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Contribution to load-frequency regulation of a hydropower plant with long tail-race tunnel

机译:长尾水隧洞水电站负荷频率调节的贡献

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In this paper, a hydroelectric power plant with long tail-race tunnel has been modelled for assessing its contribution to secondary regulation reserve. Cavitation problems, caused by the discharge conduit length, are expected downstream the turbine where low pressure appears during regulation manoeuvres. Therefore, governor's gains should be selected taking into account these phenomena. On the other hand, regulation services bidden by the plant operator should fulfil TSO (Transmission System Operator) quality requirements. A methodology for tuning governor PI gains is proposed and applied to a Hydro power plant in pre-design phase in northwest area of Spain. The PI gains adjustment proposed provides a proper plant response, according to some established indexes, while avoiding cavitation phenomena.
机译:在本文中,对一条长尾水隧洞的水力发电厂进行了建模,以评估其对二次调节储备的贡献。由排气管长度引起的气蚀问题预计会出现在涡轮机下游,在调节操作期间会出现低压。因此,应考虑这些现象来选择州长的收益。另一方面,工厂运营商要求的监管服务应满足TSO(传输系统运营商)质量要求。提出了一种调节调速器PI增益的方法,并将其应用于西班牙西北地区处于预设计阶段的水力发电厂。根据一些已建立的指标,提出的PI增益调整建议可提供适当的植物响应,同时避免出现气蚀现象。

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