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Physical-modeling study of fluid flow and gas penetration in a side-blown AOD converter

Authors :
Bjurstrom, M.
Tilliander, Anders
Iguchi, M.
Jönsson, Pär
Bjurstrom, M.
Tilliander, Anders
Iguchi, M.
Jönsson, Pär
Publication Year :
2006

Abstract

The main fluid-flow pattern that results in a converter with side gas injection was studied using physical modeling. Having roughly the same viscosity as liquid steel, water was used in the experiments. The velocity of the water was determined for different positions in the vessel symmetry plane by laser Doppler velocimetry. Experiments were performed using combinations of three different bath heights and four different gas-flow rates. The results showed penetration of the gas plume into the steel bath both at the tuyere and bath level to increase with an increased gas-flow rate. Also, the penetration depth of the gas both at the tuyere and bath surface level were more affected by an increased gas-flow rate than an increased bath height. Finally, the overall fluid-flow pattern in the system was found to change both with an increased bath height and an increased gas-flow rate.<br />QC 20100525

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1234992741
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.2355.isijinternational.46.523