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Sensitivity Analysis of the Boundary Conditions in Simulations of the Flow in an Aortic Coarctation under Rest and Stress Conditions

机译:在休息和压力条件下对主动脉造环的流动模拟中边界条件的敏感性分析

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Aortic coarctation is a congenital condition in which the aorta is narrowed. The pressure drop through the aorta depends on the extension of this narrowing. Therefore, severe coarctations have important side-effects on the hemodynamic conditions of the circulatory system. The Computational Fluid Dynamics (CFD) simulation of the hemodynamics in a patient specific aortic coarctation can help to predict the pressure drop produced by the aorta narrowing. Nevertheless, an accurate prediction of the pressure drop, by means of CFD tools, depends strongly on the boundary conditions (BCs). In this study we present the results of ten simulations performed on a patient specific aortic coarctation vasculature proposed in the second MICCAI-STACOM CFD Challenge. The model includes ascending aorta, arch, descending aorta, and upper branch vessels. Specifically, we consider; two different physiological states a) rest and b) stress condition. For both cases the flow rate waveforms are provided at the ascending aorta and descending aorta. The ten simulations are performed using five different set of boundary conditions. The results are reported and indications on the more accurate boundary conditions are discussed.
机译:主动脉造环是主动脉的先天性条件,其中主动脉缩小。通过主动脉的压降取决于这种缩小的延伸。因此,严重的凸起对循环系统的血流动力学条件具有重要的副作用。患者特异性主动脉造环中的血流动力学的计算流体动力学(CFD)模拟可以有助于预测主动脉缩小产生的压降。然而,通过CFD工具对压降的精确预测在边界条件(BCS)上强烈地取决于强烈的预测。在这项研究中,我们介绍了在第二次米奇-Stacom CFD攻击中提出的患者特异性主动脉缩窄脉管系统进行的十种模拟的结果。该模型包括上升主动脉,拱形,下降主动脉和上部分支血管。具体来说,我们考虑;两种不同的生理状态a)休息和b)压力状况。对于这两种情况,所述流量波形设置在升序主动脉和下降主动脉处。使用五种不同的边界条件进行十个模拟。报告了结果,并讨论了更准确的边界条件的指示。

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