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Modelling of non-newtonian blood flow through a stenosed artery incorporating fluid structure interaction

机译:通过结合流体结构相互作用的狭窄动脉模拟非牛顿血流

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摘要

We investigate the behaviour of the pulsatile blood flow in a stenosed right coronary artery with a bypass graft. The human blood is assumed as a non-Newtonian fluid and its viscous behaviour is described by the Carreau model. The transient phenomena of blood flow through the stenosed region and the bypass graft are simulated for five cardiac cycles by solving the three dimensional unsteady Navier--Stokes equations coupled with the non-Newtonian model. Effects of the time variations of pulsatile velocity and pulse pressure are taken into account. The influence of the bypass angle on the flow interaction between the jet flow from the native artery and the flow from the bypass graft is investigated. Distributions of velocity, pressure and wall shear stresses are determined under various conditions. The results show that the blood pressure in the stenosed artery drops dramatically in the stenosis area and that high wall shear stresses occur around the stenosis site.
机译:我们用旁路移植术调查狭窄的右冠状动脉中搏动性血流的行为。假定人类血液为非牛顿流体,其粘性行为由Carreau模型描述。通过求解三维非定常的Navier-Stokes方程和非牛顿模型,模拟了通过狭窄区域和旁路移植物的血流瞬态现象,持续了五个心动周期。考虑了脉动速度和脉压的时间变化的影响。研究了旁路角度对来自天然动脉的射流与旁路移植物之间的流动相互作用的影响。在各种条件下确定速度,压力和壁剪应力的分布。结果表明,狭窄部位的狭窄动脉的血压急剧下降,狭窄部位周围出现高壁切应力。

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    Chan W; Ding Y; Tu J;

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  • 年度 2007
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