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光伏发电技术
★ 5.0
考虑两种铺设方式的漂浮式双面与单面光伏组件热性能对比
Thermal comparison of floating bifacial and monofacial photovoltaic modules considering two laying configurations
| 作者 | Giuseppe Marco Tin · Amr Osam · Gaetano Mannino · Antonio Gagliano · Alessio Vincenzo Cucuzz · Fabrizio Bizzarri |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 389 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | The impact of landscape vs. portrait configuration on FPV system performance is examined. |
语言:
中文摘要
摘要 光伏组件的整体性能显著受到设计构型的影响,尤其是双面组件技术相较于传统的单面组件。在陆地光伏安装中,光伏阵列的构型通常受限于可用面积;然而,在漂浮式光伏系统(FPV)中,安装设计不受面积限制。水体表面的存在对FPV组件的运行状态具有关键影响;但以横向(landscape)或纵向(portrait)方式安装组件,仍能有效影响组件的热行为,从而影响整体性能。因此,本文旨在通过实验分析以横向配置(L-FPV)和纵向配置(P-FPV)安装的FPV系统的性能。此外,为了进行更深入的评估,本文还研究了在上述不同配置下双面和单面组件的表现。实验装置包含两组不同的朝向,每组均采用“Enel创新实验室”(位于意大利卡塔尼亚)现有的不同类型组件技术(单面/双面)的标准额定功率模块。研究采用了为期七个月的实测数据进行性能评估。研究结果表明,对于相同类型的组件技术,横向配置的组件温度低于纵向配置:双面组件低约1°C,单面组件低1.71°C。这使得双面技术的日均阵列发电量提升了3%,单面技术提升了2.8%。此外,本文还通过优化不同组件技术和布局下漂浮系统的热模型系数,进行了热建模分析。
English Abstract
Abstract The overall performance of PV modules is significantly affected by the design configuration, especially the bifacial module technology over the conventional monofacial ones. In land-based PV installation, the configuration of the PV array is usually subject to the area available. However, for the floating PV system (FPV), the area doesn't constrain the installation design. The presence of a water surface has a key impact on the operating status of the FPV module; nevertheless, installing the module in different configurations as landscape or portrait, can effectively influence the thermal behaviour of the module and thus the overall performance. Hence, this paper aims to analyse experimentally the performance of the FPV system installed in landscape configuration (L-FPV) and portrait configuration (P-FPV). Additionally, for a deeper evaluation, both bifacial and monofacial modules are investigated under the different mentioned configurations. The experimental setup consists of two sets of orientations, each having a typical rated power of different module technologies (monofacial/bifacial) available in “Enel Innovation Lab” in Catania (Italy). Measurements of seven months have been investigated for performance evaluation. The outcomes of this research revealed that for the same module technology, landscape configuration has a lower temperature compared to portrait configuration by around 1 ° C for the bifacial modules and 1.71 ° C for the monofacial modules. This led to a favorable daily array yield improvement by 3 % for the bifacial technology and 2.8 % for the monofacial one. Furthermore, thermal modeling is performed through coefficients optimization of thermal models for different module technologies and layouts for floating systems.
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SunView 深度解读
该研究对阳光电源浮式光伏系统具有重要参考价值。研究表明横向布局比纵向布局温度低1-1.71°C,双面组件日发电量提升3%。这为SG系列逆变器在浮式光伏场景的MPPT优化策略提供依据:可针对不同布局方式调整温度补偿算法,优化最大功率点追踪精度。同时,研究的热模型可集成至iSolarCloud平台,实现浮式电站的预测性维护和布局优化建议,提升系统整体发电效率。建议在1500V浮式光伏系统设计中优先推荐横向布局方案。