Darcy-Forchheimer hybrid nanofluid flow over the rotating Riga disk in the presence of chemical reaction: Artificial neural network approach
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference70 articles.
1. New idea of Atangana and Baleanu fractional derivatives to human blood flow in nanofluids. Chaos: An Interdisciplinary;Khan;J. Nonlinear Sci.,2019
2. Prabhakar fractional derivative model of sodium alginate (C6H9NaO7) for accelerated plate motions;Khan;Front. Energy Res.,2022
3. Hemodynamics of blood flow over an inclined cylinder;Khan;Waves Random Complex Media,2022
4. Flow of aqueous Fe2O3–CuO hybrid nanofluid over a permeable stretching/shrinking wedge: A development on Falkner-Skan problem;Izady;Chin. J. Phys.,2021
5. Blood-based hybrid nanofluid flow through converging/diverging channel with multiple slips effect: a development of Jeffery-Hamel problem;Dinarvand;Int. J. Numer. Meth. Heat Fluid Flow,2023
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