Numerical Investigation of Interaction between Saccular Abdominal Aortic Aneurysms and Arterial Bifurcations

Q4 Agricultural and Biological Sciences International Journal Bioautomation Pub Date : 2021-09-01 DOI:10.7546/ijba.2021.25.3.000762
K. Jehhef, A. J. Ali
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Abstract

In order to fully understand the interaction between the Abdominal Aortic Aneurysms (AAAs) and the arterial bifurcations interface it is important to attain more detailed information on blood hemodynamics stresses by using an accurate and real model of the vascular system of the human. In this study, a computer simulation, which integrates dinically acquired of 73-year-old male patient with saccular AAA MR angiograms image is considered. The numerical predictions for 2D of two models (with and without saccular AAA) – axisymmetric, rigid wall Newtonian and non-Newtonian Carreau blood model are presented. The finite volume method performed by ANSYS-Fluent Package was used to model this problem. The blood hemodynamics is considered as steady state condition in two values of Reynolds numbers of laminar flow condition. Blood hemodynamics is calculated for an improved set of dimensionless values pointer parameters include the pressure dimensionless, dimensionless Wall Shear Stress (WSS) and flow velocity. The results show that at the turbulent flow, velocity is with highest fluctuation profile and generate some vortices near the inner wall of AAA. The highest WSS levels are obtained downstream of AAA and at bifurcation apex. The presence of AAA in flow path will increase blood velocity of the distal by 35% for laminar and about 42% for turbulent. Finally, the velocity profile was compared with previous literature and give good agreement at the same computational condition.
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囊状腹主动脉瘤与动脉分叉相互作用的数值研究
为了充分了解腹主动脉瘤(AAAs)和动脉分叉界面之间的相互作用,重要的是通过使用人类血管系统的准确和真实模型来获得关于血液血液动力学应力的更详细信息。在本研究中,考虑了一种计算机模拟,将73岁男性患者的临床采集与囊状AAA MR血管造影图像相结合。给出了两个模型(有和没有囊状AAA)的二维数值预测——轴对称、刚性壁牛顿和非牛顿Carreau血液模型。利用ANSYS Fluent软件包进行的有限体积法对该问题进行了建模。在两个雷诺数的层流条件下,血流动力学被认为是稳态条件。血液血液动力学是为一组改进的无量纲值计算的,指针参数包括压力无量纲、无量纲壁剪切应力(WSS)和流速。结果表明,在湍流条件下,速度具有最高的脉动轮廓,并在AAA内壁附近产生一些涡流。最高WSS水平在AAA下游和分叉顶点处获得。流动路径中AAA的存在将使远端的血流速度对于层流增加35%,对于湍流增加约42%。最后,将速度剖面与以前的文献进行了比较,并在相同的计算条件下给出了良好的一致性。
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来源期刊
International Journal Bioautomation
International Journal Bioautomation Agricultural and Biological Sciences-Food Science
CiteScore
1.10
自引率
0.00%
发文量
22
审稿时长
12 weeks
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