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EFFECTS OF STATOR CONFIGURATIONS ON THE FLOTATION PERFORMANCE OF INDUCED GAS FLOTATION MACHINE

机译:定子构型对感应式气浮机浮选性能的影响

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Induced Gas Flotation (IGF) vessel is used for water treatment of plant industries such as oil sand and chemical plants. An understanding of the interaction between the stator and rotor is essential for the design of IGF with consideration of geometric blade configuration is essential for the design of IGF. In this study, the effect of the number of stator blades on flotation performance was numerically investigated using the commercial code, ANSYS CFX ver. 16.1. The two-phase (water and air) flow characteristics in the forced-air mechanically stirred Dorr-Oliver flotation cell were considered. The flotation performance was evaluated on the basis of the correlations among the number of stator blades (8, 12, 16, 20, 24), power number and void fraction. By comparing the result of each case, the newly designed model with 12 stator blades which had the highest flotation performance was derived.
机译:诱导的气浮(IGF)容器用于植物产业的水处理,如油砂和化学植物。理解定子和转子之间的相互作用对于IGF的设计是必不可少的,考虑到几何刀片配置对于IGF的设计至关重要。在这项研究中,使用商业代码,ANSYS CFX ver进行数值研究了定子叶片数对浮选性能的影响。 16.1。考虑了强制空气机械搅拌的Dorr-Oliver浮选细胞中的两相(水和空气)流动特性。基于定子叶片数(8,12,16,20,24),功率数和空隙部分之间的相关性评估浮选性能。通过比较每种情况的结果,导出了具有最高浮选性能的12个定子叶片的新设计模型。

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