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Theoretical tool for optimum design of mixer, and visualization and quantification of mixing performance

机译:用于优化混合器设计以及可视化和量化混合性能的理论工具

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A theoretical tool for the optimum design of a mixer, and visualization and quantification of mixing performance, is presented. Visualization of the mixing performance is based on the kinematic theory of mixing rate proposed by Ottino, and it gives a map of the distribution of local mixing efficiency which illustrates the local mixing information throughout the flow domains. As application examples of the visualization technique, the mixing mechanisms of Couette flow and circulating flow are illustrated and explained, then the geometry optimization of a common pin mixing section used for screw extruders is carried out. The quantification of mixing performance is obtained by tracking and accumulating the local mixing histories of a number of particles to discriminate the mixing ability among several mixers with similar configurations. The influence of the height of a pin in a cavity on mixing is investigated using this approach. The results show that with an increase in the height of the pins, the mixing ability also increases, However, when h changes from 3/4H to 9/10H, an inflection occurs. The results also show that only if these particles are evenly distributed throughout the now domains will the calculated values of mixing ability in different initial locations start to agree. This tool appears to be generally applicable to mixers but requires knowledge of the velocity field. [References: 21]
机译:提出了一种用于搅拌机最佳设计以及搅拌性能的可视化和量化的理论工具。混合性能的可视化基于Ottino提出的混合速率运动学理论,它给出了局部混合效率分布图,该图说明了整个流域中的局部混合信息。作为可视化技术的应用实例,对库埃特流和循环流的混合机理进行了说明和解释,然后对螺杆挤出机常用的针混合段的几何形状进行了优化。混合性能的量化是通过跟踪和累积许多粒子的局部混合历史来区分几个具有类似配置的混合器之间的混合能力而获得的。使用这种方法研究了销钉在空腔中的高度对混合的影响。结果表明,随着销的高度增加,混合能力也增加,但是,当h从3 / 4H变为9 / 10H时,发生弯曲。结果还表明,只有这些颗粒均匀分布在整个当前域中,混合能力在不同初始位置的计算值才会开始一致。该工具似乎通常适用于混合器,但需要了解速度场。 [参考:21]

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