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Mixing Flow Characteristics in a Vessel Agitated by the Screw Impeller With a Draught Tube

机译:带引流管的螺旋叶轮搅拌的容器内的混合流特性

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The circulating flow in a vessel induced by rotating impellers has drawn a lot of interests in industries for mixing different fluids. It used to rely on experiments to correlate the performance with system parameters because of the theoretical difficulty to analyze such a complex flow. The recent development of computational methods makes it possible to obtain the entire flow field via solving the Navier-Stokes equations. In this study, a computational procedure, based on multiple frames of reference and unstructured grid methodology, was used to investigate the flow in a vessel stirred by a screw impeller rotating in a draught tube. The performance of the mixer was characterized by circulation number, power number, and nondimensionalized mixing energy. The effects on these dimensionless parameters were examined by varying the settings of tank diameter, shaft diameter, screw pitch, and the clearance between the impeller and the draught tube. Also investigated was the flow system without the draught tube. The flow mechanisms to cause these effects were delineated in detail.
机译:由旋转的叶轮引起的容器中的循环流已经引起了用于混合不同流体的工业的许多兴趣。由于理论上难以分析这种复杂的流程,因此过去常常依靠实验将性能与系统参数相关联。计算方法的最新发展使得可以通过求解Navier-Stokes方程来获得整个流场。在这项研究中,基于多个参考框架和非结构化网格方法的计算程序被用于研究在导流管中旋转的螺旋叶轮搅拌的容器中的流量。混合器的性能由循环数,功率数和无量纲混合能表征。通过更改水箱直径,轴直径,螺杆螺距以及叶轮与引流管之间的间隙的设置,检查了对这些无量纲参数的影响。还研究了没有引流管的流动系统。详细描述了导致这些影响的流动机制。

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