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首页> 外文期刊>Journal of visualization >Resolving the angular velocity of two-dimensional particle interactions induced within a rotary tumbler
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Resolving the angular velocity of two-dimensional particle interactions induced within a rotary tumbler

机译:解决旋转翻转杯中二维粒子相互作用的角速度

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A horizontally oriented cylindrical tumbler, filled at variable depth with a monoplane of uniform cylindrical media, was rotated at various constant speeds. Resultant motion was captured using a high-speed camera. The images were post-processed with particle tracking velocimetry and image correlation algorithms in order to estimate each particle's translational and rotational velocity. The particle interactions were then characterized into distance groups based on non-dimensional flow characteristics, where similarities were found with transitions between slipo-slip and rotationo-rotation conditions. The results of the particle interactions show rotational chains as analogous to translational force chains. The interactions demonstrated that occurrences of no-slip, no-rotation behavior correspond to areas of confined translational motion. No-slip rotation behavior was lower in areas of high interaction and higher in developing flow areas.
机译:以各种恒定速度旋转水平可变的圆柱状玻璃杯,该圆柱状的玻璃杯以可变深度填充有均匀的圆柱状介质的单平面。使用高速摄像机捕获了最终的运动。使用粒子跟踪测速仪和图像相关算法对图像进行后处理,以估计每个粒子的平移和旋转速度。然后根据无量纲流动特征将粒子相互作用分为多个距离组,其中在滑动/不滑动和旋转/不旋转条件之间的转换中发现了相似性。粒子相互作用的结果表明旋转链类似于平移力链。相互作用表明,无滑动,无旋转行为的发生与有限的平移运动区域相对应。在高相互作用区域,无滑动旋转行为较低,在流动区域中,滑动行为较高。

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