Micropolar fluid flow through a stenosed bifurcated artery

The aim of this article is to investigate the blood flow in bifurcated artery with mild stenosis taking blood as a micropolar fluid. The arteries, forming bifurcation are taken to be symmetric and straight cylinders of finite length. The governing equations are non-dimensionalized and coordinate tr...

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Main Authors: Darbhasayanam Srinivasacharya, Gade Madhava Rao
Format: Article
Language:English
Published: Vilnius University Press 2017-03-01
Series:Nonlinear Analysis
Subjects:
Online Access:http://www.zurnalai.vu.lt/nonlinear-analysis/article/view/13397
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spelling doaj-b34e55aa1b2547f799646f0ea5548f7b2020-11-24T21:12:38ZengVilnius University PressNonlinear Analysis1392-51132335-89632017-03-0122210.15388/NA.2017.2.1Micropolar fluid flow through a stenosed bifurcated arteryDarbhasayanam Srinivasacharya0Gade Madhava Rao1National Institute of Technology, IndiaNational Institute of Technology, India The aim of this article is to investigate the blood flow in bifurcated artery with mild stenosis taking blood as a micropolar fluid. The arteries, forming bifurcation are taken to be symmetric and straight cylinders of finite length. The governing equations are non-dimensionalized and coordinate transformation is used to convert the irregular boundary to a regular boundary. The resulting system of equations is solved numerically using the finite difference method. The variation of velocity, microrotation, shear stress, flow rate and impedance near the flow divider with relevant physical parameters are presented graphically. It is found that, due to backflow and secondary flow, impedance and flow rate are perturbed largely at the apex. It is also seen that the microrotation changes it's sign from negative to positive for increase values of bifurcated angle and micropolar coupling number. http://www.zurnalai.vu.lt/nonlinear-analysis/article/view/13397micropolar fluidbifurcated arterystenosisshear stressimpedance
collection DOAJ
language English
format Article
sources DOAJ
author Darbhasayanam Srinivasacharya
Gade Madhava Rao
spellingShingle Darbhasayanam Srinivasacharya
Gade Madhava Rao
Micropolar fluid flow through a stenosed bifurcated artery
Nonlinear Analysis
micropolar fluid
bifurcated artery
stenosis
shear stress
impedance
author_facet Darbhasayanam Srinivasacharya
Gade Madhava Rao
author_sort Darbhasayanam Srinivasacharya
title Micropolar fluid flow through a stenosed bifurcated artery
title_short Micropolar fluid flow through a stenosed bifurcated artery
title_full Micropolar fluid flow through a stenosed bifurcated artery
title_fullStr Micropolar fluid flow through a stenosed bifurcated artery
title_full_unstemmed Micropolar fluid flow through a stenosed bifurcated artery
title_sort micropolar fluid flow through a stenosed bifurcated artery
publisher Vilnius University Press
series Nonlinear Analysis
issn 1392-5113
2335-8963
publishDate 2017-03-01
description The aim of this article is to investigate the blood flow in bifurcated artery with mild stenosis taking blood as a micropolar fluid. The arteries, forming bifurcation are taken to be symmetric and straight cylinders of finite length. The governing equations are non-dimensionalized and coordinate transformation is used to convert the irregular boundary to a regular boundary. The resulting system of equations is solved numerically using the finite difference method. The variation of velocity, microrotation, shear stress, flow rate and impedance near the flow divider with relevant physical parameters are presented graphically. It is found that, due to backflow and secondary flow, impedance and flow rate are perturbed largely at the apex. It is also seen that the microrotation changes it's sign from negative to positive for increase values of bifurcated angle and micropolar coupling number.
topic micropolar fluid
bifurcated artery
stenosis
shear stress
impedance
url http://www.zurnalai.vu.lt/nonlinear-analysis/article/view/13397
work_keys_str_mv AT darbhasayanamsrinivasacharya micropolarfluidflowthroughastenosedbifurcatedartery
AT gademadhavarao micropolarfluidflowthroughastenosedbifurcatedartery
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