4.5 Article

Experimental investigation of heat transfer characteristics of magnetic nanofluids (MNFs) under a specially designed revolving magnetic field effect

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DOI: 10.1016/j.jmmm.2023.170961

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Magnetic nanofluids (MNFs); Magnetic field effect; Thermal conductivity; Viscosity; Stability; Zeta potential

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This study examined the effect of an external magnetic field on the heat transfer characteristics of magnetic nanofluids (MNFs). MNFs were prepared by synthesizing Fe3O4 nanoparticles with mass ratios of 0.5%, 1%, and 2% in deionized water. The thermal conductivity and viscosity, which directly influence heat transfer, were measured after ensuring the stability of the MNFs. A unique experimental setup was used to investigate the effects of magnetic fields on different MNFs using a rotating magnetic field. The heat transfer experiments showed that the average Nusselt numbers increased by 25%, 38%, and 60% for MNFs with mass ratios of 0.5%, 1%, and 2% under the influence of a constant magnetic field, compared to deionized water.
This study investigated the heat transfer characteristics of magnetic nanofluids (MNFs) under external magnetic field effects. Magnetic nanofluids used in the experiments were synthesised with Fe3O4 (iron oxide) nanoparticles (at mass ratios of 0.5, 1, and 2 %) in deionised water. Then, the thermal conductivity and viscosity values that directly affect the heat transfer results were measured after a comprehensive study on the stability of magnetic nanofluids. A unique set of experiments was designed to determine the effects of magnetic fields on different magnetic nanofluids. This system, which creates a rotating magnetic field effect, can be used stationary and with the effect of revolution at a certain speed. Heat transfer experiment results were evaluated considering average Nusselt numbers obtained from 3500 to 15,000 Reynolds numbers. The magnetic field acting on the magnetic nanofluids in heat transfer experiments was investigated for three circumstances. It was determined that the increasing rates of average Nu numbers in magnetic nanofluids with mass ratios of 0.5, 1 and 2% under the influence of constant magnetic field effects were 25, 38, and 60%, respectively, compared to deionised water. Moreover, when the magnetic field effects were constant, the increasing rates of average Nu numbers obtained 15, 20, and 33% in nanofluids with mass ratios of 0.5, 1, and 2%, respectively, compared to the case without magnetic field effects.

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