ISSN 1119-4618
 

Original Research 


The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet

Abdul G. Madaki, D. G. Yakubu, M. Y. Adamu, R. Roslan.

Abstract
The two-dimensional steady boundary layer flow, of a nanofluid past a stretching sheet with a convective boundary condition in the presence of chemical reaction has been studied. The equation of volume fraction concentration consists of the Brownian motion and the thermophoresis effects. The governing equations are simplified via boundary value approximation and some similarity variables and solved using the Runge-Kutta fourth order method with shooting technique and homotopy perturbation method (HPM) with Padé approximation (HPM-Padé). All the salient parameters on the temperature and concentration profiles have been studied and details are given graphically. Thus the results found in this study are being compared with the previously published study, where an excellent agreement is achieved. As presented on tables. It is found that the reduced Nusselt number is a decreasing function of both generative and destructive chemical reaction γ. While the reduced Sherwood number is a decreasing function when chemical reaction parameter, γ<0 and increases when γ>0.

Key words: Boundary-layer, Brownian motion, nanofluid, stretching sheet, thermophoresis


 
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How to Cite this Article
Pubmed Style

Madaki AG, Yakubu DG, Adamu MY, Roslan R, . The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. JPAS. 2019; 19(1): 83-91. doi:10.5455/sf.53268


Web Style

Madaki AG, Yakubu DG, Adamu MY, Roslan R, . The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. http://www.atbuscienceforum.com/?mno=53268 [Access: August 10, 2020]. doi:10.5455/sf.53268


AMA (American Medical Association) Style

Madaki AG, Yakubu DG, Adamu MY, Roslan R, . The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. JPAS. 2019; 19(1): 83-91. doi:10.5455/sf.53268



Vancouver/ICMJE Style

Madaki AG, Yakubu DG, Adamu MY, Roslan R, . The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. JPAS. (2019), [cited August 10, 2020]; 19(1): 83-91. doi:10.5455/sf.53268



Harvard Style

Madaki, A. G., Yakubu, D. G., Adamu, M. Y., Roslan, R. & (2019) The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. JPAS, 19 (1), 83-91. doi:10.5455/sf.53268



Turabian Style

Madaki, Abdul G., D. G. Yakubu, M. Y. Adamu, R. Roslan, and . 2019. The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. Science Forum (Journal of Pure and Applied Sciences), 19 (1), 83-91. doi:10.5455/sf.53268



Chicago Style

Madaki, Abdul G., D. G. Yakubu, M. Y. Adamu, R. Roslan, and . "The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet." Science Forum (Journal of Pure and Applied Sciences) 19 (2019), 83-91. doi:10.5455/sf.53268



MLA (The Modern Language Association) Style

Madaki, Abdul G., D. G. Yakubu, M. Y. Adamu, R. Roslan, and . "The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet." Science Forum (Journal of Pure and Applied Sciences) 19.1 (2019), 83-91. Print. doi:10.5455/sf.53268



APA (American Psychological Association) Style

Madaki, A. G., Yakubu, D. G., Adamu, M. Y., Roslan, R. & (2019) The study of MHD Nano fluid flow with chemical reaction along with thermophoresis and Brownian motion on boundary layer flow over a linearly stretching sheet. Science Forum (Journal of Pure and Applied Sciences), 19 (1), 83-91. doi:10.5455/sf.53268