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An improved non-reflecting outlet boundary condition for weakly-compressible SPH

机译:用于弱可压缩SPH的改进的非反射出口边界条件

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Implementation of an outlet boundary condition is challenging in the context of the weakly-compressible Smoothed Particle Hydrodynamics method. We perform a systematic numerical study of several of the available techniques for the outlet boundary condition. We propose a new hybrid approach that combines a characteristics-based method with a simpler frozen-particle (do-nothing) technique to accurately satisfy the outlet boundary condition in the context of wind-tunnel-like simulations. In addition, we suggest some improvements to the do-nothing approach. We introduce a new suite of test problems that make it possible to compare these techniques carefully. We then simulate the flow past a backward-facing step and circular cylinder. The proposed method allows us to obtain accurate results with an order of magnitude less particles than those presented in recent research. We provide a completely open source implementation and a reproducible manuscript. (C) 2020 Elsevier B.V. All rights reserved.
机译:在弱可压缩的平滑粒子流体动力学方法的背景下,出口边界条件的实施是具有挑战性的。我们对出口边界条件的几种可用技术进行了系统的数值研究。我们提出了一种新的混合方法,该方法将基于特征的方法与更简单的冻结粒子(DO-NOLL)技术相结合,以准确地满足风隧道模拟的背景下的出口边界条件。此外,我们建议对任何内容的方法有所改善。我们介绍了一套新的测试问题,使得可以仔细比较这些技术。然后,我们模拟了朝向朝向的步骤和圆筒的流动。该方法允许我们获得比最近研究中呈现的粒子较少的尺寸级的准确结果。我们提供完全开源实现和可重复的稿件。 (c)2020 Elsevier B.v.保留所有权利。

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