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储能系统技术
★ 5.0
面向区域城市的能源本地化生产与电力储能系统规划——以海上风电为核心
Planning for local production and consumption of energy and electricity storage systems in regional cities, focusing on offshore wind power generation
| 作者 | Shin’ya Obar · Riku Murofushi |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 395 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Local production for local consumption of energy from offshore wind power generation. |
语言:
中文摘要
摘要 本研究提出了一种以大容量海上风力涡轮机为核心的区域性城市能源本地化系统,并明确了高成本储能设备对该系统的影响。通过采用贴现现金流(DCF)方法计算投资回收期,评估了所提系统的经济性。该系统由发电单元(包括海上风电及其他可再生能源)、储能单元(配备蓄电池或氢储能系统)、输电单元、配电单元以及能源需求单元组成。目前正在建设一个电力输送网络(北海道南部海上风电输送网络:SHOT),旨在将规划建设的北海道南部海上风电项目(1720 MW)和户井陆上风电项目(160 MW)所产生的电力输送至函馆市(人口24万,面积677.9 km²)。配置氢储能系统的SHOT网络投资回收期为7至8年,而采用氧化还原液流电池的方案则为10至12年。其原因是氢储能系统可通过小容量水电解槽、低成本的大容量氢气储罐以及小容量燃料电池以较低成本组合实现;而蓄电池的成本则主要取决于其储能容量。经济可行性研究表明,所得税减免政策能够有效缩短SHOT项目的投资回收周期。由于昂贵设备的定期更换占项目总支出的13%至25%,因此针对这些设备延长使用寿命的技术创新对于缩短投资回收期具有显著效果。
English Abstract
Abstract In this study, an energy localization system in a local city focusing on large-capacity offshore wind turbines was proposed and the impact of expensive energy storage devices is clarified. The economics of the proposed system was clarified determining the payback period using the discounted cash flow (DCF) method. The proposed system comprises a power generation unit with offshore wind power and other renewable energy sources, an energy storage unit with storage batteries or hydrogen storage systems, a transmission unit, a distribution unit, and an energy demand unit. A power transmission network (Southern Hokkaido offshore wind power transmission network: SHOT) is being developed to supply electricity to Hakodate City (240,000 inhabitants, 677.9 km 2 ) from the currently planned Southern Hokkaido offshore wind power generation (1720 MW) and Toi onshore wind power generation (160 MW). The payback periods for SHOT with a hydrogen storage system and redox flow batteries were 7–8 and 10–12 years, respectively. This was because hydrogen storage systems can be combined with small-capacity water electrolyzers, inexpensive large-capacity hydrogen tanks, and small-capacity fuel cells at a lower cost, whereas the cost of storage batteries is based on their storage capacity. Economic feasibility study showed that income tax relief could effectively speed up the payback period for SHOT investments. As the periodic replacement of expensive equipment accounted for 13 %–25 % of the total project expenditure, technological innovations to extend the service life of the targeted equipment can be effective in reducing the payback period.
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SunView 深度解读
该海上风电区域能源本地化系统研究对阳光电源ST系列储能变流器及PowerTitan系统具有重要参考价值。研究证实氢储能系统因可配置小容量电解槽和燃料电池,投资回收期比液流电池短2-4年,启示阳光电源可优化储能系统架构,开发模块化分级配置方案,降低初始投资。研究指出设备定期更换占总支出13-25%,验证了阳光电源iSolarCloud平台预测性维护技术的经济价值,可通过延长设备寿命缩短回收期。该1720MW海上风电+储能项目场景适合部署阳光电源PowerTitan大容量储能系统,结合GFM控制技术实现区域电网稳定供电。