Influence of Wavy Arteries and Veins on Hemodynamic Characteristics: A Numerical Study.

Shreyas Kotian, Nishant Jain, Nachiket Methekar, Shailesh Nikam
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Abstract

The present work is focused on the study of hemodynamic characteristics for tortuous arteries/veins. Tortuosity in arteries/veins is defined by introducing waviness in the wall of the tube. Analysis is further extended for bifurcated veins with and without wavy walls. Waviness is defined by two geometric parameters; pitch and depth of the wave. Four different combinations of pitch and depth are studied and compared with a plain straight wall. The present study is carried out numerically by using a computational fluid dynamics tool. Hemodynamics for a steady flow of blood is investigated through pressure, velocity, and wall shear stress distribution. Waviness in the wall of arteries/veins creates a recirculation zone at the crest and trough of the wall. Occurrence of the recirculation zone leads to reduction in velocity which in turn reduces wall shear stress. Variation in the magnitude of the velocity and corresponding wall shear stress at the crest and trough of the wavy wall depends on the pitch and depth of the artery/veins (tube).

波状动脉和静脉对血液动力学特征的影响:数值研究
目前的工作重点是研究迂曲动脉/静脉的血液动力学特性。动脉/静脉的迂曲是通过在管壁中引入波浪状来定义的。分析范围进一步扩大到有波浪形管壁和无波浪形管壁的分叉静脉。波纹由两个几何参数定义:波的间距和深度。研究了四种不同的间距和深度组合,并与普通直壁进行了比较。本研究使用计算流体动力学工具进行数值计算。通过压力、速度和壁面剪应力分布研究了稳定血流的血液动力学。动脉/静脉壁上的波浪在壁的波峰和波谷处形成一个再循环区。再循环区的出现导致速度降低,进而降低了管壁剪应力。波浪形管壁波峰和波谷处的速度大小和相应的管壁切应力的变化取决于动脉/静脉(管)的间距和深度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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