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Dual Solutions and Stability Analysis of Magnetized Hybrid Nanofluid With Joule Heating and Multiple Slip Conditions

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Date

2020

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Mdpi

Open Access Color

GOLD

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Abstract

This paper investigates the steady, two dimensional, and magnetohydrodynamic flow of copper and alumina/water hybrid nanofluid on a permeable exponentially shrinking surface in the presence of Joule heating, velocity slip, and thermal slip parameters. Adopting the model of Tiwari and Das, the mathematical formulation of governing partial differential equations was constructed, which was then transformed into the equivalent system of non-linear ordinary differential equations by employing exponential similarity transformation variables. The resultant system was solved numerically using the BVP4C solver in the MATLAB software. For validation purposes, the obtained numerical results were compared graphically with those in previous studies, and found to be in good agreement, as the critical points are the same up to three decimal points. Based on the numerical results, it was revealed that dual solutions exist within specific ranges of the suction and magnetic parameters. Stability analysis was performed on both solutions in order to determine which solution(s) is/are stable. The analysis indicated that only the first solution is stable. Furthermore, it was also found that the temperature increases in both solutions when the magnetic parameter and Eckert number are increased, while it reduces as the thermal slip parameter rises. Furthermore, the coefficient of skin friction and the heat transfer rate increase for the first solution when the magnetic and the suction parameters are increased. Meanwhile, no change is noticed in the boundary layer separation for the various values of the Eckert number in the heat transfer rate.

Description

Khan, Ilyas/0000-0002-2056-9371; Dero, Sumera/0000-0002-2776-9376; Abdo, Hany/0000-0002-7260-639X; Nisar, Prof. Kottakkaran Sooppy/0000-0001-5769-4320; Sherif, El-Sayed M./0000-0003-2080-8552

Keywords

Hybrid Nanofluid, Joule Heating, Slip Conditions, Dual Solution, Stability Analysis, hybrid nanofluid, Joule heating, dual solution, stability analysis, slip conditions

Turkish CoHE Thesis Center URL

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

Yan, Liang...et al. (2020). "Dual Solutions and Stability Analysis of Magnetized Hybrid Nanofluid with Joule Heating and Multiple Slip Conditions", Processes, Vol. 8, No. 3.

WoS Q

Q3

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Q3
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OpenCitations Citation Count
66

Source

Processes

Volume

8

Issue

3

Start Page

332

End Page

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Citations

CrossRef : 75

Scopus : 59

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Mendeley Readers : 40

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5.44955167

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3

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