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Simulations of configurational and granular temperatures of particles using DEM in roller conveyor

机译:使用DEM在滚筒输送机中模拟颗粒的构型和颗粒温度

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摘要

The configurational temperature and translational and rotational granular temperatures of particles are simulated by means of discrete element method (DEM) in the roller conveyor. Motion of particles in the roller conveyor is predicted with the change of rotation speed. The distributions of velocity and volume fraction of particles are obtained along bed height The translational and rotational granular temperatures are calculated from simulated instantaneous translational and angular velocities of particles. The configurational temperatures of particles are calculated from simulated instantaneous overlaps of particles. The simulated results show that the translational and rotational granular temperatures and configurational temperature of particles decrease with the increase of solids volume fractions. The predicted configurational temperatures are larger than that translational and rotational granular temperature, indicating that the rate of energy dissipation do contributes by sliding and rolling contact deformation of elastic particles in the roller conveyor. The lowest translational granular temperature means that the rotational mechanism dominates in the roller conveyor. The influence of rotation speeds of rollers on granular temperatures and configurational temperature is analyzed.
机译:颗粒的构型温度以及平移和旋转颗粒温度通过辊式输送机中的离散元方法(DEM)进行模拟。预测辊式输送机中颗粒的运动随转速的变化。沿床高获得颗粒的速度和体积分数分布。根据模拟的瞬时瞬时平移和角速度计算平移和旋转颗粒温度。颗粒的构型温度由模拟的颗粒瞬时重叠计算得出。模拟结果表明,随着固体体积分数的增加,颗粒的平移和旋转颗粒温度以及构型温度降低。预测的构型温度大于平移和旋转的颗粒温度,这表明能量耗散率的确由辊式输送机中弹性颗粒的滑动和滚动接触变形贡献。最低的平移颗粒温度意味着旋转机构在辊式输送机中占主导地位。分析了滚筒转速对颗粒温度和构型温度的影响。

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