MHD Powell–Eyring nanofluid motion with convective surface condition and Dufour–Soret impact past a vertical plate: Lie group analysis
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Analysis
Reference49 articles.
1. A mathematical model for entropy generation in a Powell-Eyring nanofluid flow in a porous channel;Ogunseye;Heliyon,2019
2. Analysis of unsteady MHD Eyring-Powell squeezing flow in stretching channel with considering thermal radiation and joule heating effect using AGM;Ghadikolaei;Case Stud Therm Eng,2017
3. Numerical exploration of the features of thermally enhanced chemically reactive radiative Powell–Eyring nanofluid flow via Darcy medium over non–linearly stretching surface affected by a transverse magnetic field and convective boundary conditions;Rasool;Appl Nanosci,2020
4. Nonlinear radiative Eyring-Powell nanofluid flow along a vertical Riga plate with exponential varying viscosity and chemical reaction;Fatunmbi;Int Commun Heat Mass Transf,2020
5. Peristaltic flow of Eyring-Powell nanofluid under the action of an electromagnetic field, engineering science and technology;Mallick;Int J Eng Sci Technol,2019
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