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智能化与AI应用 ★ 5.0

核电与基荷需求在低碳电力系统容量扩展规划中的作用

The role of nuclear energy and baseload demand in capacity expansion planning for low-carbon power systems

作者 Martin Hjelmelan · Jonas Kristiansen Nølan · Stian Back · Magnus Korpas
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 377 卷
技术分类 智能化与AI应用
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Load modeling methods for capacity expansion planning are compared.
语言:

中文摘要

摘要 绿色转型要求对传统上具有稳定能源需求的工业进行电气化。结合人工智能(AI)和超大规模数据中心的兴起,预计电网连接的基荷将显著增加。这些负荷具有较高的资本和运营成本,通常缺乏灵活性的经济激励。本文探讨了在不同核电站一次性建设成本(OCC)水平下,额外负荷的建模方式如何影响最优能源结构,突出核电在为AI数据中心和重工业电气化提供必要基荷方面的潜在作用。通过采用解析方法,本研究评估了额外负荷曲线与波动性可再生能源(VRE)出力之间的匹配程度,以确定应由哪些技术组合来满足新增电力需求。一项采用基荷增加(BA)方法的简化案例研究表明,基荷电厂单元的占比显著上升,承担了95.1%的额外负荷;相比之下,对历史负荷进行线性负荷曲线缩放(LLPS)则未改变能源结构。利用欧洲可再生能源电力系统投资模型(EMPIRE)开展的更详细案例研究证实了理论发现的趋势,表明采用BA方法相比历史负荷缩放,核电发电量增加了24%。此外,在低成本核电情景(4200欧元/千瓦)下安装的核电容量比高成本情景(6900欧元/千瓦)多出59%。最后,研究显示,更高的核电占比可显著减少对输电设施、储能、可再生能源弃电以及土地使用的需求,进一步凸显了核能在低碳电力系统中的潜在作用。

English Abstract

Abstract The green transition requires electrifying industries with traditionally stable energy demands. Combined with the rise of artificial intelligence (AI) and hyperscale data centers, a significant increase in grid-connected baseload is expected. These loads, with high capital and operational costs, often lack financial incentives for flexibility. This paper explores how the modeling of additional load affects the optimal energy mix under varying nuclear energy overnight construction cost (OCC) levels, highlighting nuclear energy’s potential role in providing the necessary baseload for AI data centers and heavy industry electrification. By utilizing an analytical approach, the study assesses how additional load profiles match variable renewable energies (VRE) outputs to determine the mix of technologies to be responsible for accommodating additional power demands. A stylized case study using the baseload addition (BA) method showed a significant increase in the share of baseplant units, handling 95.1% of the additional load. In contrast, linear load profile scaling (LLPS) of historical loads left the energy mix unchanged. A more detailed case study with the European Model for Power system Investment with Renewable Energy (EMPIRE) confirmed the same trend as found in theory, indicating a 24% increase in nuclear generation using the BA method over historical load scaling. Moreover, a low-cost nuclear scenario (€4200/kW) installed 59% more capacity than a high-cost scenario (€6900/kW). Finally, higher nuclear shares are shown to significantly reduce the need for transmission, storage, VRE curtailment, and land use, emphasizing nuclear power’s potential role in low-carbon power systems.
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SunView 深度解读

该研究揭示基荷负载增长(AI数据中心、重工业电气化)对电力系统规划的影响,对阳光电源储能业务具有战略意义。研究指出核电等基荷电源占比提升将显著降低储能、输电和VRE弃电需求,这要求我司PowerTitan等大型储能系统从单纯容量配置转向灵活性价值挖掘。建议:1)针对工业基荷场景优化ST系列PCS的长周期充放电策略;2)在iSolarCloud平台集成负荷特性分析模块,为混合能源系统提供经济性优化;3)开发GFM控制技术以增强电网支撑能力,在核电占比提升背景下保持储能竞争力。