Electric Arc Furnace Stirring: A Review
Перемешивание в электродуговой печи: обзор
2023-02-22
SCID: 54.1/5xmnx4bx
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bottom gas injectionelectric arc furnace (EAF)electromagnetic stirringliquid steel mixingstirring
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Abstract (AI)
Thermodynamics and kinetics are affected by the stirring conditions. Higher‐stirring intensities promote conditions closer to equilibrium and increase the mass‐transfer coefficients. A major limitation of the conventional electric arc furnace (EAF) is the low velocities of liquid steel which result in very poor mixing conditions. The practical consequences are lower decarburization rates and lower melting rates. Herein, the forces that operate and promote the motion of liquid steel in a conventional EAF are reviewed in detail; buoyancy forces, momentum transfer by the oxygen jets, drag forces by CO bubbles are produced by decarburization and local electromagnetic forces at the electrode regions. It is shown in the short range and limited intensity of the previous forces. Bottom gas injection and electromagnetic stirring are the main methods that can induce forced convection in the EAF. The information available is summarized and analyzed to describe the results obtained at laboratory level and industrial scale using different stirring mechanisms. Finally, guidelines are provided in this review for further research on the basis of the limitations of the current results.
Key Findings
1
Bottom gas injection and electromagnetic stirring are the main methods capable of inducing forced convection in EAFs, demonstrated at laboratory and industrial scales.
2
Conventional EAFs suffer from low liquid steel velocities, causing very poor mixing, lower decarburization rates, and lower melting rates.
3
Forces driving liquid steel motion in conventional EAFs include buoyancy, oxygen-jet momentum transfer, CO-bubble drag from decarburization, and local electromagnetic forces near electrodes.
4
Higher stirring intensities in EAFs promote conditions closer to thermodynamic equilibrium and increase mass-transfer coefficients.
5
The intrinsic forces in conventional EAFs act over short ranges and with limited intensity, insufficient for effective global mixing.
6
The review identifies limitations in current results and provides guidelines for further research based on those limitations.
Research Object
Stirring (forced and natural convection mechanisms) of liquid steel in conventional electric arc furnaces (EAF)
Research Subject
Effects and mechanisms by which different stirring methods (buoyancy, oxygen-jet momentum transfer, CO-bubble drag, local electromagnetic forces, bottom gas injection, electromagnetic stirring) influence flow velocities, mixing, mass-transfer coefficients, decarburization and melting rates in EAFs; summary and evaluation of laboratory and industrial results and limitations
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2023-02-22
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