PDF

Numerical Simulation of Bottom-Blowing Stirring in Different Smelting Stages of Electric Arc Furnace Steelmaking

Hang Hu, Lingzhi Yang

2018ensteelmakingnumerical simulationelectric arc furnacefluid dynamics

Abstract

Language:

Electric arc furnace (EAF) steel bottom-blowing can effectively improve the temperature and composition uniformity of the molten pool during smelting process. To explore the effect of molten-steel characteristics on bottom-blowing at various stages of smelting, we divided the smelting process of the EAF into four stages: the melting stage, the early decarburization stage, the intermediate smelting stage, and the ending smelting stage. The numerical simulation software ANSYS Fluent 18.2 was used to simulate the velocity field of molten steel under the condition of bottom-blowing stirring in different stages in EAF steelmaking process. The properties of bottom-blowing and the kinetic conditions of the steel-slag at this interface were investigated. Our results showed that at a bottom-blowing gas flow rate of 100 L/min, the average flow rates of the four stages were v1 = 0.0081 m/s, v2 = 0.0069 m/s, v3 = 0.0063 m/s, and v4 = 0.0053 m/s. The physical model verification confirmed the results that, i.e., the viscosity of molten steel decreased as the smelting progressed, and the flow velocity of the molten steel caused by the agitation of bottom-blowing also decreased, the effect of bottom-blowing decreased. Based on these results, a theoretical basis was provided for the development of the bottom-blowing process.

Download

Cite This Work

@article{17fd5069-20fa-40e8-9012-4f8419b5f849,
  title={Numerical Simulation of Bottom-Blowing Stirring in Different Smelting Stages of Electric Arc Furnace Steelmaking},
  author={Hang Hu and Lingzhi Yang},
  year={2018},
  language={en}
}
TY  - JOUR
TI  - Numerical Simulation of Bottom-Blowing Stirring in Different Smelting Stages of Electric Arc Furnace Steelmaking
AU  - Hang Hu
AU  - Lingzhi Yang
PY  - 2018
LA  - en
ER  -

Similar Items

Designing of Synergistic Waste Mixtures for Multiphase Reactive Smelting

Vaso Manojlovic, Željko Kamberovic, Miroslav Sokic, Milorad Gavrilovski and Marija Korac

Electric arc furnace (EAF) dust, together with a mill scale and coke were smelted in a laboratory electric arc furnace. These metallurgical wastes con

2016enPDF

Steelmaking Overview

Roger Rumbu

The field of steelmaking is characterized by its continuously evolving technologies and techniques, which are critical to meet the growing demands of

2019enPDF$100.00

BLAST FURNACE IRONMAKING: Analysis, Control, and Optimization

Ian Cameron, Mitren Sukhram

This book delves into the intricate processes involved in blast furnace ironmaking, emphasizing the analysis, control, and optimization of operations.

2020enPDF

Plant auditing: a powerful tool for improving metallurgical plant performance

Deepak Malhotra

This work discusses the essential components of a rigorous auditing process aimed at enhancing metallurgical plant performance. The objective is to id

2015enPDF

AN INTRODUCTION TO THE METALLURGY OF STEEL AND ITS ALLOYS

Robert A. Francis

This document serves as a comprehensive introduction to the metallurgy of steel and its alloys, focusing on various aspects of iron and steel manufact

2017enPDF

Literature Review of Hydrometallurgical Recycling of Printed Circuit Boards (PCBs)

Hao Cui, Corby G Anderson

This study provides an up-to-date review of recycling of printed circuit boards (PCBs), specifically in hydrometallurgical treatment. Waste printed ci

2016enPDF