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Dual Solutions and Stability Analysis of Micropolar Nanofluid Flow with Slip Effect on Stretching/Shrinking Surfaces

Authors :
Sumera Dero
Azizah Mohd Rohni
Azizan Saaban
Ilyas Khan
Asiful H. Seikh
El-Sayed Mohmed Sherif
Kottakkaran Sooppy Nisar
Source :
Energies; Volume 12; Issue 23; Pages: 4529
Publication Year :
2019
Publisher :
MDPI AG, 2019.

Abstract

The purpose of the present paper is to investigate the micropolar nanofluid flow on permeable stretching and shrinking surfaces with the velocity, thermal and concentration slip effects. Furthermore, the thermal radiation effect has also been considered. Boundary layer momentum, angular velocity, heat and mass transfer equations are converted to non-linear ordinary differential equations (ODEs). Then, the obtained ODEs are solved by applying the shooting method and in the results, the dual solutions are obtained in the certain ranges of pertinent parameters in both cases of shrinking and stretching surfaces. Due to the presence of the dual solutions, stability analysis is done and it was found that the first solution is stable and physically feasible. The results are also compared with previously published literature and found to be in excellent agreement. Moreover, the obtained results reveal the angular velocity increases in the first solution when the value of micropolar parameter increases. The velocity of nanofluid flow decreases in the first solution as the velocity slip parameter increases, whereas the temperature profiles increase in both solutions when thermal radiation, Brownian motion and the thermophoresis parameters are increased. Concentration profile increases by increasing N t and decreases by increasing N b .

Details

ISSN :
19961073
Volume :
12
Database :
OpenAIRE
Journal :
Energies
Accession number :
edsair.doi.dedup.....5a2ff5426ea86ca80c6f4905ec9c5ac0
Full Text :
https://doi.org/10.3390/en12234529