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Virtual energy storage gain resulting from the spatio-temporal coordination of hydropower over Europe

机译:虚拟能量存储收益由水电在欧洲水电的时空协调产生

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The viability of a renewable electricity system depends on a relatively small share of hydropower storage resources to regulate climate variations and the spatially uneven distribution of renewable energy. By spatio-temporal coordination of hydropower production over larger regions, the energy storage demand will be reduced and contribute to a "virtual" energy storage gain that in Europe was found to be almost twice the actual energy storage capacity of hydropower reservoirs. In an attempt to quantify this gain, hydropower availability was simulated for most parts of the European continent for a 35-year period based on historical hydrometeorological data. The most significant benefits from spatio-temporal management arise at distances between 1200 and 3000 km, i.e., on the continental scale, which can have implications for a future renewable energy system at large. Furthermore, we discuss a condition termed "energy-domain-specific drought", which is a risk that can be reduced by the spatio-temporal management of power production. Virtual energy storage gain is not explicitly considered in the management models of hydropower production systems but could in principle complement existing management incentives.
机译:可再生电力系统的可行性取决于水电存储资源的相对小的份额来规范气候变化和可再生能源的空间不均匀分布。通过较大地区的水电产量的时空协调,将减少能量储存需求,并有助于欧洲的“虚拟”储能增益,几乎是水电站的实际储能量的两倍。在试图量化此增益中,基于历史水文的数据,为欧洲大陆的大多数部分模拟了水电可用性。时空管理中的最显着效益在1200至3000公里的距离之间出现,即在大陆规模之间,这可能对未来的未来可再生能源系统产生影响。此外,我们讨论了被称为“能量域的干旱”的条件,这是一种风险,可以通过电力生产的时空管理来降低。在水电生产系统的管理模型中没有明确考虑虚拟能量存储增益,但是原则上可能会补充现有的管理激励。

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