首页> 外文会议>ASME Fluids Engineering Division summer meeting >EXPERIMENTAL STUDY OF LARGE-SCALE FLOW STRUCTURES IN AN ANEURYSM
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EXPERIMENTAL STUDY OF LARGE-SCALE FLOW STRUCTURES IN AN ANEURYSM

机译:动脉瘤中大型流动结构的实验研究

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An aneurysm is an abnormal growth in the wall of a weakened blood vessel, and can often be fatal upon rupture. Studies have shown that aneurysm shape and hemodynamics, in conjunction with other parameters, play an important role in growth and rupture. The objective of this study was to investigate the impact of varying inflow conditions on flow structures in an aneurysm. An idealized rigid sidewall aneurysm model was prepared and the Womersley number (a) and Reynolds number (Re) values were varied from 2 to 5 and 50 to 250, respectively. A ViVitro Labs pump system was used for inflow control and Particle Image Velocimetry was used for conducting velocity measurements. The results showed that the primary vortex path varied with an increase in a, while an increase in Re was correlated to the vortex strength and formation of secondary vortical structures. The evolution and decay of vortical structures were also observed to be dependent on a and Re.
机译:动脉瘤是血管壁薄弱的异常生长,通常在破裂时可能致命。研究表明,动脉瘤的形状和血液动力学以及其他参数在生长和破裂中起着重要作用。这项研究的目的是调查动脉瘤中不同的流入条件对流动结构的影响。制备了理想的刚性侧壁动脉瘤模型,Womersley数(a)和雷诺数(Re)值分别从2到5和50到250变化。使用ViVitro Labs泵系统进行流量控制,并使用“粒子图像测速”进行速度测量。结果表明,初级涡旋路径随α的增加而变化,而Re的增加与涡旋强度和次级涡旋结构的形成相关。还观察到旋涡结构的演化和衰减取决于α和γ。

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