R. D. MORALES, S. LOPEZ-RAMIREZ
Fluid flow and heat transfer of liquid steel in a two-strand tundish of a slab caster were analyzed using water modeling and numerical techniques. Three cases were considered: a bare tundish, a tundish equipped with a pair of weirs and a pair of baffles (arrangement W&B), and a tundish equipped with a turbulence inhibitor and a pair of baffles (arrangement Tl&B). The water modeling, under isothermal conditions, indicated the existence of a strong bypass-flow for the bare tundish and the W&B arrangement while the Tl&B arrangement reported a longer minimum residence time and higher plug flow characteristics. Numerical results verified the trend mentioned with the water model. The numerical study showed that cold and hot steel affected considerably the flow patterns of steel due to the existence of buoyancy forces. In the case of a step-input of cold steel, bypass-flow was intensified for the bare tundish and the tundish with a W&B arrangement. When a step input of hot steel is introduced into the system, buoyancy forces make the steel to flow preferentially near the free surface. The tundish with a Tl&B arrangement showed the best flow characteristics with no splashing and negligible turbulence.
@article{deef9841-512a-4205-b5c0-043e04a58679,
title={Numerical and Modeling Analysis of Fluid},
author={R. D. MORALES and S. LOPEZ-RAMIREZ},
year={2026},
language={en}
}TY - JOUR TI - Numerical and Modeling Analysis of Fluid AU - R. D. MORALES AU - S. LOPEZ-RAMIREZ PY - 2026 LA - en ER -
HRUTUJ RAUT
A shell and tube heat exchanger design with respect to the total heat transfer rate and temperature profile has been investigated by numerical modelli
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