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Jamming probability of granular flow in 3D hopper with shallow columns: DEM simulations

机译:浅柱3D料斗中粒状流动的干扰概率:DEM仿真

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We performed a numerical study of the jamming that stops the flow of granular material from a three-dimensional hopper discharging due to gravity. When the hopper outlet is not much larger than the particles, granular material clogs the hopper outlet due to the formation of an arch or dome. For a wide range of particle diameters, we obtained the size distribution of the "avalanche," defined as the number of particles that fall before jamming. We repeated this process through a discrete element method model verified with a simple experiment. From these distributions, we determined the probability of the flow jamming beforeNparticles pass through the hopper. As the ratio between the hopper outlet diameter and the particle diameter increases, the probability that an arch will block the outlet decreases. We show here that the probability of one particle passing through the hopper is not constant when there are not sufficient particles. Then, we propose a new model that can quantify changes in particle passing probability. Using this model, we derive the particle passing probability in a hopper with shallow columns and confirm that the probability of one particle passing through the hopper is closely related to the pressure acting on the bottom of the hopper.
机译:我们对堵塞的堵塞进行了数值研究,该堵塞从引起的重力引起的三维料斗排放中停止颗粒材料的流动。当料斗出口不大于颗粒时,由于拱门或圆顶的形成,粒状材料堵塞了料斗出口。对于各种粒径,我们获得了“雪崩”的尺寸分布,定义为在干扰前落下的颗粒的数量。我们通过使用简单实验验证的离散元素模型重复了这一过程。从这些分布中,我们确定了流动干扰的概率通过料斗穿过料斗。随着料斗出口直径与粒径之间的比率增加,拱形将阻挡出口的概率减小。在这里,我们在这里展示了通过料斗的一个粒子的概率在没有足够的颗粒时不恒定。然后,我们提出了一种可以量化粒子通过概率的变化的新模型。使用该模型,我们从漏斗中的料斗中的粒子通过概率与浅柱进行,并确认通过料斗的一个粒子的可能性与作用在料斗底部的压力密切相关。

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