R. Singh, B.G. Thomas
The continuous casting process is critical for producing high-quality steel, yet fluid flow in the mold region can lead to significant defects and quality issues. This study investigates the effect of electromagnetic braking (EMBr) on turbulent flow characteristics within this context. The objective was to analyze how EMBr alters mold flow patterns under various operational conditions. A combination of Large Eddy Simulation (LES) and experimental approaches were employed to capture transient behaviors of the flow, which are essential for understanding the dynamics of the casting process. The results indicate that local application of EMBr can weaken upper recirculation zones and influence surface velocity profiles, presenting new insights into optimizing mold configurations to achieve improved steel quality. By enhancing our understanding of electromagnetic influences on turbulent flows, this research contributes to the ongoing efforts to refine continuous casting practices, ensuring a more efficient and defect-free production of steel.
@article{40994621-66d6-4335-9d05-513e21ac14e8,
title={Effect of Electromagnetic Braking EMBr o},
author={R. Singh and B.G. Thomas},
year={2026},
language={en}
}TY - JOUR TI - Effect of Electromagnetic Braking EMBr o AU - R. Singh AU - B.G. Thomas PY - 2026 LA - en ER -
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