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Investigating the Flexibilization of Hydraulic Storage Power Plants in the Nordics

机译:调查北欧液压蓄能电厂的柔性化

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The increase in supply-dependent renewable energy sources and the decommissioning of thermal power plants leads to an increasing need for flexibility in the future European electricity supply system. In this context, hydraulic power plants represent a mature and renewable flexibility option. The EU Horizon 2020 project “HydroFlex” aims to increase the value of hydropower through increased flexibility. To this end, the project aims to develop a flexible turbine capable of very flexible operation and in particular several start/stop cycles per day. In this paper, different types of flexibility are first analyzed as they are required in the future European power system. Subsequently, the paper presents a method simulating the operation of highly complex hydraulic power plant parks, which is essential to investigate future operational requirements and to evaluate the turbine technology developed within the “HydroFlex” project from a systemic perspective. The focus is, in particular, on the future operation of hydraulic power plants in the Nordics in order to meet the increasing flexibility demands in the European power system.
机译:在供应依赖可再生能源的增加和热电厂引线到需要在未来的欧洲电力供应系统的灵活性提高了退役。在这种情况下,液压发电厂代表了成熟的和可再生的灵活性的选项。欧盟展望2020项目“HYDROFLEX”旨在通过提高灵活性增加水电的价值。为此,该项目旨在开发能够非常灵活的操作,并在每天特定的几个启动/停止周期灵活的涡轮机。在本文中,因为他们在未来的欧洲电力系统需要首先分析不同类型的灵活性。接着,提出了模拟高度复杂的液压动力设备的公园的操作,这是必不可少的调查未来操作要求和评估从系统角度来看,“HYDROFLEX”项目中开发的涡轮机技术的方法。重点是,尤其在北欧水力电厂的未来运作,以满足欧洲电力系统中增加灵活性的要求。

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