Numerical Study of the Unsteady Flow in Simplified and Realistic Iliac Bifurcation Models

被引:11
|
作者
Carvalho, Violeta [1 ]
Carneiro, Filipa [2 ]
Ferreira, Ana C. [1 ,3 ]
Gama, Vasco [4 ]
Teixeira, Jose C. [1 ]
Teixeira, Senhorinha [3 ]
机构
[1] Univ Minho, MEtRICs, Campus Azurem, P-4800058 Guimaraes, Portugal
[2] Univ Minho, PIEP Innovat Polymer Engn, P-4800058 Guimaraes, Portugal
[3] Univ Minho, ALGORITMI Ctr, Campus Azurem, P-4800058 Guimaraes, Portugal
[4] Ctr Hosp Vila Nova de Gaia, P-4430502 Vila Nova De Gaia, Portugal
关键词
atherosclerosis; blood flow; cardiovascular modelling; computational fluid dynamics; ABDOMINAL-AORTA; SHEAR-STRESS; BLOOD-FLOW; HEMODYNAMICS; ARTERY;
D O I
10.3390/fluids6080284
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Cardiovascular diseases are a major cause of death and disability worldwide and they are commonly associated with the occurrence of atherosclerotic plaque deposition in the vessel walls, a process denoted as atherosclerosis. This is a chronic and progressive inflammatory disease of large-/medium-sized blood vessels that affects blood flow profiles, with the abdominal aorta and its branches being one of the locations prone to the development of this pathology, due to their curvatures and bifurcations. In this regard, the effect of flow patterns was studied and compared for both a simplified three-dimensional model of aorta bifurcation on the iliac arteries and a realistic model of iliac bifurcation, which was constructed from a computational tomography medical image. The flow patterns were analyzed in terms of velocity and wall shear stress distribution, but a special focus was given to the size and location of the recirculation zone. The simulations were performed using the Computational Fluid Dynamics software, FLUENT, taking into account the cardiac cycle profile at the infrarenal aorta. The shear stress and the velocity distribution observed for both models indicated that higher shear stress occurred along the flow divider wall (inner wall) and low shear stress occurred along the outer walls. In addition, the results demonstrated that the wall shear stress profiles were deeply affected by the transient profile of the cardiac cycle, with the deceleration phase being the most critical phase to the occurrence of backflow.
引用
收藏
页数:18
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