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Effect of Rotation and Revolution on Performance of Blade-Free Planetary Mixer

机译:旋转和公转对无叶片行星式搅拌机性能的影响

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In this study, flow structures and mixing performance in a blade-free planetary mixer, which combines rotation and revolution motions inside a cylindrical vessel, are numerically investigated. Flow fields in the mixer vessel are simulated in a single rotating reference frame with various revolution speeds and a fixed rotation speed. The mixing process is investigated by a Lagrangian particle tracking method and the mixing performance is evaluated based on particle concentration. The results of the numerical simulations show that a vortical flow with an axis inclined with respect to the rotation axis of the vessel is generated by the combined influence of the rotation and revolution motions. The flow structure and vortical flow intensity vary as a function of the precession rate, which is the ratio of the revolution speed to rotation speed. The mixing performance of the blade-free planetary mixer is found to be maximum at aspecific precession rate.
机译:在这项研究中,数值研究了无叶片行星混合器中的流动结构和混合性能,该混合器结合了圆柱形容器内的旋转和旋转运动。在具有各种转速和固定转速的单个旋转参考系中模拟混合器容器中的流场。通过拉格朗日粒子跟踪方法研究混合过程,并基于粒子浓度评估混合性能。数值模拟的结果表明,通过旋转和公转运动的组合影响,产生了具有相对于容器的旋转轴线倾斜的轴线的涡流。流动结构和涡流强度随进动率的变化而变化,进动率是转速与转速之比。发现无叶片行星式混合器的混合性能在特定进动速率下达到最高。

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