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Effect of friction on the granular U-tube instability

机译:摩擦力对颗粒U形管不稳定性的影响

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When a granular material (like fine sand) fills a U shaped tube and is vibrated vertically, the column of grains in one branch of the tube grows while the other one empties. The height difference of the level of grains in each branch shows an exponential growth dependence with time for low frequencies of oscillation (~10 Hz). A complete explanation of this phenomenon is still a matter of discussion. The exponential growth rate of the height difference is affected by parameters such as the amplitude and frequency of oscillation, properties of the granular material and the geometry of the U tube. This work presents an experimental study on the effect of friction between the tube walls and the granular medium, on the exponential growth rate. The internal walls of the tube were covered with sand paper of different average grain sizes (28.5 μm, 46.25 μm and 201 μm). As granular materials we used glass spheres with diameter between 180 and 300 μm. We found that increasing wall roughness lowers the exponential growth rate, and also restricts the range of amplitudes over which the effect occurs. We also compare our results with the predictions of a simple model for the instability, and show that it works only for cases with low wall roughness.
机译:当粒状材料(如细砂)填充到U形管中并垂直振动时,该管的一个分支中的一列谷物会长大,而另一个分支会排空。在低振荡频率(〜10 Hz)下,每个分支中晶粒水平的高度差表现出随时间的指数增长依赖性。关于这种现象的完整解释仍然是讨论的问题。高度差的指数增长率受参数的影响,例如振荡的幅度和频率,粒状材料的特性以及U形管的几何形状。这项工作提出了关于管壁与粒状介质之间的摩擦对指数增长率的影响的实验研究。管的内壁覆盖有不同平均粒径(28.5μm,46.25μm和201μm)的砂纸。作为颗粒材料,我们使用了直径在180至300μm之间的玻璃球。我们发现,增加壁的粗糙度会降低指数增长率,并且还会限制发生效果的幅度范围。我们还将我们的结果与不稳定性的简单模型的预测结果进行比较,并表明它仅适用于壁粗糙度较低的情况。

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