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September 27, 2025Discover NanoOpen Access

Computational analysis of MHD ternary hybrid nanofluid flow with thermochemical reactions through a porous medium on a rotating stretching sheet

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Authors

ASA. B. SadiyaGSG. Sucharitha

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Overview

Computational study assesses heat transfer and concentration profiles in ternary hybrid nanofluids, highlighting thermochemical reaction impacts.

Key Points

  • Increasing magnetic field and Froude number enhances the thermal efficiency profile by 1.2% and 0.85%, respectively.
  • This study reports a 6.65% increase in overall heat transfer performance, with a 1.86% rise in mass transfer efficiency.
  • The investigation utilizes ordinary differential equations, transformed from partial differential equations, to model fluid dynamics.
  • Findings suggest potential applications in industries like cosmetics and hydraulic systems, underscoring practical relevance.

Cite This Study

Sadiya et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3edeebfec0fc52371b6https://doi.org/10.1186/s11671-025-04353-0
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Also Consider

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  1. 1Numerical Investigation of MWCNT and SWCNT Fluid Flow along with the Activation Energy Effects over Quartic Auto Catalytic Endothermic and Exothermic Chemical Reactions2022 · 57 citations
  2. 2EDL impact on mixed magneto-convection in a vertical channel using ternary hybrid nanofluid2022 · 59 citations
  3. 3Computational Role of Autocatalytic Chemical Reaction in the Dynamics of a Ternary Hybrid Nanofluid Past a Rotating Stretching Surface2024 · 7 citations