Title
Keller-Box Analysis of Buongiorno Model with Brownian and Thermophoretic Diffusion for Casson Nanofluid over an Inclined Surface
Abstract
The key objective of the study under concern is to probe the impacts of Brownian motion and thermophoresis diffusion on Casson nanofluid boundary layer flow over a nonlinear inclined stretching sheet, with the effect of convective boundaries and thermal radiations. Nonlinear ordinary differential equations are obtained from governing nonlinear partial differential equations by using compatible similarity transformations. The quantities associated with engineering aspects, such as skin friction, Sherwood number, and heat exchange along with various impacts of material factors on the momentum, temperature, and concentration, are elucidated and clarified with diagrams. The numerical solution of the present study is obtained via the Keller-box technique and in limiting sense are reduced to the published results for accuracy purpose.
Year
DOI
Venue
2019
10.3390/sym11111370
SYMMETRY-BASEL
Keywords
Field
DocType
Keller-box technique,Casson nanofluid,MHD,Power law fluid,Convective boundaries,Radiation effect,Inclined surface
Convection,Nonlinear system,Mathematical analysis,Boundary layer,Sherwood number,Thermophoresis,Brownian motion,Partial differential equation,Mathematics,Nanofluid
Journal
Volume
Issue
Citations 
11
11
0
PageRank 
References 
Authors
0.34
0
7
Name
Order
Citations
PageRank
Khuram Rafique101.01
Muhammad Anwar2101.60
Masnita Misiran301.01
Ilyas Khan42525.71
Sayer O. Alharbi500.68
Phatiphat Thounthong600.34
K. S. Nisar71512.15