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Effect of Impeller Speed Perturbation in a Rushton Impeller Stirred Tank

机译:Rushton叶轮搅拌槽中叶轮速度扰动的影响

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摘要

Flow inside an unbaffled Rushton-impeller stirred tank reactor (STR) is perturbed using a time dependent impeller rotational speed. Large eddy simulation (LES) revealed that the perturbation increased the width of impeller jet compared to the constant rotational speed cases. The turbulent fluctuations were also observed to be enhanced in the perturbed flow and showed higher values of production and convection of turbulent kinetic energy. Changes in the mean flow-field during the perturbation cycle are investigated. The trailing edge vortices were observed to propagate farther both in the radial and azimuthal direction in the perturbed case. Production of turbulent kinetic energy is observed to be related to the breakup of the impeller jet in the perturbed case. Dissipation of turbulent kinetic energy is augmented due to the perturbation ensuring a better mixing at the molecular scale.
机译:使用与时间有关的叶轮转速来扰乱无挡板的Rushton-叶轮搅拌釜反应器(STR)内的流动。大涡模拟(LES)表明,与恒定转速情况相比,扰动增加了叶轮射流的宽度。还观察到湍流波动在扰动流中得到增强,并且显示出更高的产值和湍动能对流。研究了扰动周期中平均流场的变化。在扰动情况下,观察到后缘涡流在径向和方位角上都传播得更远。观察到湍动能的产生与在扰动情况下叶轮射流的破裂有关。由于扰动增加了湍动能的耗散,从而确保了在分子尺度上更好的混合。

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