首页> 外文期刊>Journal of Biomechanics >Analysis of 3D transient blood flow passing through an artificial aortic valve by Lattice-Boltzmann methods.
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Analysis of 3D transient blood flow passing through an artificial aortic valve by Lattice-Boltzmann methods.

机译:使用Lattice-Boltzmann方法分析通过人造主动脉瓣的3D瞬时血流。

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The development of flow instabilities due to high Reynolds number flow in artificial heart valve geometries inducing high strain rates and stresses often leads to hemolysis and related highly undesired effects. Geometric and functional optimization of artificial heart valves is therefore mandatory. In addition to experimental work in this field it is meanwhile possible to obtain increasing insight into flow dynamics by computer simulation of refined model problems. After giving an introductory overview we report the results of the simulation of three-dimensional transient physiological flows in fixed geometries similar to a CarboMedics bileaflet heart valve at different opening angles. The visualization of emerging complicated flow patterns gives detailed information about the transient history of the systems dynamical stability. Stress analysis indicates temporal shear stress peaks even far away from walls. The mathematical approach used is the Lattice Boltzmann method. We obtained reasonable results for velocity and shear stress fields. The code is implemented on parallel hardware in order to decrease computation time. Finally, we discuss problems, shortcomings and possible extensions of our approach.
机译:在人工心脏瓣膜几何结构中,由于高雷诺数流量引起的流量不稳定性的发展,导致高应变率和应力,通常会导致溶血和相关的不良后果。因此,必须对人造心脏瓣膜进行几何和功能优化。除了在该领域的实验工作外,同时还可以通过计算机模拟精细模型问题来获得对流动动力学的越来越多的了解。在进行介绍性概述后,我们报告了在固定几何形状下类似于CarboMedics双叶心脏瓣膜在不同打开角度下的三维瞬态生理流的模拟结果。新兴复杂流态的可视化显示了有关系统动态稳定性瞬态历史的详细信息。应力分析表明,时间剪应力峰值甚至距墙较远。所使用的数学方法是格子Boltzmann方法。我们获得了速度和切应力场的合理结果。该代码在并行硬件上实现,以减少计算时间。最后,我们讨论了我们方法的问题,缺点和可能的扩展。

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