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Numerical Flow Simulation in Turbine Mode of Counter-Rotating Type Pumping Unit to Cooperate with Wind Turbine

机译:逆转式抽油机与风力机配合工作时涡轮模式的数值模拟

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摘要

This serial research has proposed the hybrid power system combined the wind power unit with the counter-rotating type pump-turbine unit, to provide the constant output for the grid system, even at the suddenly fluctuating/turbulent wind circumstance. In this paper, the tandem impellers prepared for the counter-rotating type pumping unit were operated at the turbine mode, and the performances and the flow conditions were investigated numerically with accompanying the experimental results. Even though providing the pumping unit for the turbine mode, the maximum hydraulic efficiency is close to one of the counter-rotating type hydroelectric unit designed exclusively for the turbine mode. Besides, the runners/impellers of the unit work evidently so as to coincide the angular momentum change through the front runners/impellers with that through the rear runners/impellers, namely to take the axial flow at not only the inlet but also the outlet, without the guide vanes. From these results, it can be concluded that this type unit is effective to work at not only the pumping but also the turbine modes.
机译:这项系列研究提出了一种混合动力系统,该系统将风力发电单元与反向旋转型水轮机单元结合在一起,即使在风速突然波动/湍流的情况下,也能为电网系统提供恒定的输出。在本文中,为反向旋转式抽油机准备的串联叶轮在涡轮机模式下运行,并结合实验结果对性能和流动条件进行了数值研究。即使为涡轮机模式提供泵送单元,最大液压效率也接近专门为涡轮机模式设计的反向旋转式水力发电单元之一。此外,该单元的叶轮/叶轮明显工作,以使通过前叶轮/叶轮的角动量变化与通过后叶轮/叶轮的角动量变化重合,即不仅在进口而且在出口获得轴向流,没有导叶。从这些结果可以得出结论,这种类型的单元不仅在泵送模式下而且在涡轮机模式下均有效。

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