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Call for Paper - May 2015 Edition
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Blood Flow through a Stenosed Artery with the Effect of Transverse Magnetic Field using a Non-Newtonian Model

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International Journal of Computer Applications
© 2014 by IJCA Journal
Volume 101 - Number 1
Year of Publication: 2014
Authors:
G. C. Hazarika
Aparajita Sarmah
10.5120/17649-8435

G C Hazarika and Aparajita Sarmah. Article: Blood Flow through a Stenosed Artery with the Effect of Transverse Magnetic Field using a Non-Newtonian Model. International Journal of Computer Applications 101(1):5-8, September 2014. Full text available. BibTeX

@article{key:article,
	author = {G. C. Hazarika and Aparajita Sarmah},
	title = {Article: Blood Flow through a Stenosed Artery with the Effect of Transverse Magnetic Field using a Non-Newtonian Model},
	journal = {International Journal of Computer Applications},
	year = {2014},
	volume = {101},
	number = {1},
	pages = {5-8},
	month = {September},
	note = {Full text available}
}

Abstract

One-dimensional, steady, Herschel-Bulkley fluid flow of blood through a stenosed artery under the effect of external magnetic field is studied. The blood is assumed as incompressible. The governing equations are solved analytically. This model has been used to study the influence of yield stress on blood flow through the stenosed artery. The effects of magnetic field on axial velocity, flow rate and wall shear rate has been shown graphically. The effects of all the parameters are quite significant on axial velocity, flow rate and wall shear rate as evidence from the results.

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