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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Simulation of particle movement in a pan coating device using discrete element modeling and its comparison with video-imaging experiments
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Simulation of particle movement in a pan coating device using discrete element modeling and its comparison with video-imaging experiments

机译:使用离散元素建模模拟锅包衣设备中的粒子运动并将其与视频成像实验进行比较

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A MATLAB~(TM)-based DEM (discrete element method) code was developed to study the particle motion in a pan coating device.The code was developed as a stand-alone program and provides simulation,visualization (GUI interface),and post-processing statistical analysis of particle movement.Results of DEM simulations are compared with those obtained from video-imaging experiments for 9 mm spherical polystyrene balls in a 58 cm diameter pan.The parameters compared are dynamic angle of repose and particle velocities in the x- (axial) and y- (parallel to cascading layer) directions within the spray zone in the cascading layer.The effects of pan loading and pan speed (6,9,12 rpm) on particle motion are compared and discussed.Good agreement was obtained between the DEM simulation and experimental results.The dynamic angle was found to increase with increasing pan speed and pan loading.The average cascading velocity was found to increase linearly with pan speed for both DEM and experiments.The velocity distributions both in the x- and y-direction were compared from simulation and experiments and found to be in good agreement.Velocity profiles along the entire top cascading layer of particles were also obtained using DEM.The particles in the cascading layer were found to reach their maximum velocity at positions close to the mid-point of the cascading surface.Comparison of simulated velocity profiles showed good agreement with published scaling laws for rotating drums,and a new correlation for scaling with respect to the pan loading is proposed.
机译:开发了一个基于MATLAB〜(TM)的DEM(离散元素方法)代码来研究锅包衣设备中的粒子运动。该代码被开发为独立程序,并提供了仿真,可视化(GUI界面)和后期处理功能。粒子运动的处理统计分析。将DEM模拟的结果与通过在58厘米直径锅中的9毫米球形聚苯乙烯球的视频成像实验获得的结果进行比较。比较的参数是x-轴上的静止角和粒子速度在级联层喷雾区域内的(轴向)和y-(平行于级联层)方向。比较并讨论了锅载荷和锅速度(6,9,12 rpm)对粒子运动的影响,获得了良好的一致性在DEM仿真和实验结果之间发现动态角随平移速度和平移载荷的增加而增加,对于DEM和实验而言,平均级联速度随平移速度线性增加。通过模拟和实验比较了x和y方向上的球度分布,发现它们之间具有良好的一致性。使用DEM还获得了整个粒子的整个顶部级联层的速度分布图。模拟速度分布图的比较与已公开的旋转鼓的缩放定律有很好的一致性,并提出了与锅负载有关的缩放比例的新的相关性。

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