Rafique, Khuram and Anwar, Muhammad Imran and Misiran, Masnita and Khan, Ilyas and Seikh, Asiful H. and M. Sherif, El-Sayed and Nisar, Kottakkaran Sooppy (2019) Brownian Motion and Thermophoretic Diffusion Effects on Micropolar Type Nanofluid Flow with Soret and Dufour Impacts over an Inclined Sheet: Keller-Box Simulations. Energies, 12 (21). 01-22. ISSN 1996-1073
Preview |
PDF
- Published Version
Available under License Attribution 4.0 International (CC BY 4.0). Download (2MB) | Preview |
Abstract
The principal objective of the current study is to analyze the Brownian motion and thermophoretic impacts on micropolar nanofluid flow over a nonlinear inclined stretching sheet taking into account the Soret and Dufour effects. The compatible similarity transformations are applied to obtain the nonlinear ordinary differential equations from the partial differential equations. The numerical solution of the present study obtained via the Keller-Box technique. The physical quantities of interest are skin friction, Sherwood number, and heat exchange, along with several influences of material parameters on the momentum, temperature, and concentration are elucidated and clarified with diagrams. A decent settlement can be established in the current results with previously published work in the deficiency of incorporating e_ects. It is found that the growth of the inclination and nonlinear stretching factor decreases the velocity profile. Moreover, the growth of the Soret e_ect reduces the heat flux rate and wall shear stress
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Keller-Box Simulations; micropolar nanofluid; MHD; power law; Soret effect; Dufour effect; inclined surface |
| Subjects: | Q Science > QA Mathematics |
| Divisions: | School of Quantitative Sciences |
| Depositing User: | Mdm. Sarkina Mat Saad @ Shaari |
| Date Deposited: | 29 May 2024 10:58 |
| Last Modified: | 29 May 2024 10:58 |
| URI: | https://repo.uum.edu.my/id/eprint/30829 |
Actions (login required)
![]() |
View Item |
Dimensions
Dimensions