首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >FLUID - STRUCTURE INTERACTION OF BLOOD FLOW IN HUMAN AORTA UNDER DYNAMIC CONDITIONS: A NUMERICAL APPROACH
【24h】

FLUID - STRUCTURE INTERACTION OF BLOOD FLOW IN HUMAN AORTA UNDER DYNAMIC CONDITIONS: A NUMERICAL APPROACH

机译:动态条件下人体主动脉血流的流体 - 结构:数值方法

获取原文

摘要

The paper proposes a numerical approach for the analysis of the blood flow in human aorta under real operating conditions. An ad-hoc procedure is developed for importing the aorta geometry from magnetic resonance imaging in order to have a patient based analysis. The aortic flow is simulated accounting for the dynamic behavior of the flow resulting from the heart pulse and for the non-Newtonian properties of blood. Fluid - structure analysis is carried out to address the mutual influence of the flow transient nature and the aorta walls' deformation on the pressure flow field and tissue's stresses. Finite element method approach is used for the structural analysis of the aorta walls which are assumed as a linear elastic isotropic material; nevertheless, different regions are introduced to account for the Young modulus variation from the ascending aorta to the common iliac arteries. Mesh morphing techniques are adopted to simulate the wall deformation and a two equation turbulence model is adopted to include the turbulence effects. The proposed numerical approach is validated against the measurements carried out on magnetic resonance imaging scanner and a good agreement is found in terms of aorta wall maximum and minimum deformation during the cardiac cycle. Therefore, the fluid-structure analysis can provide an important tool to extend the insight of the aortic system from magnetic resonance imaging techniques and improve the understanding of arteriosclerosis and the related phenomena as well as their dependence on flow structure and tissue stresses.
机译:本文提出了一种在实际操作条件下分析人体主动脉血流的数值方法。开发用于从磁共振成像导入主动脉几何体的ad-hoc过程,以便具有基于患者的分析。模拟主动脉流量占心脏脉冲和血液非牛顿性质产生的流动的动态行为。进行流体结构分析,以解决流动瞬态性质和主动脉壁对压力流场和组织应力的相互影响。有限元方法方法用于主动脉壁的结构分析,其被假定为线性弹性各向同性材料;然而,引入不同的区域以考虑来自升高的主动脉对常见髂动脉的幼年模量变化。采用网格变形技术来模拟壁变形,采用两种方程湍流模型包括湍流效应。该提出的数值方法是针对在磁共振成像扫描仪上执行的测量验证的,并且在心动周期期间的主动脉壁最大和最小变形方面找到了良好的协议。因此,流体结构分析可以提供一种重要的工具,以延长磁共振成像技术的主动脉系统的洞察力,并改善动脉硬化的理解和相关现象以及它们对流动结构和组织应力的依赖。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号