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September 18, 2025Applied SciencesOpen Access

EMHD Flow and Heat Transfer of a Nanofluid Layer and a Hybrid Nanofluid Layer in a Horizontal Channel with Porous Medium

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Authors

MNMilica NikodijevićJPJelena PetrovićMKMiloš Kocić

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Overview

This analysis demonstrates the impact of EMHD flow and heat transfer in nanofluids and hybrid nanofluids, revealing temperature and velocity variations influenced by the Hartmann number.

Key Points

  • An increase in the Hartmann number leads to higher temperatures within the channel due to EMHD interactions.
  • Temperature distributions reveal lower flow velocities compared to pure fluids, enhancing heat transfer efficiency.
  • Shear stresses and Nusselt numbers at channel walls are significantly higher for hybrid and nanofluids than for traditional fluids.
  • The model demonstrates advantages in heat transfer applications over classical models involving water and oil.

Cite This Study

Nikodijević et al. (2025) studied this question.

synapsesocial.com/papers/68d463f131b076d99fa63689https://doi.org/10.3390/app151810183
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