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Computational Fluid Dynamics Analysis of Pulsatile Blood Flow Behavior in Modelled Stenosed Vessels with Different Severities

机译:不同严重程度的模型化狭窄血管中脉动血流行为的计算流体动力学分析

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摘要

This study focuses on the behavior of blood flow in the stenosed vessels. Blood is modelled as an incompressible non-Newtonian fluid which is based on the power law viscosity model. A numerical technique based on the finite difference method is developed to simulate the blood flow taking into account the transient periodic behaviour of the blood flow in cardiac cycles. Also, pulsatile blood flow in the stenosed vessel is based on the Womersley model, and fluid flow in the lumen region is governed by the continuity equation and the Navier-Stokes equations. In this study, the stenosis shape is cosine by using Tu and Devil model. Comparing the results obtained from three stenosed vessels with 30%, 50%, and 75% area severity, we find that higher percent-area severity of stenosis leads to higher extrapressure jumps and higher blood speeds around the stenosis site. Also, we observe that the size of the stenosis in stenosed vessels does influence the blood flow. A little change on the cross-sectional value makes vast change on the blood flow rate. This simulation helps the people working in the field of physiological fluid dynamics as well as the medical practitioners.
机译:这项研究的重点是狭窄血管中血液流动的行为。血液被建模为基于幂律粘度模型的不可压缩的非牛顿流体。考虑到心动周期中血流的瞬时周期性行为,开发了一种基于有限差分法的数值技术来模拟血流。同样,狭窄血管中的搏动血流基于Womersley模型,而内腔区域中的流体流则由连续性方程和Navier-Stokes方程控制。在这项研究中,通过使用Tu和Devil模型,狭窄形状是余弦形。比较从三个狭窄区域的严重程度分别为30%,50%和75%的狭窄血管获得的结果,我们发现狭窄的百分比面积严重性越高,导致狭窄部位周围的超压跳跃和血液速度越高。此外,我们观察到狭窄的血管狭窄的大小确实会影响血流。横截面值的微小变化会使血液流速发生巨大变化。该模拟帮助从事生理流体动力学领域的人们以及医疗从业人员。

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  • 来源
    《Mathematical Problems in Engineering》 |2012年第8期|804765.1-804765.13|共13页
  • 作者单位

    Department of Medical Radiation Engineering, Amirkabir University of Technology, Tehran 15875-4413, Iran;

    Department of Medical Radiation Engineering, Amirkabir University of Technology, Tehran 15875-4413, Iran;

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