Crystallization and jamming in narrow fluidized beds

F. Cúñez, E. Franklin
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引用次数: 15

Abstract

A fluidized bed is basically a suspension of granular material by an ascending fluid in a tube, and it has a rich dynamics that includes clustering and pattern formation. When the ratio between the tube and grain diameters is small, different behaviors can be induced by high confinement effects. Some unexpected and curious behaviors, that we investigate in this paper, are the crystallization and jamming of grains in liquids with velocities higher than that for incipient fluidization, supposed to maintain the grains fluidized. In our experiments, performed in a vertical tube of transparent material, different grains, water velocities, resting times, and velocity decelerations were used. An analysis of the bed evolution based on image processing shows that, after a decreasing flow that reaches a velocity still higher than that for incipient fluidization, grains become organized in lattice structures of high compactness, where they are trapped though with small fluctuations. These structures are initially localized and grow along time, in a similar manner as happens in phase transitions and glass formation. After a certain time, if the liquid velocity is slightly increased, jamming occurs, with grains being completely blocked and their fluctuation disappearing. We show that different lattice structures appear depending on the grain type. Our results provide new insights into fluidization conditions, glass-like formation and jamming.
窄流化床中的结晶和堵塞
流化床基本上是颗粒状物质通过管内上升流体的悬浮,它具有丰富的动力学,包括聚类和图案形成。当管径与晶粒直径之比较小时,高约束效应可以诱导出不同的行为。我们在本文中研究了一些意想不到和奇怪的行为,即颗粒在高于初始流化速度的液体中结晶和堵塞,本应保持颗粒的流化。在我们的实验中,在透明材料的垂直管中进行,使用了不同的颗粒,水的速度,静息时间和速度减速。基于图像处理的床层演化分析表明,在下降的流动达到仍高于初始流化的速度后,颗粒组织成高致密度的晶格结构,尽管波动很小,但它们被困在那里。这些结构最初是局部的,随着时间的推移,以类似于相变和玻璃形成的方式生长。在一定时间后,如果液体流速稍微增大,就会发生堵塞,颗粒被完全堵塞,波动消失。我们表明,不同的晶粒类型会出现不同的晶格结构。我们的研究结果为流化条件、类玻璃形成和阻塞提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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