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Effects of the Distribution in Space of the Velocity-Inlet Condition in Hemodynamic Simulations of the Thoracic Aorta

机译:速度入口条件在空间分布在胸主动脉血流动力学模拟中的作用

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In the present paper the effects of the spatial distribution of the inlet velocity in numerical simulations of the thoracic aorta have been investigated. First, the results obtained by considering in-vivo measured inlet velocity distribution are compared with the ones obtained for a simulation having the same flow rate waveform and plug flow condition at the inlet section. The results of the two simulations are consistent in terms of flow rate waveform, but differences are present in the pressure range and in the wall shear stresses, especially in the foremost part of the ascending aorta. This motivates a stochastic sensitivity analysis on the effect of the distribution in space of the inlet velocity. This distribution is modeled through a truncated-cone shape and the ratio between the upper and the lower base is selected as the uncertain parameter. The uncertainty is propagated through the numerical model and a continuous response surface of the output quantities of interest in the parameter space can be recovered through a "surrogate" model. A stochastic method based on the generalized Polynomial Chaos (gPC) approach is used herein. The selected parameter appears to have a significant influence on the velocity distribution in the ascending aorta, whereas it has a negligible effect in the descending part. This, in turn, produces significant effects on the wall shear stresses in the ascending aorta, confirming the need of using patient-specific inlet conditions if interested in the hemodynamics and stresses of this region.
机译:在本文中,已经研究了进气速度的空间分布在胸主动脉数值模拟中的作用。首先,将通过考虑体内测得的入口速度分布而获得的结果与在入口部分具有相同流速波形和塞流条件的模拟所获得的结果进行比较。两种模拟的结果在流速波形方面是一致的,但是在压力范围和壁切应力,特别是在升主动脉的最前面,存在差异。这激发了对入口速度在空间上分布的影响的随机敏感性分析。通过圆锥台形状对分布进行建模,并选择上底和下底之间的比率作为不确定参数。不确定性通过数值模型传播,并且可以通过“代理”模型恢复参数空间中目标输出量的连续响应面。这里使用基于广义多项式混沌(gPC)方法的随机方法。所选参数似乎对升主动脉中的速度分布有重大影响,而对降主部分的影响可忽略不计。反过来,这会对升主动脉中的壁切应力产生重大影响,从而确认了如果对该区域的血液动力学和应力感兴趣,则需要使用患者特定的入口条件。

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