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Analysis of non-physical slip velocity in lattice Boltzmann simulations using the bounce-back scheme

机译:使用回弹方案的格子Boltzmann模拟中的非物理滑移速度分析

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In this work, we investigate the non-physical velocity-slip at a solid wall associated with lattice Boltzmann simulations using the bounce-back boundary scheme. By comparing the analytical solutions for the force-driven Poiseuille flow problem of two lattice models involving four and nine discrete velocities respectively, we found that the bounce-back scheme fails to define the behavior of certain discrete velocities and gives room for other factors to generate the commonly observed non-physical velocity-slip. To eliminate this deficiency, it Is necessary to supplement the missing definition. For a lid-driven cavity flow, this is shown to be very simple although further study is necessary for more complex geometries. (C) 2018 The Authors. Published by Elsevier B.V.
机译:在这项工作中,我们研究了使用反弹后边界方案与格子Boltzmann模拟相关联的实体壁上的非物理速度滑移。通过比较分别涉及四个和九个离散速度的两个晶格模型的受力驱动的泊肃叶流问题的解析解,我们发现反跳方案无法定义某些离散速度的行为,并为其他因素产生提供了空间通常观察到的非物理速度滑移。为了消除这种缺陷,有必要补充缺失的定义。对于盖驱动的腔流,这被证明非常简单,尽管对于更复杂的几何形状还需要进一步研究。 (C)2018作者。由Elsevier B.V.发布

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