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Simulation study of the effect of wall roughness on the dynamics of granular flows in rotating semicylindrical chutes

机译:壁面粗糙度对旋转半圆柱斜槽中颗粒流动动力学影响的模拟研究

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摘要

A discrete element model (DEM) is used to investigate the behavior of spherical particles flowing down a semicylindrical rotating chute. The DEM simulations are validated by comparing with particle tracking velocimetry results of spherical glass particles flowing through a smooth semicylindrical chute at different rotation rates of the chute. The DEM model predictions agree well with experimental results of surface velocity and particle bed height evolution. The validated DEM model is used to investigate the influence of chute roughness on the flow behavior of monodisperse granular particles in rotating chutes. To emulate different base roughnesses, a rough base is constructed out of a square close packing of fixed spherical particles with a diameter equal to, smaller, or larger than the flowing particles. Finally, the DEM model is used to study segregation in a binary density mixture for different degrees of roughness of the chute. (c) 2015 American Institute of Chemical Engineers AIChE J, 61: 2117-2135, 2015
机译:离散元素模型(DEM)用于研究球形颗粒沿半圆柱形旋转斜槽流下的行为。 DEM模拟通过与在不同的斜槽旋转速度下流经光滑的半圆柱形斜槽的球形玻璃颗粒的颗粒跟踪测速结果进行比较来验证。 DEM模型的预测与表面速度和颗粒床高度演化的实验结果非常吻合。验证的DEM模型用于研究溜槽粗糙度对旋转溜槽中单分散颗粒流动特性的影响。为了模拟不同的基部粗糙度,可以使用直径等于,小于或大于流动粒子的固定球形颗粒的方形密堆积构造粗糙基部。最后,DEM模型用于研究不同密度的溜槽在二元密度混合物中的偏析。 (c)2015年美国化学工程师学会AIChE J,61:2117-2135,2015

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