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Pattern formation in a vibrated granular layer: The pattern selection issue

机译:振动颗粒层中的图案形成:图案选择问题

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We present a numerical study of a surface instability occurring in a bidimensional vibrated granular layer. The driving mechanism for the formation of stationary waves is closely followed. Two regimes of wavelength selection are identified: a dispersive regime where the wavelength decreases with increasing frequency and a saturation regime where the value of the wavelength is a constant depending on the number of grains in the vertical direction. For the dispersive regime an empirical relation is proposed, based on dimensional arguments involving transport properties in the layer. A comparison is made with existing experimental results in two and three dimensions. For the saturation regime, a connection is established between the pattern formation and an intrinsic instability occurring spontaneously in dissipative gases. The observed dependence on the layer height is linked to a detailed dissipation mechanism for the collisions between grains. [References: 46]
机译:我们提出了二维振动颗粒层中发生的表面不稳定性的数值研究。紧跟着形成驻波的驱动机制。确定了两种波长选择方案:一种是波长随频率增加而减小的色散方案,另一种是根据垂直方向上的晶粒数恒定的波长值的饱和方案。对于色散状态,基于涉及层中传输性质的尺寸参数,提出了经验关系。在二维和三维上与现有的实验结果进行了比较。对于饱和状态,在图案形成和耗散气体中自发发生的固有不稳定性之间建立了联系。观察到的对层高的依赖性与晶粒间碰撞的详细耗散机制有关。 [参考:46]

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