论文标题

在动脉瘤中非牛顿血流的建模和数值模拟上

On the Modelling and Numerical Simulation of Non-Newtonian Blood Flow in an Aneurysm

论文作者

Behrouzi, Kamyar, Fard, Zahra Khodabakhshi, Jafari, Azadeh, Owens, Robert G.

论文摘要

心血管疾病,特别是脑动脉瘤,代表了发病率和死亡率的主要原因,对医疗保健的成本和整体状况产生了重大影响。在目前的工作中,我们采用了欧文斯最初提出的血液学血液模型来研究通过偏农通道的血液流动。这种针对全人血的本构方程是使用临时聚合物网络理论得出的思想得出的,以模拟正常人血液中红细胞以不同的剪切速率的聚集和分解。为了更好地了解流变学模型对脑动脉瘤血流血流的影响,我们将数值结果与其他流变学模型(例如Carreau-Yasuda(C-Y)模型)获得的结果进行了比较。结果表明,牛顿和欧文斯模型的速度曲线大致相似,但与C-Y模型的速度曲线不同。为了稳定我们的数值模拟,我们提出了两种新的稳定技术,即所谓的N-牛和I-Owens方法。采用N-溶剂稳定方法使我们能够在较高的魏森伯格(We)和雷诺(RE)数字上通过脑动脉瘤捕获红细胞聚集在血流中的作用,而不是其他可能。

Cardiovascular diseases, specifically cerebral aneurysms, represent a major cause of morbidity and mortality, having a significant impact on the cost and overall status of health care. In the present work, we employ a haemorheological blood model originally proposed by Owens to investigate the haemodynamics of blood flow through an aneurytic channel. This constitutive equation for whole human blood is derived using ideas drawn from temporary polymer network theory to model the aggregation and disaggregation of erythrocytes in normal human blood at different shear rates. To better understand the effect of rheological models on the haemodynamics of blood flow in cerebral aneurysms we compare our numerical results with those obtained with other rheological models such as the Carreau-Yasuda (C-Y) model. The results show that the velocity profiles for the Newtonian and the Owens models are approximately similar but differ from those of the C-Y model. In order to stabilize our numerical simulations, we propose two new stabilization techniques, the so-called N-Owens and I-Owens methods. Employing the N-Owens stabilization method enables us to capture the effect of erythrocyte aggregation in blood flow through a cerebral aneurysm at higher Weissenberg (We) and Reynolds (Re) numbers than would otherwise be possible.

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