欧洲电力系统压力的气象驱动因素

H. Bloomfield, C. C. Suitters, D. Drew
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引用次数: 13

摘要

电力系统的快速脱碳正在进行中,以限制温室气体排放并实现碳减排目标。可再生能源是实现这些目标的关键因素;然而,重要的是,随着可再生能源普及率的提高,国家电力系统仍然要保持能源安全。在需求高峰期(电力系统压力的关键时刻),可再生能源发电的运行潜力尚不清楚。因此,这项研究使用了一个关于国家需求、风能和太阳能发电的数十年数据集来确定需求峰值发生时的气象条件,以及可再生能源在这些事件中的贡献。冬季欧洲电力需求高峰事件与俄罗斯和斯堪的纳维亚半岛上空的高气压有关,同时欧洲各地的气温和平均风速低于平均水平。当考虑可再生能源发电的极端电力需求时,相关的气象条件会发生变化。国家需求高峰事件的日期和可再生能源发电量存在相当大的空间变异性。可再生能源发电的增长有可能降低峰值需求。然而,这些影响也不一致,西班牙的峰值需求减少幅度远大于中欧。再分析导出的能源模型允许将最近的峰值需求事件放在长期背景下。
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Meteorological Drivers of European Power System Stress
A rapid decarbonisation of power systems is underway in order to limit greenhouse gas emissions and meet carbon-reduction targets. Renewable energy is a key ingredient to meet these targets; however, it is important that national power systems still maintain energy security with increasing levels of renewable penetration. The operating potential of renewable generation at times of peak demand (a critical time for power system stress) is not well understood. This study therefore uses a multidecadal dataset of national demand, wind power, and solar power generation to identify the meteorological conditions when peak demand occurs and the contribution of renewables during these events. Wintertime European peak power demand events are associated with high atmospheric pressure over Russia and Scandinavia and are accompanied by lower than average air temperatures and average wind speeds across Europe. When considering power demand extremes net of renewable power production, the associated meteorological conditions are shown to change. There is considerable spatial variability in the dates of national peak demand events and the amount of renewable generation present. Growth in renewable generation has the potential to reduce peak demands. However, these impacts are also not uniform with much larger reductions in peak demand seen in Spain than in central Europe. The reanalysis-derived energy models have allowed recent peak demand events to be put into a long-term context.
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审稿时长
21 weeks
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