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August 9, 2026Discover NanoOpen Access

A numerical study of non-Newtonian blood-based hybrid nanofluid flow over a stretching cylinder with Cattaneo–Christov heat flux and homogeneous heterogeneous reactions

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Authors

LALiaqat AliSSSheheryar ShahSASharifah E. Alhazmi

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Overview

Numerical study models heat and mass transfer in blood-based hybrid nanofluids, indicating implications for biomedical systems.

Key Points

  • To develop a mathematical model for heat and mass transfer characteristics of blood-based hybrid nanofluids in complex flow situations.
  • Developed a mathematical model incorporating Casson rheology and Cattaneo-Christov heat flux.
  • Transformed partial differential equations into ordinary differential equations using similarity transformations.
  • Solved equations numerically using MATLAB bvp4c collocation solver.
  • Increasing Casson and porosity parameters suppresses the velocity profile while enhancing the skin-friction coefficient.
  • Temperature distribution increases with heat generation but decreases with thermal relaxation.
  • Homogeneous and heterogeneous reaction parameters significantly reduce concentration profile.

Cite This Study

Ali et al. (2026) studied this question.

synapsesocial.com/papers/6a782cfa2e1896536c83fc22https://doi.org/10.1186/s11671-026-04828-8
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Also Consider

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

  1. 1Numerical study of MHD Casson hybrid nanofluid flow with Brownian and thermophoretic diffusion in porous media2026
  2. 2Analysis of the magnetohydrodynamic Maxwell hybrid nanofluid flow over a convectively heated bi‐directional stretching sheet with Cattaneo–Christov heat and mass flux model2025
  3. 3Magnetized blood-based Casson ternary hybrid nanofluid flow over a wedge with Darcy-Forchheimer resistance and nonlinear thermal radiation2026
  4. 4Numerical investigation of magnetohydrodynamic blood-based ternary and hybrid nanofluid flow over a bidirectionally stretching surface: thermal radiation, variable viscosity, and non-Darcy effects2026
  5. 5Impact of Cattaneo–Christov Fluxes on Bio-Convective Flow of a Second-Grade Hybrid Nanofluid in a Porous Medium2025