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首页> 外文期刊>AIChE Journal >Investigating the Dynamics of Cylindrical Particles in a Rotating Drum Using Multiple Radioactive Particle Tracking
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Investigating the Dynamics of Cylindrical Particles in a Rotating Drum Using Multiple Radioactive Particle Tracking

机译:使用多个放射性粒子跟踪研究旋转鼓中圆柱形粒子的动力学

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摘要

The behavior of granular flows inside rotating drums is an ongoing area of research. Only a few studies have investigated non-spherical particles despite the fact that particle shape is known to have a significant impact on flow behavior. In addition, the experimental techniques limit the interpretation of the results of these studies. In this work, we compared the flow behavior of cylindrical and spherical particles using the multiple radioactive particle tracking technique to capture the positions and orientations of cylindrical particles simultaneously. We analyzed two important components of the transverse flow dynamics, that is, the boundary between the active and passive layers, and the velocity profile on the free surface. For the cylindrical particles, two general models are proposed to calculate the velocity profiles on the free surface and the effective particle sizes in the active and passive layers. (C) 2016 American Institute of Chemical Engineers
机译:旋转鼓内部的颗粒流行为是一个持续的研究领域。尽管已知颗粒形状对流动行为有重大影响,但只有少数研究研究了非球形颗粒。另外,实验技术限制了对这些研究结果的解释。在这项工作中,我们使用多重放射性粒子跟踪技术比较了圆柱状和球形粒子的流动行为,以同时捕获圆柱状粒子的位置和方向。我们分析了横向流动动力学的两个重要组成部分,即主动层和被动层之间的边界以及自由表面上的速度分布。对于圆柱形颗粒,提出了两个通用模型来计算自由表面上的速度分布以及主动层和被动层中的有效粒径。 (C)2016美国化学工程师学会

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