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Nordic hydropower flexibility and transmission expansion to support integration of North European wind power

机译:北欧水电的灵活性和输电扩展,以支持北欧风电的整合

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The expected increase of wind power production in the North and Baltic Seas will substantially increase the variability of the generation portfolio in Northern Europe. Access to available resources of flexible power production will be necessary to support the power system against this variability. Since the Nordic hydro-based power system can provide such resources, a stronger interconnection between continental Europe and the Nordic region seems to be beneficial. This paper assesses the challenges related to wind power production variability, especially offshore, in the North and Baltic Seas. Assessment on the transmission grid needed for both harvesting the available wind production located far away from load centres and to enable the optimal use of hydropower flexibility is studied in a long-term cost-benefit analysis. Special focus is devoted to the role of an offshore grid structure and the impact of onshore grid constraints. The analysis includes two interrelated simulation steps. The first step focuses on the strategic use of hydro energy in the day-ahead market, where detailed modelling of water courses and hydro production in the Nordic region is considered. Then, in a second step, flow-based simulations are conducted on a detailed grid model for the whole European system. The results show that long-term strategies for the expansion of offshore and onshore grids must be defined in a coordinated way to ensure optimal developments. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:预计北海和波罗的海风能发电量的增加将大大增加北欧发电组合的可变性。为了灵活地支持电力系统的可变性,必须有灵活的电力生产可用资源。由于北欧的水力发电系统可以提供此类资源,因此欧洲大陆与北欧地区之间更紧密的互连似乎是有益的。本文评估了北风和波罗的海与风力发电的可变性相关的挑战,特别是在海上。在长期的成本效益分析中,研究了对输电网络的评估,该评估既收获了远离负荷中心的可用风能,又使水电灵活性得以最佳利用。特别关注海上网格结构的作用以及陆地网格约束的影响。分析包括两个相互关联的仿真步骤。第一步着眼于日前市场中水能的战略使用,其中考虑了北欧地区水道和水力生产的详细模型。然后,在第二步中,对整个欧洲系统的详细网格模型进行基于流的模拟。结果表明,必须以协调的方式确定海上和陆上电网扩展的长期战略,以确保最佳发展。版权所有(c)2014 John Wiley&Sons,Ltd.

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