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Intriguingly high convective heat transfer enhancement of nanofluid coolants in laminar flows
Authors:Huaqing Xie  Yang Li  Wei Yu
Affiliation:School of Urban Development and Environmental Engineering, Shanghai Second Polytechnic University, Shanghai 201209, China
Abstract:We reported on investigation of the convective heat transfer enhancement of nanofluids as coolants in laminar flows inside a circular copper tube with constant wall temperature. Nanofluids containing Al2O3, ZnO, TiO2, and MgO nanoparticles were prepared with a mixture of 55 vol.% distilled water and 45 vol.% ethylene glycol as base fluid. It was found that the heat transfer behaviors of the nanofluids were highly depended on the volume fraction, average size, species of the suspended nanoparticles and the flow conditions. MgO, Al2O3, and ZnO nanofluids exhibited superior enhancements of heat transfer coefficient, with the highest enhancement up to 252% at a Reynolds number of 1000 for MgO nanofluid. Our results demonstrated that these oxide nanofluids might be promising alternatives for conventional coolants.
Keywords:Nanofluid   Heat transfer enhancement   Oxide nanoparticle
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