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Axial segregation in spherical and cylindrical rotating tumblers

机译:球形和圆柱形旋转玻璃杯中的轴向偏析

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Monodisperse and bidisperse granular flows are studied in rotating tumblers using DEM. In spherical tumblers, flowing particles’ trajectories do not follow straight lines but are curved. At the same time particles near the surface drift toward the pole, inducing two global recirculation cells. Combined with radial segregation, drift and curvature compete to impose the axial segregation pattern: Small-Large-Small (SLS) or Large-Small-Large (LSL). Fill level, rotation speed and wall roughness influence drift and curvature, and modify the resulting segregation pattern. In cylindrical tumblers, equivalent recirculation cells occur next to the end walls. A second pair of recirculation cells with a weak drift in the opposite direction appears at the center for long enough tumblers. Unlike the sphere case, curvature and drift in the primary cells combine to push large particles toward the end walls, explaining why large particle bands appear at the end walls for axial segregation in cylinder.
机译:使用DEM在旋转制杯机中研究了单分散和双分散的颗粒流。在球形玻璃杯中,流动粒子的轨迹不遵循直线,而是弯曲的。同时,靠近表面的粒子向极点漂移,从而诱导了两个整体再循环池。与径向偏析相结合,漂移和曲率竞争强加了轴向偏析模式:大中小(SLS)或大中小(LSL)。填充水平,旋转速度和壁面粗糙度会影响漂移和曲率,并更改最终的偏析方式。在圆柱形的玻璃杯中,等效的再循环室靠近端壁。在相反方向上漂移较弱的第二对再循环室出现在中间,放置了足够长的翻转杯。与球形情况不同,原胞中的曲率和漂移共同将大颗粒推向端壁,这解释了为什么大颗粒带出现在端壁上以进行圆柱中的轴向偏析。

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