C. D. Dritselis, A. Iatrides
In the present paper the effect of Lorentz force on several aspects of the turbulent dispersion of nonmetallic impurities in liquid metals is numerically investigated using direct numerical simulation combined with a Lagrangian particle-tracking scheme. The simplified magnetohydrodynamic equations for an electrically conducting and incompressible fluid in the limit of low magnetic Reynolds numbers are adopted. The particle trajectories are calculated in a Lagrangian reference frame and they are determined by the drag, added mass, pressure gradient, and gravity forces. Results for the effect of the magnetic field applied in either the streamwise, wall-normal, or spanwise direction on the spatial distribution of particles with regard to the flow transformation are presented.
@article{b342178a-f9b3-4cf3-a0d3-479691ac6300,
title={Turbulent dispersion of nonmetallic impu},
author={C. D. Dritselis and A. Iatrides},
year={2026},
language={en}
}TY - JOUR TI - Turbulent dispersion of nonmetallic impu AU - C. D. Dritselis AU - A. Iatrides PY - 2026 LA - en ER -
This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data
Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle