A Semi-Langrangian Vortex Penalization Method for 3D Incompressible Flows

IF 0.8 4区 数学
Chlo Mimeau sci
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引用次数: 0

Abstract

A remeshed Vortex method is proposed in this work to simulate threedimensional incompressible flows. The convection equation is solved on particles, using a Vortex method, which are then remeshed on a Cartesian underlying grid. The other differential operators involved in the governing incompressible Navier-Stokes equations are discretized on the grid, through finite differences method or in spectral space. In the present work, the redistribution of the particles on the Cartesian mesh is performed using a directional splitting, allowing to save significant computational efforts especially in the case of 3D flows. A coupling of this semi-Lagrangian method with an immersed boundary method, namely the Brinkman penalization technique, is proposed in this paper in order to efficiently take into account the presence of solid and porous obstacles in the fluid flow and then to perform passive flow control using porous medium. This method, which combines the robustness of particle methods and the flexibility of penalization method, is validated and exploited in the context of different flow physics. AMS subject classifications: 65M22, 35Q30, 76S05
三维不可压缩流的半朗日涡惩罚方法
本文提出了一种重网格涡旋法来模拟三维不可压缩流动。对流方程在粒子上求解,使用涡旋方法,然后在笛卡尔底层网格上重新划分网格。控制不可压缩Navier-Stokes方程中涉及的其他微分算子在网格上、通过有限差分法或在谱空间中离散化。在目前的工作中,粒子在笛卡尔网格上的再分配是使用定向分裂进行的,这可以节省大量的计算工作,特别是在3D流动的情况下。本文提出了半拉格朗日方法与浸入边界法的耦合,即Brinkman惩罚技术,以便有效地考虑流体流动中固体和多孔障碍的存在,进而利用多孔介质进行被动流动控制。该方法结合了粒子法的鲁棒性和惩罚法的灵活性,并在不同的流动物理环境下进行了验证和应用。AMS学科分类:65M22, 35Q30, 76S05
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来源期刊
数学研究
数学研究 MATHEMATICS-
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