Effect of pulsatile swirling flow on stenosed arterial blood flow

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초록

The existence of swirling flow phenomena is frequently observed in arterial vessels, but information on the fluid-dynamic roles of swirling flow is still lacking. In this study, the effects of pulsatile swirling inlet flows with various swirling intensities on the flow field in a stenosis model are experimentally investigated using a particle image velocimeny velocity field measurement technique. A pulsatile pump provides cyclic pulsating inlet flow and spiral inserts with two different helical pitches (10D and 10/3D) induce swirling flow in the stenosed channel. Results show that the pulsatile swirling flow has various beneficial effects by reducing the negative wall shear stress, the oscillatory shear index, and the flow reverse coefficient at the post-stenosis channel. Temporal variations of vorticity fields show that the short propagation length of the jet flow and the early breakout of turbulent flow are initiated as the swirling flow disturbs the symmetric development of the shear layer. In addition, the overall energy dissipation rate of the flow is suppressed by the swirling component of the flow. The results will be helpful for elucidating the hemodynamic characteristics of atherosclerosis and discovering better diagnostic procedures and clinical treatments. (C) 2014 IPEM. Published by Elsevier Ltd. All rights reserved.

키워드

Swirling flowStenosisSpiral flowHemodynamicsParticle image velocimetryOscillatory shear indexShear stressSPIRAL LAMINAR-FLOWSHEAR-STRESSFLUID-MECHANICSABDOMINAL-AORTAHELICAL FLOWIN-VIVOATHEROSCLEROSISTRANSITIONTURBULENCETRANSPORT
제목
Effect of pulsatile swirling flow on stenosed arterial blood flow
저자
Ha, HojinLee, Sang Joon
DOI
10.1016/j.medengphy.2014.06.004
발행일
2014-09
유형
Article
저널명
Medical Engineering & Physics
36
9
페이지
1106 ~ 1114