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Numerical simulation of hydraulic force on the impeller of reversible pump turbines in generating mode

机译:发电模式中可逆泵涡轮机叶轮液力的数值模拟

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The hydraulic force on the reversible pump turbine might cause serious problems (e.g., the abnormal stops due to large vibrations of the machine), affecting the safe operations of the pumped energy storage power plants. In the present paper, the hydraulic force on the impeller of a model reversible pump turbine is quantitatively investigated through numerical simulations. It is found that both the amplitude of the force and its dominant components strongly depend on the operating conditions (e.g., the turbine mode, the runaway mode and the turbine brake mode) and the guide vane openings. For example, the axial force parallel with the shaft is prominent in the turbine mode while the force perpendicular to the shaft is the dominant near the runaway and the turbine brake modes. The physical origins of the hydraulic force are further revealed by the analysis of the fluid states inside the impeller.
机译:可逆泵涡轮机上的液压力可能导致严重的问题(例如,由于机器的大振动,异常停止),影响泵浦能量存储发电厂的安全操作。 在本文中,通过数值模拟定量地研究了模型可逆泵涡轮机的叶轮上的液压。 结果发现,力的幅度及其主体部件均强烈地取决于操作条件(例如,涡轮机模式,失控模式和涡轮制动模式)和导向叶片开口。 例如,与轴平行的轴向力在涡轮机模式中突出,而垂直于轴的力是靠近失控和涡轮机制动模式的主导。 通过分析叶轮内的流体状态,进一步揭示了液压的物理起源。

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