西班牙2030年NECP中不同柔性技术分析

IF 2.2 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Andres Ramos, Sébastien Huclin, José Pablo Chaves
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引用次数: 0

摘要

本文提出了与灵活性评估相关的三个维度:功率梯度(即坡道)、关键时段的功率和不同时间尺度的可用能量。一个两阶段的程序分析了电力系统应对可再生能源整合的灵活性。第一步确定三个灵活性指标的边际。第二个模型运行基于成本的操作模型,以确定如何覆盖这些维度。斜坡边际计算表明,当太阳能发电减少时,临界净需求斜坡发生,但预计2030年的西班牙系统仍然可以应对这一上升斜坡。不同的灵活技术覆盖净需求(需求减去不可调度发电)的每周能源变化。这表明蓄能水电和开环抽水蓄能对这一变化的贡献很大。灵活的技术提供了净需求的上升和下降的斜坡。电池和新型闭环抽水蓄能是对这些净需求增长贡献最大的蓄能技术。我们还表明,现有的和新的闭环抽水蓄能在关键的净需求小时内产生更多的电能,具有高容量系数,几乎是电池的两倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of different flexible technologies in the Spain NECP for 2030
This paper proposes three dimensions relevant to the flexibility assessment: power gradient (i.e., ramps), power during critical hours, and energy available at different timescales. A two-phase procedure analyzes an electric system’s flexibility to cope with renewables’ integration. The first step determines the margin on the three flexibility metrics. The second one runs a cost-based operation model to determine how these dimensions are covered. The ramp margin computed shows that a critical net demand ramp happens when solar power reduces its generation, but the projected Spanish system in 2030 can still cope with this upward ramp. Different flexible technologies cover the weekly energy variation of the net demand (demand minus non-dispatchable generation). This shows the high contribution of storage hydro and open-loop pumped-hydro storage to this variation. Flexible technologies supply upward and downward ramps of the net demand. Batteries and new closed-loop pumped-hydro storage are the storage technologies that contribute the most to these net-demand ramps. We also show that existing and new closed-loop pump-hydro storage generate more in the critical net-demand hours, having a high capacity factor, almost double the batteries.
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来源期刊
Frontiers in Built Environment
Frontiers in Built Environment Social Sciences-Urban Studies
CiteScore
4.80
自引率
6.70%
发文量
266
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