Effects of Non-Linear Thermal Radiation and Chemical Reaction on Time Dependent Flow of Williamson Nanofluid With Combine Electrical Mhd and Activation Energy
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Date
2021
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Shahid Chamran Univ Ahvaz, Iran
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Abstract
The current article will present the impact of the heat and mass transfer of combine electrical MHD flow of time dependent Williamson fluid with nanoparticles by the incorporating the influences of non-linear thermal radiation and the chemical reaction through wedge shape geometry. The fluid flows past a porous stretching wedge with convected Nield boundary conditions. The several (geometrical and physical) conditions have been included to provide more practicable results. The effects of activation energy further discussed. Due to relevant similarity transformation, set of partial differential equations which is non-linear and complicated is converted into simplest system of ordinary differential equations. To obtain the desired solution, famous numerical technique (shooting) used with the help of bvp4c MATLAB coding. The variation physical quantities namely velocity, temperature, concentration of nanoparticles, local Sherwood number, coefficient of skin friction and local Nusselt number have been observed under the influence of emerging parameters. The elaborated discussion presented with graphical and tabular illustrations.
Description
Imran, Muhammad/0000-0002-2363-5039; Waqas, Hassan/0000-0002-0388-8506; Asjad, Muhammad Imran/0000-0002-1484-5114; Tahir, Madeeha/0000-0002-6634-2877
Keywords
Williamson Nano Fluid, Non-Linear Thermal Radiation, Wedge Geometry, Numerical Technique
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Citation
Danish, Gulzar Ahmad...et al. (2021). "Effects of Non-Linear Thermal Radiation and Chemical Reaction on Time Dependent Flow of Williamson Nanofluid With Combine Electrical MHD and Activation Energy", Journal of Applied and Computational Mechanics, Vol. 7, No. 2, pp. 546-558.
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OpenCitations Citation Count
5
Source
Journal of Applied and Computational Mechanics
Volume
7
Issue
2
Start Page
546
End Page
558
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Scopus : 46
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45
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Web of Science™ Citations
41
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