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Analysis of non-Newtonian effects within an aorta-iliac bifurcation region

机译:主体 - 髂分岔区域内非牛顿效应分析

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Abstract The geometry of the arteries at or near arterial bifurcation influences the blood flow field, which is an important factor affecting arteriogenesis. The blood can act sometimes as a non-Newtonian fluid. However, many studies have argued that for large and medium arteries, the blood flow can be considered to be Newtonian. In this work a comprehensive investigation of non-Newtonian effects on the blood fluid dynamic behavior in an aorta-iliac bifurcation is presented. The aorta-iliac geometry is reconstructed with references to the values reported in Shah et al. (1978); the 3D geometrical model consists of three filleted cylinders of different diameters. Governing equations with the appropriate boundary conditions are solved with a finite-element code. Different rheological models are used for the blood flow through the lumen and detailed comparisons are presented for the aorta-iliac bifurcation. Results are presented in terms of the velocity profiles in the bifurcation zone and Wall Shear Stress (WSS) for different sides of the bifurcation both for male and female geometries, showing that the Newtonian fluid assumption can be made without any particular loss in terms of accuracy with respect to the other more complex rheological models.
机译:摘要动脉分叉或附近动脉的几何形状影响了血流场,这是影响动脉发生的重要因素。血液有时可以作为非牛顿液。然而,许多研究表明,对于大中型动脉,血流可以被认为是牛顿。在这项工作中,提出了对非牛顿对血液流体动力学行为的全面调查,在主轴分叉中的血液流体动力学行为。通过参考于Shah等人报道的值来重建主动源几何。 (1978); 3D几何模型由三个不同直径的三个成分圆柱组成。使用有限元码来解决具有适当边界条件的控制方程。使用不同的流变模型用于通过内腔流动的血流,并为主轴 - 髂分叉提出了详细的比较。结果以分叉区和壁剪切应力(WSS)的速度剖面来提出,用于男性和雌性几何形状的分叉的不同侧,表明牛顿流体假设可以在没有任何特定的准确度的情况下进行关于其他更复杂的流变模型。

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