论文标题
在侧向摇动多曲奇通道中颗粒混合物的轴向分离
Axial segregation of granular mixtures in laterally shaken multi-trapezium channels
论文作者
论文摘要
我们研究了由棘轮状的侧壁形成的横向摇动水平通道中二进制混合物的轴向分离,当不轴向偏移时,它们是串联的梯形。观察到在这种通道中摇晃的谷物混合物在两个阶段分离:它们首先迅速分为两个垂直排列的层,然后,这些层沿相反的方向轴向移动,从而隔离了这两个物种。在这里,我们进行实验,以研究各种参数的隔离过程的影响:晶粒的尺寸比,摇动频率和通道的几何形状。我们发现(a)隔离质量取决于摇动频率,并且可以找到独特的最佳频率以进行隔离,(b)最佳频率降低,大小比的增加,(c)当侧壁更倾向于彼此,并且(d)隔离时(d)隔离时,隔离通常会更差。然后,我们对隔离过程进行离散元件模拟,以将实验观察结果与Bhateja等人的界面压力梯度机理联系起来。 [Bhateja,A.,I。Sharma和J. K. Singh 2017。液体2,052301]。我们证明,隔离质量与缩放的界面压力梯度很好地相关,这是在隔离过程的第一阶段形成的层之间的界面压力梯度的比率,与锥形侧壁提供的轴向体力。
We investigate axial segregation of binary mixtures in a laterally shaken horizontal channel formed by ratchet-like sidewalls that appear as concatenated trapeziums when not offset axially. Grain mixtures shaken in such a channel are observed to segregate in two stages: they first separate rapidly into two vertically arranged layers and, then, these layers move axially in opposite directions, segregating the two species. Here, we conduct experiments to study the influence on the segregation process of various parameters: the size ratio of grains, the shaking frequency and the channel's geometry. We find that (a) segregation quality depends upon shaking frequency and it is possible to find a unique optimal frequency for segregation, (b) the optimal frequency lowers with increase in size ratio, (c) segregation is generally poorer when the sidewalls are more inclined to each other, and (d) segregation is improved when the sidewalls are axially offset from each other. We then carry out discrete element simulations of the segregation process in order to relate the experimental observations to the interfacial pressure gradient mechanism of Bhateja et al. [Bhateja, A., I. Sharma and J. K. Singh 2017. Segregation physics of a macroscale granular ratchet, Phys. Rev. Fluids 2, 052301]. We demonstrate that the segregation quality correlates well with the scaled interfacial pressure gradient, which is the ratio of the interfacial pressure gradient between the layers, formed in the first stage of the segregation process, to the axial body force provided by the tapered sidewalls.