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Statistical analysis of the influence of forces on particles in EM driven recirculated turbulent flows

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Published under licence by IOP Publishing Ltd
, , Citation M Ščepanskis et al 2011 J. Phys.: Conf. Ser. 333 012015 DOI 10.1088/1742-6596/333/1/012015

1742-6596/333/1/012015

Abstract

The present paper contains an analysis of the statistical distribution of forces affecting non-conducting particles dispersed in an EM induced recirculated flow in induction furnaces. The simulation is conducted adopting the LES-based Euler-Lagrange approach in the limit of dilute conditions (one-way coupling). It is done by means of a development of OpenFOAM software code. The used Lagrange equation for particle tracking includes drag, EM, buoyancy, lift, acceleration and added mass forces. The relevant approximations for the forces are chosen on the basis of the statistical analysis of the non-dimensional parameters (particle Reynolds number, shear stress and acceleration parameter). The effect of force distribution on particle homogenization is described under different density ratios and particle sizes. The recommendations of the consistence of the Lagrange model for the simulation of the particle motion in the laboratory scale induction crucible furnace are given in conclusion.

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10.1088/1742-6596/333/1/012015