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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Blood flow in compliant arteries: an effective viscoelastic reduced model, numerics, and experimental validation.
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Blood flow in compliant arteries: an effective viscoelastic reduced model, numerics, and experimental validation.

机译:顺应性动脉中的血流:有效的粘弹性简化模型,数值和实验验证。

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摘要

The focus of this work is on modeling blood flow in medium-to-large systemic arteries assuming cylindrical geometry, axially symmetric flow, and viscoelasticity of arterial walls. The aim was to develop a reduced model that would capture certain physical phenomena that have been neglected in the derivation of the standard axially symmetric one-dimensional models, while at the same time keeping the numerical simulations fast and simple, utilizing one-dimensional algorithms. The viscous Navier-Stokes equations were used to describe the flow and the linearly viscoelastic membrane equations to model the mechanical properties of arterial walls. Using asymptotic and homogenization theory, a novel closed, "one-and-a-half dimensional" model was obtained. In contrast with the standard one-dimensional model, the new model captures: (1) the viscous dissipation of the fluid, (2) the viscoelastic nature of the blood flow - vessel wall interaction, (3) the hysteresis loop in the viscoelastic arterial walls dynamics,and (4) two-dimensional flow effects to the leading-order accuracy. A numerical solver based on the 1D-Finite Element Method was developed and the numerical simulations were compared with the ultrasound imaging and Doppler flow loop measurements. Less than 3% of difference in the velocity and less than 1% of difference in the maximum diameter was detected, showing excellent agreement between the model and the experiment.
机译:这项工作的重点是在假定圆柱几何形状,轴向对称流动和动脉壁粘弹性的情况下,对大中型全身动脉的血流进行建模。目的是开发一种简化的模型,该模型将捕获在推导标准轴对称一维模型时被忽略的某些物理现象,同时利用一维算法保持数值模拟的快速和简单。粘性Navier-Stokes方程用于描述流量,线性粘弹性膜方程用于建模动脉壁的力学性能。使用渐近和均匀化理论,获得了一个新颖的封闭的“一维半”模型。与标准的一维模型相比,新模型捕获:(1)流体的粘性耗散,(2)血流-血管壁相互作用的粘弹性,(3)粘弹性动脉中的滞后回线壁动力学,以及(4)二维流动影响到前导精度。开发了基于一维有限元方法的数值解算器,并将数值模拟与超声成像和多普勒流环测量进行了比较。检测到速度差异小于3%,最大直径差异小于1%,表明模型与实验之间具有极好的一致性。

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