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Upward penetration of grains through a granular medium

机译:谷物通过颗粒介质向上渗透

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We study experimentally the creeping penetration of guest ( percolating) grains through densely packed granular media in two dimensions. The evolution of the system of the guest grains during the penetration is studied by image analysis. To quantify the changes in the internal structure of the packing, we use Voronoi tessellation and a certain shape factor which is a clear indicator of the presence of different underlying substructures ( domains). We first consider the impact of the effective gravitational acceleration on upward penetration of grains. It is found that the higher effective gravity increases the resistance to upward penetration and enhances structural organization in the system of the percolating grains. We also focus our attention on the dependence of the structural rearrangements of percolating grains on some parameters like polydispersity and the initial packing fraction of the host granular system. It is found that the anisotropy of penetration is larger in the monodisperse case than in the bidisperse one, for the same value of the packing fraction of the host medium. Compaction of initial host granular packing also increases anisotropy of penetration of guest grains. When a binary mixture of large and small guest grains is penetrated into the host granular medium, we observe size segregation patterns.
机译:我们通过实验研究了客体(渗滤)颗粒在二维中通过密集堆积的颗粒介质的蠕变渗透。通过图像分析研究了渗透过程中客体晶粒系统的演变。为了量化填料内部结构的变化,我们使用了Voronoi细分和一定的形状因子,该因子明确表明存在不同的底层子结构(域)。我们首先考虑有效重力加速度对晶粒向上渗透的影响。发现较高的有效重力增加了对向上渗透的抵抗力并增强了渗流晶粒系统中的结构组织。我们还将注意力集中在渗流颗粒的结构重排对某些参数(如多分散性和主体颗粒体系的初始堆积分数)的依赖性上。已经发现,对于相同的宿主介质填充率,单分散情况下的渗透各向异性大于双分散情况下的渗透各向异性。初始主体颗粒堆积的压实还增加了客粒渗透的各向异性。当大小颗粒客体的二元混合物渗入主体颗粒介质时,我们观察到尺寸偏析模式。

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