Sifiso Nation Sambo, Lina Hockaday
This work studies heat transport in the fluid–solid interface of a packed bed to demonstrate the feasibility of preheating lumpy manganese ores to 600◦C with air at 750◦C. Preheated manganese ores aim to reduce furnace energy consumption during smelting in submerged arc furnaces to produce manganese ferroalloys. The preheating process was experimentally studied in a pilot-scale shaft-type column. The air was heated to 750 ◦C and used as a heat transfer fluid to heat a packed bed of manganese ore from room temperature to 600 ◦C. A one-dimensional three-phase (manganese ore, air, and the column wall) numerical model was developed to simulate the preheating process. The energy balance of the three phases was carried across a finite volume using the volume averaging technique. Numerical schemes were applied, and non-dimensional parameters were introduced before applying numerical techniques to solve the systems of linear equations. Python NumPy and SciPy modules were used for the computation of the packed bed temperature fields. Temperature data from the preheating tests were used for model validation. The model prediction of the transfer process agreed with experimental results to least square errors of less than 25 ◦C.
@article{f5959f2e-6287-4fe0-8d8f-3f51c1a362f4,
title={2025 Numerical Experimental Packed Bed Manganese Preheating},
author={Sifiso Nation Sambo and Lina Hockaday},
year={2026},
language={en}
}TY - JOUR TI - 2025 Numerical Experimental Packed Bed Manganese Preheating AU - Sifiso Nation Sambo AU - Lina Hockaday PY - 2026 LA - en ER -
Santhana Krishnan, Nor Syahidah Zulkapli
Fast industrialization has increased the demand for heavy metals, while high-grade ore natural reserves are diminishing. Therefore, alternative source
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