Physical and numerical modeling of liquid slag entrainment in mould during slabs casting

Author:

Bielnicki Marcin,Jowsa Jan

Abstract

The paper presents results of physical and numerical modeling of liquid slag entrainment during continuous casting of steel slabs process. The main aim of this work was to determine the critical casting speed and also to specify, which entrainment mechanism is most responsible for transport of slag droplets into steel volume. Physical modeling was based on water-oil model of mould, made on reduced linear scale of Sl = 0.4. In mathematical modeling, Realizable k-ε and LES WALE models were used to describe turbulent motion of water and oil, whereas Volume of Fluid model was used to take into account interactions between phases. It was found, that the main cause of slag entrainment is the formation of von Karman vortex in the vicinity of submerged entry nozzle. The results of laboratory experiments and numerical simulations were compared each other. Both method are a useful tools for modeling of slag entrainment. Great agreement was found between laboratory experiments and numerical simulation carried out using LES WALE model, regarding the shape of the oil and oil entrainment as a result of vortex structures formation. However, in the simulation case using Realizable k-ε model, the oil entrainment hasn’t been modeled for the conditions under consideration.

Publisher

EDP Sciences

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Computational Mechanics

Reference33 articles.

1. Structure and Properties of Slags Used in the Continuous Casting of Steel: Part 1 Conventional Mould Powders

2. The Role of Mould Fluxes in Continuous Casting-So Simple Yet So Complex

3. Constitutional Segregation of Al2O3 in Mold Slag and Its Impact on Steel Cleanliness During Continuous Casting

4. Kountouriotis Z., Modelling of the Liquid Slag Behaviour in the Continuous Casting Mould, Ph.D. Thesis, School of Computing and Mathematical Sciences the University of Greenwich, London, 2011

5. Vakhrushev A., Wu M., Ludwig A., Nitzl G., Tang Y., Hackl G., Experimental Verification of a 3-Phase Continuous Casting Simulation Using a Water Model, in: 8th European Continuous Casting Conference, Graz, Austria, 2014, pp. 85–94

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