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Study of blades inclination influence of gate impeller with a non-Newtonian fluid of Bingham

机译:宾叶与宾汉非牛顿液体叶片倾斜影响的研究

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摘要

A large number of chemical operations, biochemical or petrochemical industry is very depending on the rheological fluids nature. In this work, we study the case of highly viscous of viscoplastic fluids in a classical system of agitation: a cylindrical tank with plate bottom without obstacles agitated by gate impeller agitator. We are interested to the laminar, incompressible and isothermal flows. We devote to a numerical approach carried out using an industrial code CFD Fluent 6.3.26 based on the method of finites volumes discretization of Navier - Stokes equations formulated in variables (U.V.P). The threshold of flow related to the viscoplastic behavior is modeled by a theoretical law of Bingham. The results obtained are used to compare between the five configurations suggested of power consumption. We study the influence of inertia by the variation of Reynolds number.
机译:大量的化学操作,生化或石化行业取决于流变液性质。在这项工作中,我们研究了一种古典搅拌系统中粘胶流体高度粘性的情况:栅极底部的圆柱形罐,闸门叶轮搅拌器搅拌。我们对层流,不可压缩和等温流感兴趣。我们投入到使用工业代码CFD FLUENT 6.3.26的数值方法,该方法基于在变量(U.v.P)中制定的Navier - Stokes方程的限制方法的限制方法。与粘液行为有关的流动阈值是由宾厄姆的理论法建模的。所获得的结果用于比较功耗所示的五种配置。我们通过雷诺数的变异来研究惯性的影响。

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