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Md. Samin Khan Hridoy

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Conference Open access Aug 2026

Enhanced Thermal Performance of Shell-And-Tube Heat Exchangers Using Fe3O4 and Al2O3 Nanofluids: A CFD-Based Comparative Study

Shell-and-tube heat exchangers (STHEs) are widely used but limited by the low thermal conductivity of conventional fluids. This study uses CFD simulations to compare the thermal performance of Fe3O4-water and Al2O3-water nanofluids in an STHE under laminar flow. Nanoparticle concentrations of 5–20% and Reynolds numbers of 200-1000 were tested. Model validation showed deviations within ±8%. Results reveal that both nanofluids enhance heat transfer, with Fe3O4 consistently outperforming Al2O3. At ϕ = 20% and Re = 1000, Fe3O4 achieved a maximum heat transfer coefficient of 306.95 W/m²·K, about 318% higher than water and 40% above Al2O3. Temperature contours confirmed thinner boundary layers and greater heat removal for Fe3O4, highlighting its superior thermal capability for compact heat exchanger applications.

Asaduzzaman Sakib, Usama Aziz, Md. Samin Khan Hridoy et al. · 0 citations