Title
Entropy Generation on MHD Eyring-Powell Nanofluid through a Permeable Stretching Surface.
Abstract
In this article, entropy generation of an Eyring-Powell nanofluid through a permeable stretching surface has been investigated. The impact of magnetohydrodynamics (MHD) and nonlinear thermal radiation are also taken into account. The governing flow problem is modeled with the help of similarity transformation variables. The resulting nonlinear ordinary differential equations are solved numerically with the combination of the Successive linearization method and Chebyshev spectral collocation method. The impact of all the emerging parameters such as Hartmann number, Prandtl number, radiation parameter, Lewis number, thermophoresis parameter, Brownian motion parameter, Reynolds number, fluid parameter, and Brinkmann number are discussed with the help of graphs and tables. It is observed that the influence of the magnetic field opposes the flow. Moreover, entropy generation profile behaves as an increasing function of all the physical parameters.
Year
DOI
Venue
2016
10.3390/e18060224
ENTROPY
Keywords
Field
DocType
nanofluid,entropy generation,Eyring-Powell fluid,shrinking sheet
Prandtl number,Mathematical optimization,Nonlinear system,Reynolds number,Hartmann number,Mechanics,Magnetohydrodynamics,Thermophoresis,Classical mechanics,Mathematics,Lewis number,Nanofluid
Journal
Volume
Issue
Citations 
18
6
12
PageRank 
References 
Authors
1.33
4
5
Name
Order
Citations
PageRank
Muhammad Mubashir Bhatti17814.79
Tehseen Abbas2397.08
M.M. Rashidi314022.72
Mohammed E. Ali4559.84
Zhigang Yang5143.44