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Application of Hybrid RANS/LES turbulence models in rotor-stator fluid machinery: A comparative study

机译:RANS / LES混合湍流模型在转子-定子流体机械中的应用:比较研究

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Purpose - This paper aims to improve performance prediction and to acquire more detailed flow structures so as to analyze the turbulence in complex rotor-stator flow. Design/methodology/approach - Hydraulic retarder as typical fluid machinery was numerically investigated by using hybrid Reynolds-averaged Navier-Stokes (RANS)/large eddy simulation (LES) models CIDDES Algebraic Wall-Modeled Large Eddy Simulation (LES) (WMLES) S-X and dynamic hybrid RANS/ LES (DHRL). The prediction results were compared and analyzed with a RANS model shear stress transport (SST) k-omega which was a recommended choice in engineering. Findings - The numerical results were verified by experiment and indicated that the predicted values for three hybrid turbulence models were more accurate. Then, the transient flow field was further analyzed visually in terms of turbulence statistics, Reynolds number, pressure-streamline, vortex structure and eddy viscosity ratio. The results indicated that HRL approaches could capture unsteady flow phenomena. Practical implications - This study achieves both in performance prediction improvement and better flow mechanism understanding. The computational fluid dynamics (CFD) could be used instead of flow visualization to a certain extent. The improved CFD method, the fine computational grid and the reasonable simulation settings jointly enhance the application of CFD in the rotor-stator flow. Originality/value - The improvement was quite encouraging compared with the reported literatures, contributing to the CFD playing a more important role in the flow machinery. DHRL provided the detailed explanation of flow transport between rotor and stator, which was not reported before. Through it, the flow mechanismcan be better understood.
机译:目的-本文旨在改进性能预测并获得更详细的流动结构,以便分析复杂的定子-定子流动中的湍流。设计/方法/方法-通过使用混合雷诺平均Navier-Stokes(RANS)/大涡模拟(LES)模型CIDDES代数墙模型大涡模拟(LES)(WMLES)SX对作为典型流体机械的液压减速器进行了数值研究动态混合RANS / LES(DHRL)。将预测结果与RANS模型剪切应力传递(SST)k-ω进行比较和分析,这是工程上的推荐选择。发现-数值结果通过实验验证,并表明三种混合湍流模型的预测值更准确。然后,从湍流统计,雷诺数,压力流线,涡流结构和涡流粘度比等方面,对瞬态流场进行了可视化分析。结果表明,HRL方法可以捕获非稳态流动现象。实际意义-这项研究在改进性能预测和更好地了解流动机理方面都达到了。在一定程度上可以使用计算流体动力学(CFD)代替流动可视化。改进的CFD方法,精细的计算网格和合理的仿真设置共同增强了CFD在转子-定子流中的应用。独创性/价值-与报道的文献相比,改进令人鼓舞,这有助于CFD在流动机械中发挥更重要的作用。 DHRL提供了转子和定子之间流动的详细解释,以前没有报道过。通过它,可以更好地理解流动机理。

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