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Heat and mass transfer analysis of thermally radiative ternary nanofluid flow inside a cavity: A numerical study

This numerical study employs the finite element method to analyze the effects of thermal radiation, activation energy, and nanoparticle volume fraction on the flow, heat, and mass transfer characteristics of a ternary nanofluid (Ethylene Glycol with TiO2, CuO, and Fe3O4) within a square cavity, revealing that radiation and activation energy significantly influence temperature and concentration distributions while the nanoparticle fraction enhances heat transfer rates.

Original authors: Paluru Sreedevi, Patakota Sudarsana Reddy

Published 2026-08-20
📖 1 min read☕ Coffee break read

Original authors: Paluru Sreedevi, Patakota Sudarsana Reddy

Original paper licensed under CC BY 4.0 (https://creativecommons.org/licenses/by/4.0/). This is an AI-generated explanation of the paper below. It is not written or endorsed by the authors. For technical accuracy, refer to the original paper. Read full disclaimer

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