首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >A Comparative Assessment of Spalart-Shur Rotation/Curvature Correction in RANS Simulations in a Centrifugal Pump Impeller
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A Comparative Assessment of Spalart-Shur Rotation/Curvature Correction in RANS Simulations in a Centrifugal Pump Impeller

机译:离心泵叶轮RANS模拟中Spalart-Shur旋转/曲率校正的比较评估

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摘要

RANS simulation is widely used in the flow prediction of centrifugal pumps. Influenced by impeller rotation and streamline curvature, the eddy viscosity models with turbulence isotropy assumption are not accurate enough. In this study, Spalart-Shur rotation/curvature correction was applied on the SSTk-ωturbulence model. The comparative assessment of the correction was proceeded in the simulations of a centrifugal pump impeller. CFD results were compared with existing PIV and LDV data under the design and low flow rate off-design conditions. Results show the improvements of the simulation especially in the situation that turbulence strongly produced due to undesirable flow structures. Under the design condition, more reasonable turbulence kinetic energy contour was captured after correction. Under the low flow rate off-design condition, the prediction of turbulence kinetic energy and velocity distributions became much more accurate when using the corrected model. So, the rotation/curvature correction was proved effective in this study. And, it is also proved acceptable and recommended to use in the engineering simulations of centrifugal pump impellers.
机译:RANS模拟被广泛用于离心泵的流量预测。受叶轮旋转和流线曲率影响,具有湍流各向同性假设的涡流粘度模型不够精确。在这项研究中,将Spalart-Shur旋转/曲率校正应用于SSTk-ω湍流模型。在离心泵叶轮的模拟中进行了校正的比较评估。在设计和低流量非设计条件下,将CFD结果与现有的PIV和LDV数据进行了比较。结果显示了仿真的改进,尤其是在由于不期望的流动结构而强烈产生湍流的情况下。在设计条件下,校正后获得了更合理的湍动能轮廓。在低流量非设计条件下,使用校正模型时,湍流动能和速度分布的预测变得更加准确。因此,旋转/曲率校正在本研究中被证明是有效的。并且,它也被证明是可以接受的,并建议在离心泵叶轮的工程仿真中使用。

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