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article · Journal of Porous Media

DARCY-FORCHHEIMER RADIATIVE FLOW OF A HYBRID NANOFLUID WITH VELOCITY MASS FLUX AND THERMAL STABILITY

202413 citationsBeni Suef University

Abstract

This research aimed to predicts the stability of hybrid nanofluid subject to the contribution of the Darcy-Forchheimer flow. The thermal feature of the current model was exposed by encountering thermal radiative consequences. The combination of aluminum oxide and copper tiny materials were collectively decomposed with water liquid, which expressed the base material. The addition of thermal phenomenon occurred by using convective thermal constraints. Multiple numerical simulations supported with the shooting technique were performed. The dual solution was deduced for a governing problem for flow parameters. Additionally, a stability analysis was worked through for the given model. Upon enhancing the nanoparticles volume fraction, the boosted heat transfer phenomenon was observed. The Nusselt number reduced in dual branches due to nanoparticles volume fraction.

Research topics

  • Nanofluid Flow and Heat Transfer
  • Fluid Dynamics and Turbulent Flows
  • Heat Transfer Mechanisms

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DOI: 10.1615/jpormedia.2024051851

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