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Extension of Operating Range in Pump-Turbines. Influence of Head and Load

机译:扩大了水泵水轮机的工作范围。扬程和负载的影响

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Due to the increasing share of new renewable energies like wind and solar in the generation of electricity the need for power regulation and energy storage is becoming of paramount importance. One of the systems to store huge amounts of energy is pumped storage using reversible hydropower units. The machines used in these power plants are pump-turbines, which can operate as a pump and as a turbine. The surplus of electrical energy during low consumption hours can be converted into potential hydraulic energy by pumping water to a higher level. The stored energy can be converted into electricity again by operating the runner as a turbine. Due to new regulation requirements machines have to extend the operating range in order to match energy generation with consumption for the grid stability. In this paper the consequences of extending the operating range in existing pump-turbines have been studied. For that purpose, the data obtained after two years of condition monitoring were analyzed. Vibrations and pressure fluctuations of two pump-turbines of 85 MW each have been studied during pump and turbine operation. For turbine operation the effects of extending the operating range from the standard range of 45?¢????85 MW to and increased range of 20?¢????85 MW were analyzed. The change in vibration levels and signatures at very low load are presented with the identification of the phenomena that occur under these conditions. The influence of head in the vibration behavior is also presented. The appearance of fluid instabilities generated at part load that may produce power swing is also presented. Finally, the effect of head on the vibration levels for pump operation is shown and analyzed.
机译:由于新的可再生能源(例如风能和太阳能)在发电中所占的比重越来越大,因此对功率调节和储能的需求变得至关重要。储存大量能量的系统之一是使用可逆水电机组的抽水蓄能。这些发电厂中使用的机器是水泵涡轮机,可以作为水泵和涡轮机运行。通过将水抽到更高的水位,可以将低能耗时间中的多余电能转化为潜在的水力能。通过将转轮作为涡轮机运行,可以将存储的能量再次转换为电能。由于新的法规要求,机器必须扩展操作范围,以使发电量与能耗相匹配,以确保电网稳定。在本文中,已经研究了扩大现有水泵水轮机工作范围的后果。为此,分析了两年状态监测后获得的数据。在泵和涡轮机运行期间,已经研究了两台每台85兆瓦的水轮机的振动和压力波动。对于涡轮机的运行,分析了将工作范围从标准功率范围从45Ω·85MW扩大到增加范围20Ω··85MW的效果。通过识别在这些条件下发生的现象,可以显示出在非常低的负载下振动水平和信号的变化。还介绍了磁头对振动行为的影响。还介绍了在部分负载下可能产生动力摆幅的流体不稳定性现象。最后,显示并分析了扬程对泵运行振动水平的影响。

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