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Particle Collision Frequencies with Impeller and Wall in a Stirred Tank

机译:颗粒碰撞频率与叶轮和墙壁在搅拌的罐中

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摘要

Paticle-impeller and particle-well collision sounds in a stirred tank were shown to be distinguishable by wavelent analysis.The influence on the collision frequencies of operational conditions such as rotational speed,particle size and concentration,was examined based on a method developed in this study.once collisions became detactable at the respective critical rotational speed,termed the critical particle collision speed,the frequency of impeller collisions was found to increase linearly with impeller speed while that of wall collisions increased exponentially.Both collisions frequencies increase a with particle size in the examined range,but particle concentration had little effect on the frequencies.In addition,the intervals between collisions with the impeller were found to show a long-normal distribution independently of experimental conditions,while those with the wall showed a decay distribution,since extremely short intervals were not observed.
机译:显示搅拌罐中的薄膜叶轮和颗粒孔碰撞声音通过驱动器分析可区分。基于该方法检查了对旋转速度,粒度和浓度的操作条件的碰撞频率的影响 研究碰撞变得难以处于各自的临界转速,称为临界颗粒碰撞速度,发现叶轮碰撞的频率随着叶轮速度线性而增加,而壁碰撞的逐步增加。碰撞频率增加粒度 检查范围,但颗粒浓度对频率几乎没有影响。此外,发现与叶轮之间的碰撞之间的间隔独立于实验条件表现出长正态分布,而具有墙的那些呈现衰减分布,以来 没有观察到短暂的间隔。

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