Title
Entropy Generation on MHD Blood Flow of Nanofluid Due to Peristaltic Waves.
Abstract
This present study describes the entropy generation on magnetohydrodynamic (MHD) blood flow of a nanofluid induced by peristaltic waves. The governing equation of continuity, equation of motion, nano-particle and entropy equations are solved by neglecting the inertial forces and taking long wavelength approximation. The resulting highly non-linear coupled partial differential equation has been solved analytically with the help of perturbation method. Mathematical and graphical results of all the physical parameters for velocity, concentration, temperature, and entropy are also presented. Numerical computation has been used to evaluate the expression for the pressure rise and friction forces. Currently, magnetohydrodynamics is applicable in pumping the fluids for pulsating and non-pulsating continuous flows in different microchannel designs and it also very helpful to control the flow.
Year
DOI
Venue
2016
10.3390/e18040117
ENTROPY
Keywords
Field
DocType
nanofluid,entropy,blood flow,magnetohydrodynamics
Magnetohydrodynamic drive,Mathematical optimization,Flow (psychology),Mechanics,Magnetohydrodynamics,Microchannel,Fictitious force,Equations of motion,Classical mechanics,Partial differential equation,Physics,Nanofluid
Journal
Volume
Issue
Citations 
18
4
8
PageRank 
References 
Authors
1.48
4
4
Name
Order
Citations
PageRank
M.M. Rashidi114022.72
Muhammad Mubashir Bhatti27814.79
Munawwar Ali Abbas3203.18
Mohammed E. Ali4559.84