Coupled Thermodynamic And Kinetic Modeling Of A Top-Blown Bath

- Organization:
- The Minerals, Metals and Materials Society
- Pages:
- 11
- File Size:
- 158 KB
- Publication Date:
- Jan 1, 2006
Abstract
A fundamental mathematical model of lance blowing on a bath surface has been developed with a purpose to increase the understanding of various phenomena in top blown oxygen converters. The model is based on the Navier-Stokes equations and turbulence is predicted using the k-model. In the present model the deformation of the liquid surface, caused by the impinging gas jet, is described using a VOF formulation. The mathematical model results have been verified by comparing predicted penetration-depth data with experimental results from physical model trials. The fluid dynamic modeling has also been coupled with the thermodynamic modeling to predict the reaction rate/distribution occurring in the vessel. The focus has been on carbon and a qualitative comparison of the predicted carbon content in the hot spot area and in droplets with experimental data from laboratory trials has been done.
Citation
APA:
(2006) Coupled Thermodynamic And Kinetic Modeling Of A Top-Blown BathMLA: Coupled Thermodynamic And Kinetic Modeling Of A Top-Blown Bath. The Minerals, Metals and Materials Society, 2006.