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Granular dynamics simulations of heap formation: Effects of feed rate on segregation patterns in binary granular heap

机译:堆形成的颗粒动力学模拟:进料速率对二元颗粒堆中分离模式的影响

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Granular dynamics simulations of a 2D heap formation have been carried out at low- and high-impact feed rates for a 3:1 diameter ratio binary mixture. The data have been analyzed using novel time series and filtering analysis to investigate key representative many-particle dynamic events of the assembly evolution. Spectral analysis of the time series has revealed quite different periodic behavior in the low- and high-impact cases. Segregation occurs in the low-impact case whereas more uniform mixing of the two types of particles arises at high impact, which is consistent with previous experimental observations. The low-impact feed regime is shown to be characterized by discrete surface avalanching manifesting kinetic sieving of the finer particles, in which the large particles move preferentially toward the free surface and segregate in the boundary layer on rolling toward the horizontal base. In contrast, the high-impact feed regime is marked by periodic lateral surging and vertical "pluming" of particles from below toward the free surface. [References: 22]
机译:对于3:1直径比的二元混合物,已经在低和高冲击进料速率下进行了2D堆形成的颗粒动力学模拟。使用新颖的时间序列和过滤分析对数据进行了分析,以研究装配演化的关键代表性多粒子动力学事件。时间序列的频谱分析显示,在低影响和高影响情况下,周期性行为有很大不同。在低冲击情况下会发生偏析,而在高冲击下会产生两种类型颗粒的更均匀混合,这与以前的实验观察一致。低冲击进料方式的特征是离散的表面雪崩,表现为细颗粒的动力学筛分,其中大颗粒优先向自由表面移动,并在向水平基底滚动时偏析在边界层中。相比之下,高冲击力的进料方式的特征是,颗粒从下部向自由表面周期性周期性地横向涌动和垂直“成羽”。 [参考:22]

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