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储能系统技术
★ 5.0
储能技术在欧洲电力系统实现净零排放中的作用
The role of energy storage towards net-zero emissions in the European electricity system
| 作者 | Arijit Upadhyaya1 · Tim Tröndle · Alissa Ganter · Ivalin Petkov · Paolo Gabriellia2 · Giovanni Sansavini |
| 期刊 | Energy Conversion and Management |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 338 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Definition of archetypical countries for optimal energy storage mix in Europe. |
语言:
中文摘要
摘要 本研究探讨了不同储能技术在符合2050年净零碳排放目标的欧洲电力系统中的作用。我们考虑了三种储能技术,即电池储能、抽水蓄能和氢储能。研究发现,一个国家成本最优的储能组合取决于其发电结构,基于主导储能技术,我们在欧洲范围内识别出三类国家原型。当具备条件时,抽水蓄能在储能组合中占据主导地位,从而减少对新建电池储能和氢储能设施的需求。总体而言,短期电池储能最适用于应对太阳能发电的短期波动,并与太阳能发电形成最优配合;而长期氢储能则用于平衡太阳能和风能的峰值发电。此外,我们量化了以不同空间分辨率和自给率尺度(从区域级到大陆级)建模欧洲电力系统对最优储能组合的影响。不同空间分辨率的比较评估表明,随着空间分辨率的提高,所安装的储能总量显著增加,尤其是氢储能的装机量增长明显。
English Abstract
Abstract This study investigates the role of different energy storage technologies in a European electricity sector that complies with the target of net-zero carbon emissions in 2050. We consider three energy storage technologies, namely battery, pumped hydro, and hydrogen storage. We find that the cost-minimal energy storage mix in a country depends on the generation mix, and we identify three country archetypes in Europe based on the prevailing energy storage technology. When available, pumped hydro dominates the storage mix, reducing the need for new battery and hydrogen storage installations. Overall, short-term battery storage best captures solar fluctuations and is optimally combined with solar generation, while long-term hydrogen storage compensates for both solar and wind peak generation. Moreover, we quantify the impact of modeling the European system with different spatial resolutions and net self-sufficiency scales, from regional to continental, on the optimal energy storage mix. The comparative assessment of different spatial resolutions shows that the amount of energy storage installed, and especially the amount of hydrogen storage, increases significantly for higher spatial resolutions.
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SunView 深度解读
该研究验证了多时间尺度储能协同的必要性,对阳光电源产品布局具有战略指导意义。短时电池储能(ST系列PCS、PowerTitan)适配光伏波动,长时氢储能应对季节性缺口,抽水蓄能可降低新增储能需求。建议强化ST系列在光储一体化场景的优化算法,探索氢储能PCS技术储备,并在iSolarCloud平台集成多储能协同调度功能,以适应欧洲高比例可再生能源并网需求,提升系统级解决方案竞争力。