首页> 外文会议>Proceedings of the ASME international mechanical engineering congress and exposition 2009 >THREE-DIMENSIONAL NUMERICAL SIMULATION OF THE FLUID DYNAMICS IN A CORONARY STENT
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THREE-DIMENSIONAL NUMERICAL SIMULATION OF THE FLUID DYNAMICS IN A CORONARY STENT

机译:冠状动脉血流动力学的三维数值模拟

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Stents are commonly used to restore blood flow in patients with severe coronary artery disease. Local hemodynamic variables, as wall shear stress, have an important role in the restenosis and their distribution depends on the stent geometry. The objective of the present study is to carry out CFD simulations in a realistic 3D geometry of a coronary stent in physiological conditions. A comparison is performed between two reconstructed stents, made of 12 rings and similar to the real coronary ones, which differ by the position of the struts, where the first type is with closed cells and the second one with open cells. The artery is modeled as a cylinder with rigid walls and the blood is assumed as incompressible Newtonian fluid in laminar flow with constant physical properties. The commercial computational fluid dynamic code FLUENT is used with a mesh composed of non uniform tetrahedrons. The simulations are performed in steady and unsteady state. Wall shear stresses, WSS, as well as its time variations, are investigated in unsteady state with the conclusion that the stent with closed cells have a better fluid dynamic behavior.
机译:支架通常用于恢复患有严重冠状动脉疾病的患者的血流。局部血流动力学变量(如壁切应力)在再狭窄中起重要作用,其分布取决于支架的几何形状。本研究的目的是在生理条件下以逼真的3D几何形状对冠状动脉支架进行CFD模拟。在两个重建的支架之间进行比较,该支架由12个环制成,并且与真实的冠状支架相似,不同之处在于支撑杆的位置不同,其中第一种支架为闭孔,第二种支架为开孔。将动脉建模为具有刚性壁的圆柱体,并假设血液为层流中不可压缩的牛顿流体,具有恒定的物理特性。商业计算流体动力学代码FLUENT与非均匀四面体组成的网格一起使用。模拟在稳态和非稳态下进行。在非稳态下研究壁面剪切应力,WSS及其时间变化,得出的结论是,闭孔支架具有更好的流体动力学性能。

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