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Effect of Aortic Arch Geometry on Pulsatile Blood Flow: Flow Pattern and Wall Shear Stress

机译:主动脉弓几何形状对脉动血流的影响:流动模式和壁剪切应力

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The aorta, with complex geometry is one of the most vulnerable arteries for creation and development of cardiovascular diseases, especially atherosclerosis. Because of the association of disease with region of altered fluid mechanics, the role of blood flow in the localization of atherosclerosis has been extensively studied recently. The diameter of aorta, its branches, and the geometry of branches are parameters which affect the blood flow significantly. However, much less attention has been focused on the effect of these parameters and their association with diseased regions. In the present study, three different geometries of human aorta with three branches are constructed and blood flow inside the arteries is simulated. Flow across longitudinal cross-sections of all three geometries is analyzed. The disturbed velocity profiles are observed near branchiocephalic, left common artery and left subclavian artery. On the other hand, the wall shear stress profiles at the roots of branches show significant differences with geometry variation of aorta and branches. The blood flow is considered as homogeneous, incompressible, and Newtonian fluid flow.
机译:具有复杂几何形状的主动脉是造成和发展心血管疾病(尤其是动脉粥样硬化)的最脆弱的动脉之一。由于疾病与流体力学改变区域的关联,最近已经广泛研究了血流在动脉粥样硬化定位中的作用。主动脉的直径,其分支以及分支的几何形状是显着影响血流的参数。但是,很少有注意力集中在这些参数的作用及其与患病区域的关系上。在本研究中,构建了具有三个分支的三种不同的人类主动脉几何形状,并模拟了动脉内的血流。分析了所有三个几何形状的纵向横截面的流动。在小脑头,左普通动脉和左锁骨下动脉附近观察到紊乱的速度分布。另一方面,分支根部的壁面剪应力曲线与主动脉和分支的几何变化存在显着差异。血流被认为是均匀的,不可压缩的牛顿流体流。

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