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Numerical Study on Rotating Characteristics of Unsteady Flow Inner Pump-turbine in Pump Mode

机译:泵模式下非定常流内水轮机旋转特性的数值研究

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In order to investigate the formation of the rotating stall in diffuser of pump-turbine in pump mode, the unsteady flow with radial rotating characteristics before the occurrence of rotating stall are investigated by detached eddy simulation. The results indicate that the unsteady flow patterns which occur in the return channel both at full and part load conditions contain two periodical disturbances with frequencies St≈0.042 and St≈0.085, and the Strouhal number St is frequency normalized by blade passing frequency of impeller. These periodical disturbances not only influence the pressure field but also cause rotating characteristics in diffuser channels. One is composed of 4 cells propagating at 0.073 times of impeller rotating speed. The other one is made up of 3 rotating cells with 0.2 times of backward impeller rotating speed. Meanwhile, there are two radial rotating characteristics which contribute the spectra peak at blade pass frequency in diffuser. One is at the inlet of diffuser propagating at impeller rotating speed with 7 cells, and the other one contains 4 cells with about 1.75 backward impeller rotating speed.
机译:为了研究泵模式下水轮机扩压器中旋转失速的形成,通过分离涡模拟研究了旋转失速发生前具有径向旋转特性的非定常流动。结果表明,在满负荷和部分负荷条件下,回流通道中出现的非恒定流型均包含两个周期扰动,频率分别为St≈0.042和St≈0.085,Strouhal数St是通过叶轮叶片通过频率归一化的频率。这些周期性的扰动不仅影响压力场,而且导致扩散器通道的旋转特性。一个由4个小室组成,它们以叶轮转速的0.073倍传播。另一个由3个旋转单元组成,其反向叶轮旋转速度为0.2倍。同时,有两个径向旋转特性在扩压器的叶片通过频率处贡献了光谱峰值。一个在扩散器的进口处以7个单元的叶轮旋转速度传播,另一个在4个单元中以大约1.75的反向叶轮旋转速度传播。

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