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Fast Transition from Pump to Turbine Mode of Operation

机译:从泵到涡轮运行模式的快速过渡

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The reversible pump turbine (RPT) is a suitable machine to control fluctuations in the energy market. The usage of RPTs for this purpose will increase the number of operational mode changes of the machine. In order to reduce the response time of the machine, fast transitions between the modes of operation are necessary. Therefore, increased knowledge of how the machine operates during these fast transitions is needed. This includes the investigation of the transient characteristics for the whole operating range of the machine. This paper presents experimental results from a fast transition from pump to turbine mode. The flow rate is measured by the use of a modified pressure time method. The resulting transient characteristics are compared with steady state characteristics. Experiments have been preformed on a model scale reversible pump turbine in the Waterpower Laboratory at the Norwegian University of Science and Technology (NTNU). The results show that the pressure pulsations are highest at low discharge in both pump and turbine mode of operation and at runaway speed in turbine. Oscillations at runaway speed is reduced with lower opening degree on the guide vanes. The results also show a difference between the steady state and transient characteristics in the pump mode due to the inertia of the water masses.
机译:可逆泵涡轮(RPT)是控制能源市场波动的合适机器。为此目的而使用RPT将增加机器操作模式更改的次数。为了减少机器的响应时间,必须在操作模式之间进行快速转换。因此,需要增加有关在这些快速过渡期间机器如何运行的知识。这包括对机器整个工作范围内的瞬态特性进行研究。本文介绍了从泵模式快速转换为涡轮模式的实验结果。通过使用改进的压力时间方法来测量流量。将所得的瞬态特性与稳态特性进行比较。挪威科学技术大学(NTNU)的水力实验室已经在模型规模的可逆式水泵水轮机上进行了实验。结果表明,在泵和涡轮机运行模式下以及在涡轮机失控速度下,低排放时压力脉动最高。导向叶片的开度越低,越可避免失控速度下的振荡。结果还表明,由于水团的惯性,泵模式下的稳态和瞬态特性之间存在差异。

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