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Friction-mediated flow and jamming in a two-dimensional silo with two exit orifices

机译:摩擦介导的流动和堵塞在二维筒仓中,有两个出口孔

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摘要

We show that the interparticle friction coefficient significantly influences the flow and jamming behavior of granular materials exiting through the orifice of a two-dimensional silo in the presence of another orifice located in its vicinity. The fluctuations emanating from a continuous flow through a larger orifice results in an intermittent flow through the smaller orifice consisting of sequential jamming and flowing events. The mean time duration of jammed and flow events, respectively, increase and decrease monotonically with increasing interparticle friction coefficient. The frequency of unjamming instances (nu), however, shows a nonmonotonic behavior comprising an increase followed by a decrease with increasing friction coefficient. The decrease on either side of the maximum, then, represents a system moving progressively towards a permanently jammed or a permanently flowing state. The overall behavior shows a systematic dependence on the interorifice distance, which determines the strength of the fluctuations reaching the smaller orifice leading to unjamming instances. The probability distributions of jamming and flowing times are nearly similar for different combinations of friction coefficients and interorifice distances studied and, respectively, exhibit exponential and power-law tails.
机译:我们表明,颗粒间摩擦系数显着地影响了通过二维筒仓的孔口的粒状材料的流动和干扰行为在其附近的另一个孔口存在下。通过较大孔口的连续流动发出的波动导致穿过较小孔口的间歇流,由序贯干扰和流动的事件组成。随着颗粒间摩擦系数的增加,堵塞和流动事件的平均时间持续时间分别增加和减小。然而,解压缩实例(nu)的频率显示了包括增加随后随后随着摩擦系数的增加而降低的非单调行为。然后,最大一侧的减小表示逐渐移动朝向永久卡住的或永久流动状态的系统。整体行为显示了对台式距离的系统依赖,这决定了达到较小孔口的波动的强度,导致不禁止的情况。与所研究的摩擦系数和台式距离的不同组合分别,展示指数和动力法尾部的不同组合几乎相似。

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