Title of article
Numerical Investigation of Pulsatile Blood Flow in Stenosed Artery
Author/Authors
haghighi, ahmad reza urmia university of technology - faculty of mathematical sciences, ايران , abedini kabdool, ayub university of tabriz - faculty of mathematical sciences, ايران , shahbazi asl, mohammad university of tabriz - faculty of mathematical sciences, ايران , kiyasatfar, mehdi urmia university - faculty of engineering, cfd research center, ايران
From page
649
To page
662
Abstract
In the present study, a two–layered model of pulsatile flow of blood through a stenosed elastic artery is numerically examined. The two–fluid model consists of a core layer of a suspension of erythrocytes and peripheral plasma layer. It is assumed that the core and peripheral plasma layer behave as micropolar and Newtonian fluids respectively. The resulting system of nonlinear partial differential equations is numerically solved using the finite difference scheme by exploiting the suitably prescribed conditions. Effects of the tapering angle, wall deformation and severity of the stenosis on flow characteristics are discussed. The present results are compared with literature and found to be in good agreement.
Keywords
Finite difference scheme , Blood flow , Micropolar fluid , Newtonian fluid , Stenosed artery
Journal title
International Journal Of Applied and Computational Mathematics
Journal title
International Journal Of Applied and Computational Mathematics
Record number
2603382
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