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July 2, 2026Asia-Pacific Journal of Chemical Engineering

Numerical Study of MHD Hybrid Nanofluid Flow With Multiple Slip Effects Over a Variable Porous Stretching Surface

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Authors

MAMounirah AreshiABAbdul BariqSASalemah A. Almutlak

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Overview

Numerical trial explores heat and mass transfer in hybrid nanofluids, indicating enhanced thermal efficiency and fluid dynamics.

Key Points

  • This research aims to analyze the thermal performance and underlying mechanisms of magnetized hybrid nanofluid flow over a stretching surface.
  • Utilized the Cattaneo–Christov flux model to replace Fourier's and Fick's laws for energy and solute transport.
  • Incorporated solar radiation and Joule heating into the energy equation to understand their impact on thermal behavior.
  • Applied the bvp4c numerical scheme to solve dimensionless governing equations and analyze various influencing factors.
  • Magnetic field and velocity slip suppress fluid motion, increasing skin friction, while porous permeability promotes flow and reduces drag.
  • Thermophoresis enhances nanoparticle concentration near the surface, affecting mass transfer, while Brownian motion helps achieve mass transfer uniformity.
  • Radiation and magnetic field effects elevate fluid temperature, indicating stronger energy dissipation and improved thermal efficiency.

Cite This Study

Areshi et al. (2026) studied this question.

synapsesocial.com/papers/6a4600a29ed1343031310b14https://doi.org/10.1002/apj.70270
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Impact of Cattaneo–Christov Heat and Mass Flux on MHD Hybrid Nanofluid Flow Over an Extending Surface With Convective and Mass Flux Effects2026
  2. 2RSM analysis of MHD hybrid nanofluid flow over a magnetized stretching surface with Cattaneo–Christov heat flux in a porous medium2026
  3. 3A numerical study of heat and mass transfer characteristic of three-dimensional bi- directional permeable stretching surface with thermal radiation, chemical reaction, and slip boundary conditions2024
  4. 4Impact of Navier’s Slip and MHD on a Hybrid Nanofluid Flow over a Porous Stretching/Shrinking Sheet with Heat Transfer2024 · 22 citations
  5. 5Analysis of the magnetohydrodynamic Maxwell hybrid nanofluid flow over a convectively heated bi‐directional stretching sheet with Cattaneo–Christov heat and mass flux model2025