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Granular wave-solid state: an accident of density inversion?

机译:颗粒波固态:密度反演的意外?

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Abstract Discrete element simulations are carried out to investigate the dissipation behavior of granular balls in a quasi-2D closed granular container subjected to vertical vibration. In the Density Inversion (DI) region of granular phase diagram, an unknown granular motion pattern that has never been reported before occurs scatteredly, where a dense hexagonal close-packed granular cluster is supported by arch-like undulating granular layers underneath. We call this phenomenon the granular Wave-solid State (WS). The occasionality of WS occurring in the DI region is further revealed by re-simulating 100 times on the original seven groups of excitation parameters. Similarities and differences in the dissipation behavior between WS and DI obtained by the same excitation parameters are analyzed by comparing the motion pattern of granular bed, the packing structure of dense granular cluster and the density profile, velocity profile and loss profile of vibrated granular balls. Moreover, the initial packing structures of WS and DI obtained by the same excitation parameters are compared, which indicates that the dissipation behavior of vibrated granular balls is related to their initial packing structure.Graphic Abstract
机译:摘要 通过离散元仿真研究了准二维密闭颗粒容器中颗粒球在垂直振动作用下的耗散行为。在颗粒相图的密度反演(DI)区域中,散布着一种前所未有的未知颗粒运动模式,其中密集的六边形紧密堆积颗粒团簇由下方的拱形起伏颗粒层支撑。我们称这种现象为颗粒波固态(WS)。通过对原有的7组激励参数进行100次重新模拟,进一步揭示了WS在DI区域发生的偶然性。通过比较粒床的运动模式、致密颗粒团簇的堆积结构以及振动颗粒球的密度分布、速度分布和损失分布,分析了相同激励参数下WS和DI耗散行为的异同。此外,还比较了相同激励参数得到的WS和DI的初始堆积结构,表明振动颗粒球的耗散行为与其初始堆积结构有关。图形摘要

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