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Power Consumption of a Rushton Turbine Mixing Viscous Newtonian and Shear-thinning Fluids: Comparison between Experimental and Numerical Results

机译:Rushton涡轮混合牛顿和剪切稀化流体的功率消耗:实验和数值结果的比较

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A fluid dynamics software package (Fluent) was used to calculate the local velocities in a standard tank fitted with a Rushton turbine. We defined the local average shear rate γ-bar as a user variable. The power was computed from the values of γ-bar with a user subroutine. The influence of the rheological behaviour of the fluid was investigated: the shape factor K_p for a Newtonian fluid, and in the case of a shear-thinning fluid Metzner and Otto's concept was used to determine the effective shear rate γ_e· γ_e verified the classical relation: γ_e = K_s·N. The influence of position and stirring speed on the local average shear rate γ-bar was also studied. As expected, higher values were obtained near the turbine. At a fixed position, γ-bar was found to be proportional to the stirring speed N. The power values obtained by numerical procedures were compared to experimental results: the Fluent software yielded results in excellent agreement with experimental findings. The calculation of local parameters such as the local average shear rate γ-bar as well as global characteristic shape factors demonstrate the validity of Fluent software in the laminar range.
机译:使用流体动力学软件包(Fluent)来计算装有Rushton涡轮的标准储罐中的局部速度。我们将局部平均剪切率γ-bar定义为用户变量。使用用户子例程根据γ-bar的值计算功效。研究了流体的流变行为的影响:牛顿流体的形状因子K_p,在剪切稀化流体的情况下,使用了Metzner和Otto的概念确定有效剪切率γ_e·γ_e验证了经典关系:γ_e= K_s·N。还研究了位置和搅拌速度对局部平均剪切速率γ-bar的影响。如预期的那样,在涡轮机附近获得了更高的值。在固定位置发现γ棒与搅拌速度N成正比。将通过数值程序获得的功率值与实验结果进行了比较:Fluent软件得出的结果与实验结果非常吻合。局部参数(例如局部平均剪切速率γ-bar以及整体特征形状因子)的计算证明了Fluent软件在层流范围内的有效性。

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