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CFD PERFORMANCE ANALYSIS OF A STIRRED TANK FLOWMAKER

机译:搅拌罐流动器的CFD性能分析

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摘要

In the present work, the mean flow field in a stirred tank equipped with a commercially available Grundfos AFG.40.230.35 flowmaker is investigated using both steady-state and transient CFD simulation, in order to provide information on the interaction between flow, propeller and wall proximity as well as information on aspects of using numerical tools for this type of fluid machinery. The simulations, carried out with Ansys CFX 10, used a multiple frame of reference (MFR) approach to include a full representation of the flowmaker blade and motor geometry, in order to fully include the effects of the blade shape and variable pitch for both stationary and transient simulations. The influence of grid type, turbulence model and steady vs transient setup on solution quality has been investigated, and the steady state calculations are compared with LDA measurements. The results show that for the steady state calculations, the choice of grid type is decisive in terms of quality of results, and that the transient simulations using the SST turbulence model yields a superior prediction of flow characteristics; however, the computational expenses for transient simulation is around 10 times than steady-state simulation.
机译:在目前的工作中,使用稳态和瞬态CFD仿真研究了装有市售Grundfos AFG.40.230.35流量调节器的搅拌釜中的平均流场,以便提供有关流量,螺旋桨和水流之间相互作用的信息。壁的邻近性,以及有关在此类流体机械中使用数字工具的方面的信息。使用Ansys CFX 10进行的模拟使用多参考框架(MFR)方法来包括对造流器叶片和电动机几何形状的完整表示,以便完全包括叶片形状和可变螺距对固定装置的影响和瞬态仿真。研究了网格类型,湍流模型以及稳态与瞬态设置对解决方案质量的影响,并将稳态计算与LDA测量进行了比较。结果表明,对于稳态计算,网格类型的选择对结果的质量具有决定性作用,并且使用SST湍流模型进行的瞬态模拟可以对流动特性进行出色的预测;但是,瞬态仿真的计算费用大约是稳态仿真的10倍。

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