-tao [1 ,2 ]
Zhu, Miao-yong [1 ,2 ]
机构
[1] Northeastern Univ, Key Lab Ecol Met Multimet Mineral, Minist Educ, Shenyang 110819, Liaoning, Peoples R China
[2] Northeastern Univ, Sch Met, Shenyang, Liaoning, Peoples R China
基金
中国国家自然科学基金;
关键词
RH degasser; Powder injection; Numerical simulation; Eulerian-granular flow; Powder transport behavior; Optical probe; MATHEMATICAL-MODEL; MOLTEN STEEL; DESULFURIZATION BEHAVIOR; CFD SIMULATION; LIQUID; FLOW; GAS; PARTICLE; LADLE; KINETICS;
D O I
10.1007/s42243-023-00973-x
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
A transient numerical model was established to predict the dispersion, distribution, and circulation behavior of the powder injected through the up snorkel in a Ruhrstahl-Heraeus (RH) degasser. The effects of the powder diameter, the lifting gas flow rate, and the powder injection rate on the powder transport were investigated. Local powder concentration was measured by a cold model. The results showed that the predicted powder concentration agreed well with the measured. The powder injection process is divided into three periods, named dispersion period, aggregation and circulation period, and dynamically stable period according to the powder transport behavior. The powder diameter has a great effect on the particle dispersion. When the particles size changes from 30 to 500 mu m, the powder dispersion characteristic index changes from 0.110 to 0.741, and the ladle top zone powder mass ratio changes from 0.118 to 0.685. The powder circulation mass flow rate increases to 101.0 kg min(-1) (150 mu m) and then decreases to 46.6 kg min(-1) (500 mu m). Powders with a diameter of more than 220 mu m can change the steel flow mode in the RH degasser. Increasing the lifting gas flow could slightly improve the powder dispersion. Variation in the powder injection rate has almost no effect on the powder dispersion.
引用
收藏
页码:1156 / 1170
页数:15
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