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January 1, 2025Thermal ScienceOpen Access

Modelling and simulation of heat and mass transfer in 3-D water flow over a stretching surface

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Authors

IMIbrahim MahariqSASartaj AzizMFMehreen Fiza

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Overview

Analysis reveals temperature and concentration profiles in nanofluids impacted by thermal radiation and flow dynamics.

Key Points

  • Heat transfer in nanofluids displays unique behaviors with slip effects influencing flow dynamics and energy transfer.
  • Velocity profiles demonstrate decreases due to magnetic and slip parameters, impacting the fluid's thermal characteristics and mass transfer.
  • Numerical methods analyzing governing equations reveal interplay between thermal radiation and rheological characteristics of hybrid nanofluids.
  • The study highlights the effectiveness of using boundary value problem solutions in evaluating complex fluid flow scenarios.

Cite This Study

Mahariq et al. (2025) studied this question.

synapsesocial.com/papers/69255737c0ce034ddc35b006https://doi.org/10.2298/tsci2505091m
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  4. 4Investigation of water-based nanofluids flow over a cylindrical stretching sheet under the non-Fourier heat flux model2026
  5. 5Numerical Study of MHD Hybrid Nanofluid Flow With Multiple Slip Effects Over a Variable Porous Stretching Surface2026