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首页> 外文期刊>Journal of Fluid Mechanics >Granular hydrodynamics and pattern formation in vertically oscillated granular disk layers
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Granular hydrodynamics and pattern formation in vertically oscillated granular disk layers

机译:垂直振动颗粒盘层中的颗粒流体动力学和模式形成

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The goal of this study is to demonstrate numerically that certain hydrodynamic systems, derived from inelastic kinetic theory, give fairly good descriptions of rapid granular flows even if they are way beyond their supposed validity limits. A numerical hydrodynamic solver is presented for a vibrated granular bed in two dimensions. It is based on a highly accurate shock capturing state-of-the-art numerical scheme applied to a compressible Navier-Stokes system for granular flow. The hydrodynamic simulation of granular flows is challenging, particularly in systems where dilute and dense regions occur at the same time and interact with each other. As a benchmark experiment, we investigate the formation of Faraday waves in a two-dimensional thin layer exposed to vertical vibration in the presence of gravity. The results of the hydrodynamic simulations are compared with those of event-driven molecular dynamics and the overall quantitative agreement is good at the level of the formation and structure of periodic patterns. The accurate numerical scheme for the hydrodynamic description improves the reproduction of the primary onset of patterns compared to previous literature. To our knowledge, these are the first hydrodynamic results for Faraday waves in two-dimensional granular beds that accurately predict the wavelengths of the two-dimensional standing waves as a function of the perturbation's amplitude. Movies are available with the online version of the paper.
机译:这项研究的目的是从数值上证明,从非弹性动力学理论衍生出来的某些流体动力学系统,对快速的颗粒流给出了很好的描述,即使它们已经超出了它们的有效范围。提出了用于二维振动床的数值流体动力求解器。它基于适用于可压缩的Navier-Stokes系统的高精度冲击捕捉最新数值方案,用于颗粒流动。颗粒流的水动力模拟具有挑战性,尤其是在稀疏区域和稠密区域同时发生并相互影响的系统中。作为基准实验,我们研究了在重力作用下暴露于垂直振动的二维薄层中法拉第波的形成。将流体动力学模拟的结果与事件驱动的分子动力学的结果进行了比较,总体的定量一致性在周期性模式的形成和结构方面都很好。与以前的文献相比,用于水动力描述的精确数值方案改善了模式初发的再现。据我们所知,这是二维粒状床中法拉第波的第一个流体动力学结果,可准确地预测二维驻波的波长随扰动幅度的变化。电影可通过在线版本获得。

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