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基于沃默斯利速度剖面的考虑摩擦和对流的动脉内血流一维模型。

A one-dimensional model of blood flow in arteries with friction and convection based on the Womersley velocity profile.

作者信息

Azer Karim, Peskin Charles S

机构信息

Courant Institute of Mathematical Sciences, New York University, New York, NY, USA.

出版信息

Cardiovasc Eng. 2007 Jun;7(2):51-73. doi: 10.1007/s10558-007-9031-y.

Abstract

In this paper, we present a one-dimensional model for blood flow in arteries, without assuming an a priori shape for the velocity profile across an artery (Azer, Ph.D. thesis, Courant Institute, New York University, 2006). We combine the one-dimensional equations for conservation of mass and momentum with the Womersley model for the velocity profile in an iterative way. The pressure gradient of the one-dimensional model drives the Womersley equations, and the velocity profiles calculated then feed back into both the friction and nonlinear parts of the one-dimensional model. Besides enabling us to evaluate the friction correctly and also to use the velocity profile to correct the nonlinear terms, having the velocity profile available as output should be useful in a variety of applications. We present flow simulations using both structured trees and pure resistance models for the small arteries, and compare the resulting flow and pressure waves under various friction models. Moreover, we show how to couple the one-dimensional equations with the Taylor diffusion limit (Azer, Int J Heat Mass Transfer 2005;48:2735-40; Taylor, Proc R Soc Lond Ser A 1953;219:186-203) of the convection-diffusion equations to drive the concentration of a solute along an artery in time.

摘要

在本文中,我们提出了一种用于动脉血流的一维模型,并未预先假定动脉横截面上速度分布的形状(阿泽尔,博士论文,纽约大学柯朗数学科学研究所,2006年)。我们以迭代方式将质量守恒和动量守恒的一维方程与速度分布的沃默斯利模型相结合。一维模型的压力梯度驱动沃默斯利方程,然后计算得到的速度分布反馈到一维模型的摩擦项和非线性项中。除了使我们能够正确评估摩擦力,并利用速度分布来校正非线性项外,将速度分布作为输出在各种应用中应该会很有用。我们使用结构化树模型和小动脉的纯阻力模型进行了血流模拟,并比较了在各种摩擦模型下得到的血流和压力波。此外,我们展示了如何将一维方程与对流扩散方程的泰勒扩散极限(阿泽尔,《国际热质传递杂志》2005年;48:2735 - 40;泰勒,《伦敦皇家学会学报A辑》1953年;219:186 - 203)相耦合,以驱动溶质沿动脉随时间的浓度变化。

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