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首页> 外文期刊>Journal of Biomechanics >Numerical simulation of blood pulsatile flow in a stenosed carotid artery using different rheological models.
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Numerical simulation of blood pulsatile flow in a stenosed carotid artery using different rheological models.

机译:使用不同的流变模型对狭窄的颈动脉中的脉动血流进行数值模拟。

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摘要

Symmetrical 30-60% stenosis in a common carotid artery under unsteady flow condition for Newtonian and six non-Newtonian viscosity models are investigated numerically. Results show power-law model produces higher deviations, in terms of velocity and wall shear stress in comparison with other models while generalized power-law and modified-Casson models are more prone to Newtonian state. Comparing separation length of recirculation region at different critical points of cardiac cycle confirms the necessity of considering blood flow in unsteady mode. Increasing stenosis intensity causes flow patterns more disturbed downstream of the stenosis and WSS appear to develop remarkably at the stenosis throat.
机译:对于牛顿模型和六个非牛顿粘度模型,在不稳定流动条件下在颈总动脉中对称性30-60%狭窄进行了数值研究。结果表明,与其他模型相比,幂律模型在速度和壁剪应力方面产生更大的偏差,而广义幂律模型和修正的卡森模型更容易出现牛顿状态。比较心动周期不同临界点处的再循环区域的分隔长度,可以确定在不稳定模式下考虑血流的必要性。狭窄强度的增加导致狭窄下游的流型更加紊乱,WSS在狭窄喉咙处显着发展。

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