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A Stokes-residual backflow stabilization method applied tophysiological flows

机译:Stokes残差逆流稳定化方法应用于生理流

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摘要

In computational fluid dynamics, the presence of incoming flow at open boundaries (backflow) might often yield unphysical oscillations and instabilities issues, even for moderate Reynolds numbers. It is widely accepted that this problem is caused by the incoming convective energy at the open boundary, which cannot be controlled a prioriwhen the velocity at the boundary is unknown. In this work, we propose a stabilized finite element formulation for the incompressible Navier-Stokes equations, in which the stabilization term is based on the residual of a weak Stokes problem normal to the open boundary, driven by an approximated boundary pressure gradient. In particular, the viscous term introduces additional dissipation which controls the incoming convective energy. This method has the advantage as it does not require modifications or extensions of the computational domain. Moreover, it does not require a priori assumptions on the shape of the boundary velocity field. We illustrate our approach through several numerical examples relevant to blood and respiratory flows, including Womersley flows and realistic geometries coming from medical imaging. The performance of the simulations is compared to recently reported approaches. (C) 2016 Elsevier Inc. All rights reserved.
机译:在计算流体动力学中,即使对于适中的雷诺数,在开放边界处存在回流(回流)也可能经常产生非物理振荡和不稳定性问题。人们普遍认为,这个问题是由开放边界处的对流能量引起的,当边界速度未知时,就不能事先控制它。在这项工作中,我们为不可压缩的Navier-Stokes方程提出了一个稳定的有限元公式,其中稳定项是基于近似于边界压力梯度的,垂直于开放边界的弱Stokes问题的残差。特别是,粘性术语会引入额外的耗散,从而控制传入的对流能。该方法具有优点,因为它不需要修改或扩展计算域。而且,它不需要关于边界速度场的形状的先验假设。我们通过几个与血液和呼吸流动相关的数值示例来说明我们的方法,包括Womersley流动和来自医学成像的实际几何形状。仿真的性能与最近报道的方法进行了比较。 (C)2016 Elsevier Inc.保留所有权利。

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