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Assessment of Power Swings in Hydropower Plants Through High-Order Modeling and Eigenanalysis

机译:通过高阶建模和特征分析评估水电厂的发电波动

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POWER plants are subject to introduce disturbances in the power grid, resulting from interactions with the dynamical behavior of the energy source subsystem. In the case of hydropower plants when used to compensate for variations of power generation and consumption, instabilities or undesirable disturbances may arise. They may be caused by phenomena such as part load vortex rope pulsations in the draft tube of Francis turbines. This may affect the dynamical behavior of the power plant and lead to troublesome interactions with the grid. This paper presents a case study of an existing hydropower plant that illustrates the effects of pressure pulsations due to vortex rope precession on the draft tube of Francis turbines. It also showcases possible solutions to the mitigation of the effects of this disturbing hydraulic phenomenon over the operation of the generators and electrical system. The investigated system is a 1-GW hydropower plant (4 × 250 MW units). The assessment of the power swings is performed through modal analysis combined with frequency-domain and time-domain simulations, which are then compared with onsite measurements.
机译:发电厂会因与能源子系统的动态行为相互作用而在电网中引入干扰。对于水力发电厂,当用于补偿发电量和消耗量的变化时,可能会出现不稳定或不希望的干扰。它们可能是由混流式水轮机的尾水管中的部分负荷涡流绳脉动等现象引起的。这可能会影响电厂的动态行为,并导致与电网的麻烦交互。本文介绍了一个现有水电站的案例研究,该案例说明了涡流旋进引起的压力脉动对混流式水轮机尾水管的影响。它还展示了可能的解决方案,以减轻发电机和电气系统运行中这种令人不安的水力现象的影响。所研究的系统是一个1吉瓦的水力发电厂(4×250兆瓦机组)。通过模态分析结合频域和时域仿真对功率摆幅进行评估,然后将其与现场测量结果进行比较。

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