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Segregation of granular flow in the transverse plane of a rolling mode rotating drum

机译:滚动模式旋转滚筒横向平面中的粒状流动的分离

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This paper reports some observations on the behaviour of a segregated particle bed consisting of a mixture of small and large particles in the transverse plane of a rolling mode rotating drum. A non-invasive positron emission particle tracking (PEPT) technique was used to follow the trajectories of different sized particles. A two-dimensional mathematical model based on the Eulerian approach and the thin layer approximation was developed to simulate solids motion and concentration distribution of different sized particles. It is shown that the bed structure for a binary mixture is similar to that for mono-sized particles. i.e. two-region structure consisting of a relatively thin 'active' region and a 'passive' region near the drum wall where particles move as a rigid body. At low rotational speeds, the velocity difference between small and large particles of a binary system is negligible in both the active and passive regions. At relatively high rotational speeds, the velocity difference is small in the active region and negligible in the passive region. Radial occupancy data suggest that small particles tend to concentrate in the core region, whereas large particles tend to occupy the shell region, in good agreement with model predictions. Axial occupancy data reveal that the axial particle mobility increases with drum rotational speed, and the mutual diffusivity of small particles is higher than that of large particles. It is also shown that the turnover time ratio of small to large particles is almost independent of concentrations of small particles under the conditions of this work.
机译:本文报告了一些关于由滚动模式旋转鼓的横向平面中的小型和大颗粒的混合物组成的隔离颗粒床的行为的观察结果。使用非侵入式正电子发射颗粒跟踪(PEPT)技术遵循不同尺寸颗粒的轨迹。开发了一种基于欧拉方法和薄层近似的二维数学模型,以模拟不同尺寸粒子的固体运动和浓度分布。结果表明,二元混合物的床结构类似于单尺寸颗粒的床结构。即,由相对较薄的“有源”区域和在鼓壁附近的“被动”区域组成的两个区域结构,其中颗粒作为刚体移动。在低旋转速度下,在主动和被动区域中,二元系统的小型和大粒子之间的速度差异可忽略不计。在相对较高的旋转速度下,在主动区域中速度差小并且在被动区域中可以忽略不计。径向占用数据表明,小颗粒倾向于集中在核心区域中,而大颗粒倾向于占据壳区域,与模型预测良好。轴向占用数据揭示了轴向颗粒迁移率随鼓转速而增加,并且小颗粒的互扩散率高于大颗粒。还表明,在这项工作的条件下,小于大颗粒的周转时间比几乎与小颗粒的浓度无关。

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