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A comparison of outlet boundary treatments for prevention of backflow divergence with relevance to blood flow simulations

机译:比较与血流模拟有关的防止血流扩散的出口边界治疗

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Simulation divergence due to backflow is a common, but not fully addressed, problem in three-dimensional simulations of blood flow in the large vessels. Because backflow is a naturally occurring physiologic phenomenon, careful treatment is necessary to realistically model backflow without artificially altering the local flow dynamics. In this study, we quantitatively compare three available methods for treatment of outlets to prevent backflow divergence in finite element Navier–Stokes solvers. The methods examined are (1) adding a stabilization term to the boundary nodes formulation, (2) constraining the velocity to be normal to the outlet, and (3) using Lagrange multipliers to constrain the velocity profile at all or some of the outlets. A modification to the stabilization method is also discussed. Three model problems, a short and long cylinder with an expansion, a right-angle bend, and a patient-specific aorta model, are used to evaluate and quantitatively compare these methods. Detailed comparisons are made to evaluate robustness, stability characteristics, impact on local and global flow physics, computational cost, implementation effort, and ease-of-use. The results show that the stabilization method offers a promising alternative to previous methods, with reduced effect on both local and global hemodynamics, improved stability, little-to-no increase in computational cost, and elimination of the need for tunable parameters.
机译:由于回流引起的模拟差异是大血管中血流的三维模拟中的一个常见问题,但尚未完全解决。由于回流是自然发生的生理现象,因此必须进行认真的处理以真实地模拟回流,而无需人为地更改局部流动动力学。在这项研究中,我们定量比较了三种可用的出口处理方法,以防止有限元Navier-Stokes求解器中的回流扩散。所研究的方法是(1)在边界节点公式中添加稳定项;(2)将速度约束为垂直于出口;(3)使用拉格朗日乘数来约束所有或某些出口的速度曲线。还讨论了对稳定方法的修改。使用三个模型问题,即带有膨胀的短圆柱和长圆柱,直角弯曲以及特定于患者的主动脉模型,来评估和定量比较这些方法。进行了详细的比较,以评估鲁棒性,稳定性特征,对局部和全局流动物理的影响,计算成本,实现工作量和易用性。结果表明,稳定化方法提供了一种有前途的替代方法,对局部和全局血流动力学的影响均降低,稳定性提高,计算成本几乎没有增加,并且消除了对可调参数的需求。

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