不稳定性
机械
瑞利-泰勒不稳定性
颗粒层
物理
粒状材料
计算
前线(军事)
瞬态(计算机编程)
气象学
操作系统
小脑
神经科学
生物
量子力学
计算机科学
算法
作者
Jan Ludvig Vinningland,Ø. Johnsen,Eirik G. Flekkøy,Renaud Toussaint,Knut Jørgen Måløy
标识
DOI:10.1103/physrevlett.99.048001
摘要
A granular instability driven by gravity is studied experimentally and numerically. The instability arises as grains fall in a closed Hele-Shaw cell where a layer of dense granular material is positioned above a layer of air. The initially flat front defined by the grains subsequently develops into a pattern of falling granular fingers separated by rising bubbles of air. A transient coarsening of the front is observed right from the start by a finger merging process. The coarsening is later stabilized by new fingers growing from the center of the rising bubbles. The structures are quantified by means of Fourier analysis and quantitative agreement between experiment and computation is shown. This analysis also reveals scale invariance of the flow structures under overall change of spatial scale.
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