人体动脉树分叉的三维血流模拟

E. Aribas, S. Piskin, M. S. Çelebi
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引用次数: 4

摘要

本文拟利用各种加工工具和方法,采用合适的几何模型模拟颈动脉分支的三维血流。为了了解人体血流的流动特性,有必要建立具有尽可能多分支的三维人体动脉树模型。使用商业程序(Mimics)构建动脉网络的几何建模。将医学原始数据转换为几何模型需要预处理工具和软件,以清除畸变数据或不规则数据。这一步是通过使用Mimics医学图形软件处理的。下一步是将几何模型转换为流模型,其中包括使用商用预处理程序TGrid进行关键的预处理操作。进一步,应用计算网格生成方法对流动模型进行增强。除此之外,对于未来的工作,可以在计算模型上添加更多的分岔。将几何数据导出到著名的流体求解器(Fluent)中需要进行一定的模拟和分析。因此,为初始模拟创建了源网格文件,包括三维稳定,非稳定(瞬态)流动,上游速度为恒定和窦波形式。根据压力、剪应力和速度值对所有情况进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D blood flow simulations in human arterial tree bifurcations
This paper intends to simulate 3D blood flow of carotid artery bifurcations using a suitable geometrical model with the help of various processing tools and methods. To understand flow characteristics of human blood flow, it is essential to model 3D human arterial tree with as many branches as possible. Geometric modeling of the artery network is structured using a commercial program (Mimics). Conversion of the medical raw data to the geometrical model requires preprocessing tools and software in order to clean the distorted data or irregular data. This step is handled by using Mimics Medical Graphics Software. Next step is conversion of geometric model to a flow model including the crucial preprocessing operation using TGrid which is a commercial preprocessing program. Further, computational grid generation methods are applied to enhance the flow model. In addition to that, for future work it is made possible to add more bifurcations on the computational model. Exporting the geometrical data into a well-known fluid solver (Fluent) requires certain group of simulations and analysis. Therefore, a source mesh file is created for initial simulations that include 3D steady, unsteady (transient) flows with upstream velocities in constant and sinus wave form. All cases are compared according to pressure, shear stress and velocity values.
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