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首页> 外文期刊>EPJ Web of Conferences >DEM Simulation of Particle Stratification and Segregation in Stockpile Formation
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DEM Simulation of Particle Stratification and Segregation in Stockpile Formation

机译:堆积物形成过程中颗粒分层和离析的DEM模拟

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Granular stockpiles are commonly observed in nature and industry, and their formation has been extensively investigated experimentally and mathematically in the literature. One of the striking features affecting properties of stockpiles are the internal patterns formed by the stratification and segregation processes. In this work, we conduct a numerical study based on DEM (discrete element method) model to study the influencing factors and triggering mechanisms of these two phenomena. With the use of a previously developed mixing index, the effects of parameters including size ratio, injection height and mass ratio are investigated. We found that it is a void-filling mechanism that differentiates the motions of particles with different sizes. This mechanism drives the large particles to flow over the pile surface and segregate at the pile bottom, while it also pushes small particles to fill the voids between large particles, giving rise to separate layers. Consequently, this difference in motion will result in the observed stratification and segregation phenomena.
机译:在自然和工业中通常观察到颗粒状储备,并且在文献中已经通过实验和数学方法对它们的形成进行了广泛的研究。影响库存性质的显着特征之一是由分层和隔离过程形成的内部模式。在这项工作中,我们基于离散元方法模型进行了数值研究,以研究这两种现象的影响因素和触发机制。使用以前开发的混合指数,研究了包括尺寸比,进样高度和质量比在内的参数的影响。我们发现这是一种空隙填充机制,可区分具有不同尺寸的粒子的运动。此机制驱动大颗粒在桩表面上流动并在桩底隔离,同时它还推动小颗粒填充大颗粒之间的空隙,从而形成单独的层。因此,这种运动差异将导致观察到的分层和偏析现象。

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