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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Flow characteristics prediction in pump mode of a pump turbine using large eddy simulation
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Flow characteristics prediction in pump mode of a pump turbine using large eddy simulation

机译:大型涡流模拟泵涡轮机泵模式的流动特性预测

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摘要

To obtain more accurate flow characteristics of pump turbines, the method of large eddy simulation with wall-adapting local eddy viscosity model is applied in simulating several operating points in the pump mode. Firstly, based on the experimental validation, the method of large eddy simulation could better predict the external performance and internal flow characteristics in a pump turbine in the pump mode compared with the method of Reynolds-averaged Navier-Stokes with two-equation turbulence model shear stress transport k-. Then, flow characteristics under 1.00Q(BEP) (best efficiency point), 0.91Q(BEP), 0.88Q(BEP), and 0.85Q(BEP) operating points are investigated to find out the causes of the head drop in the energy-discharge curve through large eddy simulation. The detailed analysis reveals that the head drop at the point 0.85Q(BEP) is related to the recirculation flow at the runner inlet. Finally, unsteady studies confirm that vortex movement at the runner inlet lead to the variation of the amplitudes and directions of the velocity, which generates the rotation of the separation vortices in the runner and stay vane channels.
机译:为了获得泵涡轮机的更精确的流动特性,应用了墙壁调整局部涡粘度模型的大型涡模拟方法,用于在泵模式下模拟若干操作点。首先,基于实验验证,与具有双等式湍流模型剪切的Reynolds平均的Navier-Stokes的方法相比,大型涡模拟的方法可以更好地预测泵模式中的泵模式中的外部性能和内部流量特性压力运输k-。然后,对1.00Q(BEP)(最佳效率点),0.91Q(BEP),0.88Q(BEP)和0.85Q(BEP)操作点的流动特性进行了调查,以找出头部下降能量的原因 - 通过大涡模拟曲线曲线。详细分析表明,点0.85Q(BEP)的头部下降与转轮入口处的再循环流动有关。最后,不稳定的研究确认了转轮入口处的涡流运动导致速度的幅度和方向的变化,这产生了在转轮和保持叶片通道中的分离涡流的旋转。

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