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Agitation requirements for complete solid suspension in an unbaffled agitated vessel with an unsteady forward-reverse rotating impeller

机译:在带有不稳定的正反旋转叶轮的无挡板搅拌容器中完全固体悬浮液的搅拌要求

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BACKGROUND: To develop a new type of solid-liquid apparatus, we have proposed the application of an agitation system with an impeller whose rotation alternates direction unsteadily, i.e., a forward-reverse rotating impeller. For an unbaffled agitated vessel fitted with this system, the suspension of solid particles in a liquid was studied using a disk turbine impeller with six flat blades. RESULTS: The effects of the solid-liquid conditions and geometrical conditions of the apparatus on the minimum rotation rate and the corresponding impeller power consumption were evaluated experimentally for a completely suspended solid. The power consumption for a just suspended solid with this type of vessel was comparable with that for a baffled vessel with a unidirectionally rotating impeller, taking the liquid flow along the vessel bottom into consideration. CONCLUSION: Empirical relationships to predict the parameters of agitation requirements were found. A comparative investigation demonstrated the usefulness of the forward-reverse rotation mode of the impeller for off-bottom suspension of solid particles. (c) 2007 Society of Chemical Industry.
机译:背景技术:为了开发一种新型的固液装置,我们提出了一种带有叶轮的搅拌系统的应用,该叶轮的旋转方向是不稳定的,即正反旋转的叶轮。对于装有该系统的无挡板搅拌容器,使用带有六个扁平叶片的圆盘涡轮叶轮研究了液体中的固体颗粒悬浮液。结果:对于完全悬浮的固体,通过实验评估了装置的固液条件和几何条件对最小转速和相应叶轮功率消耗的影响。考虑到沿容器底部的液体流动,使用这种容器的刚悬浮固体的功率消耗可与带有单向旋转叶轮的带挡板的容器的功率消耗相比。结论:发现了预测搅拌需求参数的经验关系。一项比较研究表明,叶轮的正反转模式对于固体颗粒的底部悬浮来说是有用的。 (c)2007年化学工业协会。

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