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一种用于计算血液动力学研究的新型周期性边界条件。

A novel periodic boundary condition for computational hemodynamics studies.

作者信息

Bahramian Fereshteh, Mohammadi Hadi

机构信息

Division of Mechanical Engineering, School of Engineering, Faculty of Applied Science, The University of British Columbia, Kelowna, BC, Canada.

Division of Mechanical Engineering, School of Engineering, Faculty of Applied Science, The University of British Columbia, Kelowna, BC, Canada Biomedical Engineering Graduate Program, Faculty of Applied Science, The University of British Columbia, Vancouver, BC, Canada

出版信息

Proc Inst Mech Eng H. 2014 Jul;228(7):643-51. doi: 10.1177/0954411914542170. Epub 2014 Jul 11.

Abstract

In computational fluid dynamics models for hemodynamics applications, boundary conditions remain one of the major issues in obtaining accurate fluid flow predictions. For major cardiovascular models, the realistic boundary conditions are not available. In order to address this issue, the whole computational domain needs to be modeled, which is practically impossible. For simulating fully developed turbulent flows using the large eddy simulation and dynamic numerical solution methods, which are very popular in hemodynamics studies, periodic boundary conditions are suitable. This is mainly because the computational domain can be reduced considerably. In this study, a novel periodic boundary condition is proposed, which is based on mass flow condition. The proposed boundary condition is applied on a square duct for the sake of validation. The mass-based condition was shown to obtain the solution in 15% less time. As such, the mass-based condition has two decisive advantages: first, the solution for a given Reynolds number can be obtained in a single simulation because of the direct specification of the mass flow, and second, simulations can be made more quickly.

摘要

在用于血流动力学应用的计算流体动力学模型中,边界条件仍然是获得准确流体流动预测的主要问题之一。对于主要的心血管模型,现实的边界条件并不存在。为了解决这个问题,需要对整个计算域进行建模,但这实际上是不可能的。对于使用大涡模拟和动态数值解法来模拟充分发展的湍流(这两种方法在血流动力学研究中非常流行),周期性边界条件是合适的。这主要是因为计算域可以大幅减小。在本研究中,提出了一种基于质量流量条件的新型周期性边界条件。为了进行验证,将所提出的边界条件应用于方形管道。结果表明,基于质量的条件能够在少15%的时间内获得解。因此,基于质量的条件有两个决定性的优点:第一,由于直接指定了质量流量,在一次模拟中就能获得给定雷诺数的解;第二,模拟可以更快地进行。

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