Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace

The article presents numerical simulations of fluid flow and chemical homogenization of liquid steel in gas-stirred ladle with two asymmetric porous plugs. In this study mixing time is analyzed as a function of porous plug location. All calculations were carried out by commercial computer program Fl...

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Main Authors: Merder, T., Jowsa, J., Warzecha, M.
Format: Article
Language:English
Published: Croatian Metallurgical Society 2007-01-01
Series:Metalurgija
Subjects:
Online Access:http://public.carnet.hr/metalurg/Metalurgija/2007_vol_46/No_4/MET_46_4_227_232_Warzecha.pdf
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author Merder, T.
Jowsa, J.
Warzecha, M.
author_facet Merder, T.
Jowsa, J.
Warzecha, M.
author_sort Merder, T.
collection DOAJ
description The article presents numerical simulations of fluid flow and chemical homogenization of liquid steel in gas-stirred ladle with two asymmetric porous plugs. In this study mixing time is analyzed as a function of porous plug location. All calculations were carried out by commercial computer program Fluent using k-ε turbulence model. Results show the velocity vectors of liquid steel and tracer concentration field after alloy addition. Numerical calculations were used to get the mixing time of liquid steel as a function of gas flow rate and porous plugs location.
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spelling doaj.art-f9f0b727c6df4a008b2da2d4aab499262022-12-21T18:43:44ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762007-01-01464227232Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle FurnaceMerder, T.Jowsa, J.Warzecha, M.The article presents numerical simulations of fluid flow and chemical homogenization of liquid steel in gas-stirred ladle with two asymmetric porous plugs. In this study mixing time is analyzed as a function of porous plug location. All calculations were carried out by commercial computer program Fluent using k-ε turbulence model. Results show the velocity vectors of liquid steel and tracer concentration field after alloy addition. Numerical calculations were used to get the mixing time of liquid steel as a function of gas flow rate and porous plugs location.http://public.carnet.hr/metalurg/Metalurgija/2007_vol_46/No_4/MET_46_4_227_232_Warzecha.pdfsteelladlemixing timemathematical modelingfluid dynamics
spellingShingle Merder, T.
Jowsa, J.
Warzecha, M.
Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace
Metalurgija
steel
ladle
mixing time
mathematical modeling
fluid dynamics
title Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace
title_full Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace
title_fullStr Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace
title_full_unstemmed Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace
title_short Gas Mixing And Chemical Homogenization Of Steel In 100 T Ladle Furnace
title_sort gas mixing and chemical homogenization of steel in 100 t ladle furnace
topic steel
ladle
mixing time
mathematical modeling
fluid dynamics
url http://public.carnet.hr/metalurg/Metalurgija/2007_vol_46/No_4/MET_46_4_227_232_Warzecha.pdf
work_keys_str_mv AT merdert gasmixingandchemicalhomogenizationofsteelin100tladlefurnace
AT jowsaj gasmixingandchemicalhomogenizationofsteelin100tladlefurnace
AT warzecham gasmixingandchemicalhomogenizationofsteelin100tladlefurnace