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光伏发电技术
★ 5.0
集成季节性储热的不同运行模式下太阳能供热系统在建筑应用中的性能评估
Performance evaluation of solar heat systems integrated with seasonal heat storage across varied operating modes for building applications: The case of Netherlands
| 作者 | Zain Ul-Abdi · Olindo Isabell · Rudi Santberge |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 299 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Development of solar heat system models to estimate temperature and energy yield. |
语言:
中文摘要
摘要 本研究提出了一种建模方法,用于评估一种混合系统的性能,该系统集成了多种类型的太阳能集热器,包括光伏(PV)集热器、带玻璃盖板的平板太阳能热(ST)集热器以及非带玻璃盖板的光伏-热(PVT)集热器,以收集太阳能。此外,该系统还集成了季节性储热装置——含水层热能储存(ATES)系统、热交换器和热泵(HP),以提供供暖(包括空间供暖(SH)和生活热水(DHW))以及制冷。研究根据气候条件和建筑特性考虑了多种运行模式。本文重点比较了在真实场景下不同类型太阳能集热器的性能,并考察了供暖方式和建筑保温水平的影响。分析采用了阿姆斯特丹五栋住宅建筑的实际能耗数据。针对所选建筑进行了年度模拟,涵盖空间供暖、生活热水供应以及制冷需求。结果表明,ATES与带玻璃盖板的ST集热器组合表现出优异的热能储存性能;而采用地板采暖时,热泵结合PV/ST集热器的系统在空间供暖和生活热水供应方面的平均性能系数(COP)达到6.09。相比之下,热泵与PVT集热器组合在采用散热器供暖时性能最低,其COP约为5。此外,大部分能源需求通过热泵储热模式结合季节性储热和热泵来满足,而建筑保温水平在系统性能中起着至关重要的作用。
English Abstract
Abstract In this study, a modeling methodology is presented for evaluating the performance of a hybrid system integrating different types of solar collectors, namely photovoltaic (PV), glazed flat plate solar thermal (ST) and unglazed photovoltaic-thermal (PVT) collectors to harvest solar energy. Further, the system is integrated with a seasonal storage that is an aquifer thermal energy storage (ATES) system, a heat exchanger and a heat pump (HP) to provide heating, including space heating (SH), domestic hot water (DHW), as well as cooling. The investigation considers various operational modes depending on the climate conditions and building characteristics. The study focuses on comparison of solar collectors in realistic scenarios, examining heating type and insulation levels. Real energy consumption data considering five residential buildings in Amsterdam is employed for the analysis. Annual simulations for the considered buildings are conducted for SH and DHW coverage, along with cooling. The results indicate that ATES combined with glazed ST collectors demonstrates superior heat storage while HP with PV/ST combination and floor heating achieves an average coefficient of performance (COP) of 6.09 for both SH and DHW. In contrast, HP combined with PVTs shows the lowest performance, with a COP of around 5 when used with radiator heating. Additionally, majority of the demand is covered using HP storage mode with seasonal storage and HP while building insulation plays a crucial role.
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SunView 深度解读
该研究对阳光电源光储热一体化系统具有重要参考价值。文中PV+储能+热泵的混合架构与我司ST系列储能变流器、SG光伏逆变器可形成完整解决方案。季节性储能ATES系统的能量管理策略可借鉴至PowerTitan储能系统的长周期调度优化。热泵COP达6.09的高效运行模式,为我司结合iSolarCloud平台开发光储热协同控制算法提供依据,特别在欧洲建筑供暖场景可拓展多能互补系统集成能力,提升综合能效与经济性。