首页> 外文期刊>Journal of Biomechanics >Numerical study on the effect of secondary flow in the human aorta on local shear stresses in abdominal aortic branches.
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Numerical study on the effect of secondary flow in the human aorta on local shear stresses in abdominal aortic branches.

机译:人体主动脉中二次流对腹主动脉分支局部切应力影响的数值研究。

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Flow in the aortic arch is characterized primarily by the presence of a strong secondary flow superimposed over the axial flow, skewed axial velocity profiles and diastolic flow reversals. A significant amount of helical flow has also been observed in the descending aorta of humans and in models. In this study a computational model of the abdominal aorta complete with two sets of outflow arteries was adapted for three-dimensional steady flow simulations. The flow through the model was predicted using the Navier-Stokes equations to study the effect that a rotational component of flow has on the general flow dynamics in this vascular segment. The helical velocity profile introduced at the inlet was developed from magnetic resonance velocity mappings taken from a plane transaxial to the aortic arch. Results showed that flow division ratios increased in the first set of branches and decreased in the second set with the addition of rotational flow. Shear stress varied in magnitude with the addition of rotational flow, but the shear stress distribution did not change. No regions of flow separation were observed in the iliac arteries for either case. Helical flow may have a stabilizing effect on the flow patterns in branches in general, as evidenced by the decreased difference in shear stress between the inner and outer walls in the iliac arteries.
机译:主动脉弓内血流的主要特征是存在强的二次血流,叠加在轴向血流,偏向的轴向速度分布和舒张流逆转上。在人的降主动脉和模型中也观察到大量的螺旋流。在这项研究中,腹主动脉的计算模型由两组流出动脉组成,适用于三维稳态流动模拟。通过使用Navier-Stokes方程预测通过模型的流量,以研究流量的旋转分量对该血管段中总体流量动态的影响。在入口处引入的螺旋速度分布图是根据从跨轴到主动脉弓的平面的磁共振速度图得出的。结果表明,随着旋转流量的增加,分流比在第一组分支中增加而在第二组中降低。剪应力的大小随旋转流的增加而变化,但剪应力分布没有变化。对于这两种情况,在art动脉中均未观察到流动分离区域。螺旋流一般可对分支中的流型产生稳定作用,这可通过by动脉内壁和外壁之间剪切应力差异的减小来证明。

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