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Norway as a Battery for the Future European Power System—Impacts on the Hydropower System

机译:挪威作为未来欧洲电力系统的电池 - 对水电系统的影响

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摘要

Future power production in Europe is expected to include large shares of variable wind and solar power production. Norway, with approximately half of the hydropower reservoir capacity in Europe, can contribute to balance the variability. The aim of this paper is to assess how such a role may impact the Norwegian hydropower system in terms of production pattern of the plants, changes in reservoir level and water values. The study uses a stochastic optimization and simulation model and analyses an eHighway2050 scenario combined with increases in the hydropower production capacities in Norway. The capacity increases from ca. 31 GW in the present system to 42 and 50 GW respectively. The study uses 75 years with stochastic wind, solar radiation, temperature and inflow data. The results show that the hydropower system is able to partly balance the variable production and significantly reduce the power prices for the analyzed case. The paper shows that some of the power plants utilize their increased capacity, while other plants do not due to hydrological constraints and model limitations. The paper discusses how the modelling can be further improved in order to quantify more of the potential impacts on the future power system
机译:预计欧洲未来的电力生产将包括大量可变风能和太阳能发电。挪威拥有欧洲大约一半的水力发电库容量,可以为平衡波动性做出贡献。本文的目的是根据植物的生产模式,水库水位和水位的变化评估这种作用如何影响挪威水电系统。该研究使用了随机优化和模拟模型,并分析了eHighway2050情景以及挪威水电生产能力的增长。容量从ca增加。本系统中的31 GW分别为42 GW和50 GW。该研究使用了75年的随机风,太阳辐射,温度和入流数据。结果表明,在所分析的情况下,水电系统能够部分平衡可变产量并显着降低电价。本文显示,一些发电厂利用了其增加的容量,而其他发电厂则不是由于水文约束和模型限制。本文讨论了如何进一步改进建模,以便量化对未来电力系统的更多潜在影响。

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