Tagliabue Anna, Dedè Luca, Quarteroni Alfio
CMCS-Chair of Modeling and Scientific Computing MATHICSE-Mathematics Institute of Computational Science and Engineering EPFL-École Polytechnique Fédérale de Lausanne Station 8, Lausanne CH 1015, Switzerland.
Chaos. 2017 Sep;27(9):093939. doi: 10.1063/1.5002120.
In this paper, we study the blood flow dynamics in a three-dimensional (3D) idealized left ventricle of the human heart whose deformation is driven by muscle contraction and relaxation in coordination with the action of the mitral and aortic valves. We propose a simplified but realistic mathematical treatment of the valves function based on mixed time-varying boundary conditions (BCs) for the Navier-Stokes equations modeling the flow. These switchings in time BCs, from natural to essential and vice versa, model either the open or the closed configurations of the valves. At the numerical level, these BCs are enforced by means of the extended Nitsche's method (Tagliabue et al., Int. J. Numer. Methods Fluids, 2017). Numerical results for the 3D idealized left ventricle obtained by means of Isogeometric Analysis are presented, discussed in terms of both instantaneous and phase-averaged quantities of interest and validated against those available in the literature, both experimental and computational. The complex blood flow patterns are analysed to describe the characteristic fluid properties, to show the transitional nature of the flow, and to highlight its main features inside the left ventricle. The sensitivity of the intraventricular flow patterns to the mitral valve properties is also investigated.
在本文中,我们研究了人类心脏三维(3D)理想化左心室内的血流动力学,其变形由肌肉收缩和舒张驱动,并与二尖瓣和主动脉瓣的作用相协调。我们基于对模拟血流的纳维 - 斯托克斯方程的混合时变边界条件(BCs),提出了一种简化但现实的瓣膜功能数学处理方法。这些时间边界条件的切换,从自然边界条件到本质边界条件,反之亦然,模拟了瓣膜的开放或关闭状态。在数值层面,这些边界条件通过扩展的尼茨切方法(Tagliabue等人,《国际流体数值方法杂志》,2017年)来施加。展示了通过等几何分析获得的三维理想化左心室的数值结果,从感兴趣的瞬时量和相位平均量两方面进行了讨论,并与文献中可用的实验和计算结果进行了验证。分析了复杂的血流模式,以描述特征流体特性,展示血流的过渡性质,并突出其在左心室内的主要特征。还研究了心室内血流模式对二尖瓣特性的敏感性。