Numerical Simulation of Motion and Distribution of Powder Particles Injected from a Nozzles-Twisted Oxygen Lance in BOF Steelmaking

Author:

Li Lin12,Yu Shan12,Sun Ye12,Liu Yan12,Chen Ren12,Hu Peiwen3

Affiliation:

1. Liaoning Institute of Science and Technology, School of Metallurgical Engineering, Benxi 117004, China

2. Liaoning Key Laboratory of Optimization and Utilization of Non-Associated Low-Grade Iron Ore, Benxi 117004, China

3. Division of Information Technology and Management, Shandong Yingcai University, Jinan 250104, China

Abstract

The pulverized lime/limestone injection by top oxygen blowing lance during the basic oxygen furnace (BOF) process has gained much interest in recent years due to its advantages in helping slag formation and consequently in promoting refining reactions such as dephosphorization. In this pneumatic process, understanding the motion behavior and distribution of the powder particles in the furnace is of importance for regulating and designing this refining system reliably and efficiently. In this study, limestone powder top blowing through a novel nozzles-twisted oxygen lance during a BOF process is proposed and the process is simulated by establishing a multi-fluid flow model. The coupled fluid flow of gaseous oxygen and liquid steel is predicted by the volume of fluid (VOF) method, and the motion of the limestone particles is tracked by the discrete phase model (DPM). The results show that the powder injection has little effect on cavity depth of the oxygen-powder mixture jets of the nozzles-twisted lance, but decreases cavity width. During the blowing process, most of the powder particles gather around hot spots while the rest are taken out of the furnace by the reflecting oxygen stream or penetrate into the molten bath. The generated swirling flow of the nozzles-twisted oxygen lance enables a decrease in the amount of the powder particles carried by the reflecting stream and going into the molten bath, through changing the motion paths of the powder particles. As a result, the concentration distribution of the powder particles in the molten bath varies. It could be suggested that for the limestone powder injection the preferred nozzle twist angle of the oxygen lance is 10° due to the favorable conditions for dephosphorization.

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

Reference21 articles.

1. The utilization of high-phosphorous hot metal in BOF steelmaking;Chukwulebe;Iron Steel Technol.,2006

2. Scenario analyses for by-products reuse in integrated steelmaking plants by combining process modeling, simulation, and optimization techniques;Matino;Steel Res. Int.,2019

3. Lan, M., He, Z.W., and Hu, X.J. (2022). Optimization of iron recovery from BOF slag by oxidation and magnetic separation. Metals, 12.

4. Barui, S., Mukherjee, S., Srivastava, A., and Chattopadhyay, K. (2022). Understanding dephosphorization in basic oxygen furnaces (BOFs) using data driven modeling techniques. Metals, 12.

5. Gas-particle mixture flow in various types of convergent-divergent nozzle;Okuda;J. Chem. Eng. Jpn.,1978

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