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光伏发电技术 ★ 5.0

自主型光伏-氢能混合能源系统的经济技术分析:以实现学术建筑能源独立为目标——以波兰为例

Technical and economic analysis of an autonomous hybrid photovoltaic-hydrogen energy system for academic buildings with the focus on energy Independence – A case study for Poland

作者 Przemysław Ogarek · Agnieszka St · Daniel Slys
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 392 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 An optimal variant of autonomous HRES for an academic building has been presented.
语言:

中文摘要

摘要 随着能源需求不断增长,以及迫切需要减少对高排放和进口化石燃料的依赖,无排放能源来源的重要性日益凸显,包括混合可再生能源系统(HRES),使其成为未来能源战略的关键组成部分。本研究针对波兰一座学术建筑,提出了最优的自主型HRES方案,并基于实际的能源需求与发电数据进行选型。该建筑位于城市中人流量最大的区域之一,每日有数千人在此活动,是学术生活的重要枢纽。确保该建筑的能源独立性对于保障安全、维持关键服务的连续性,以及保护当地社区免受意外能源供应中断的影响至关重要。通过使用HOMER Pro软件进行优化分析,结果表明,采用PV-FC-Li-Ion-CONV-H2T-EZ系统可实现完全自主运行,其最低净现值(NPC)为1,110,000欧元,平准化能源成本(LCOE)为1.00欧元/千瓦时,同时每年可减少二氧化碳排放11,815千克。考虑到高度城市化环境中可用空间有限,本文还分析了一种降低光伏容量的替代情景。文中提出了一种专门针对波兰国情设计自主能源系统的方法。然而,要实现这种能源自主,需要大量的资金投入,且仍需进一步的技术进步以提升此类系统的经济性。研究结果强调了长期氢储能对于在类似城市环境中实现建筑能源独立所起的关键作用。

English Abstract

Abstract Growing energy demand and the urgent need to reduce reliance on high-emission, as well as imported fossil fuels have elevated the relevance of emission-free energy sources, including Hybrid Renewable Energy Systems (HRES), making them a crucial component of future energy strategies. This study presents the optimal variant of an autonomous HRES for an academic building in Poland. It has been selected based on actual energy demand and production data. The building is situated in one of the most frequented areas of the city, where thousands of people are present daily, serving as a hub for academic life. Ensuring the building's energy independence is crucial to provide security, continuity of essential services, and to protect the local community against the impacts of unexpected energy supply interruptions. By means of HOMER Pro software for optimization, the analysis revealed that a PV-FC-Li-Ion-CONV-H 2 T-EZ system with the lowest NPC of €1,110,000 and an LCOE of €1.00/kWh could ensure full autonomy while reducing CO 2 emissions by 11,815 kg/year. Considering the limited space available in highly urbanized environments, an alternative scenario with reduced PV capacity was also analyzed. In the paper an approach to design autonomous energy systems specifically tailored to Polish conditions has been suggested. However, in order to achieve this autonomy some significant financial investments are required, and further technological advancements are needed to enhance the cost-effectiveness of such systems. The findings underscore the key role of long-term hydrogen storage in ensuring energy independence for buildings in similar urban settings.
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SunView 深度解读

该混合光储氢系统研究对阳光电源ST系列储能变流器与SG光伏逆变器协同应用具有重要参考价值。研究验证了PV+储能+氢能在城市建筑能源独立场景的技术可行性,LCOE为1.00欧元/kWh。阳光电源可基于PowerTitan储能系统与1500V光伏方案,结合iSolarCloud平台智能调度,优化长短周期储能配比,降低系统NPC成本。氢储能作为季节性调节手段,与锂电池短周期调峰形成互补,为高密度城市场景提供能源韧性解决方案,拓展ST-PCS在微网离网模式的应用边界。