Sensitivity to entrance conditions of wall shear stress in a curved vessel

IF 1.9 3区 工程技术 Q3 MECHANICS Meccanica Pub Date : 2024-08-04 DOI:10.1007/s11012-024-01844-9
Yuling Chen, Xavier Escriva, Thomas Castelain, Patrick Feugier, Bruno Gilles, Jean-Christophe Béra
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Abstract

This study aims to numerically investigate the impact of entrance velocity distributions on wall shear stress in a simplified curved vessel model. The flow in a single-curved vessel is simulated with Reynolds numbers adjusted to a Newtonian blood-analog fluid in an external iliac artery (EIA) model. Simulations are conducted assuming a rigid wall and a steady-state flow regime using OpenFOAM®. Eight entry velocity conditions are implemented, including the effects of flow development, asymmetry, Dean-type secondary flow and rotation. Their influences on hemodynamics features are investigated, focusing on axial wall shear stress (WSS). In the examined configurations of EIA flow, the impact of entrance conditions on WSS distribution is moderate. The maximum WSS is consistently located at the bend exit on the outer wall, except in the case mimicking an upstream curved pipe in the opposite direction of the local curvature. While the entry condition affects the maximum WSS value, this value remains within the same order of magnitude. At \(Re=560\), the highest WSS value is given by the Poiseuille condition and reaches 4.9 times the value of the laminar straight flow. At \(Re=1100\), the maximum value provided by the Dean-type condition, particularly in the case mimicking an upstream curved pipe perpendicular to the local curvature, reaching 7.1 times the laminar straight flow, which exceeds the value of the Poiseuille condition by 17%. The results suggest that, to capture extreme WSS value, opting for Poiseuille flow as the entrance condition is a good choice for further studies on EIA flow. It has to be noted that results presented here tend to confirm the link established between exaggerated WSS and the endofibrosic plaque development.

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弯曲容器内壁剪应力对入口条件的敏感性
本研究旨在对简化弯曲血管模型中入口速度分布对管壁切应力的影响进行数值研究。在髂外动脉(EIA)模型中,使用调整为牛顿血液模拟流体的雷诺数模拟单曲面血管中的流动。模拟使用 OpenFOAM® 进行,假定血管壁是刚性的,流动状态是稳定的。实施了八种进入速度条件,包括流动发展、不对称、迪安型二次流和旋转的影响。研究了它们对血液动力学特征的影响,重点是轴向壁剪应力(WSS)。在所研究的 EIA 流动配置中,入口条件对 WSS 分布的影响不大。最大 WSS 始终位于外壁的弯管出口处,但模仿与局部曲率方向相反的上游弯曲管道的情况除外。虽然入口条件会影响最大 WSS 值,但该值仍保持在同一数量级内。在(Re=560)时,最高 WSS 值由 Poiseuille 条件给出,达到层流直流值的 4.9 倍。在 \(Re=1100\) 条件下,迪安型条件提供的最大值,尤其是在模拟垂直于局部曲率的上游弯曲管道的情况下,达到了层流直流的 7.1 倍,比普瓦伊莱条件的值高出 17%。结果表明,要捕捉 WSS 的极值,选择 Poiseuille 流作为入口条件是进一步研究 EIA 流的良好选择。必须指出的是,本文提出的结果倾向于证实夸大的 WSS 与内纤维斑块发展之间的联系。
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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来源期刊
Meccanica
Meccanica 物理-力学
CiteScore
4.70
自引率
3.70%
发文量
151
审稿时长
7 months
期刊介绍: Meccanica focuses on the methodological framework shared by mechanical scientists when addressing theoretical or applied problems. Original papers address various aspects of mechanical and mathematical modeling, of solution, as well as of analysis of system behavior. The journal explores fundamental and applications issues in established areas of mechanics research as well as in emerging fields; contemporary research on general mechanics, solid and structural mechanics, fluid mechanics, and mechanics of machines; interdisciplinary fields between mechanics and other mathematical and engineering sciences; interaction of mechanics with dynamical systems, advanced materials, control and computation; electromechanics; biomechanics. Articles include full length papers; topical overviews; brief notes; discussions and comments on published papers; book reviews; and an international calendar of conferences. Meccanica, the official journal of the Italian Association of Theoretical and Applied Mechanics, was established in 1966.
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