Mehdi ALIZADEH, Hossein EDRIS
Fluid flow and mixing of molten steel in a twin-slab-strand continuous casting tundish were investigated using a mixing model under non-isothermal conditions. This model led to a set of ordinary differential equations that were solved with a Runge-Kutta algorithm. Steady state water modeling was carried out under non-isothermal conditions. Experimental data obtained from the water model were used to calibrate the mixing model. Owing to the presence of a mixed convection in the non-isothermal conditions, a channelizing flow would be created in the fluid inside the tundish. A mixing model was designed that was capable of predicting RTD (residence time distribution) curves for different cases in non-isothermal conditions. The relationship between RTD parameters and the Tu (tundish Richardson number) was obtained for various cases under non-isothermal conditions. The results show that the RTD parameters were completely different under isothermal and non-isothermal conditions. The comparison of the RTD curves between the isothermal and non-isothermal conditions presents that the extent of mixing in the tundish in non-isothermal conditions is lower than the mixing extent in isothermal conditions.
@article{738eb771-9bbc-47e1-b82c-f2270ffd1443,
title={Fluid Flow and Mixing in Non Isothermal},
author={Mehdi ALIZADEH and Hossein EDRIS},
year={2026},
language={en}
}TY - JOUR TI - Fluid Flow and Mixing in Non Isothermal AU - Mehdi ALIZADEH AU - Hossein EDRIS PY - 2026 LA - en ER -
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