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光伏发电技术
★ 5.0
双面光伏组件倾角优化:平衡白色涂装地面表面上的直射与反射辐照
Tilt angle optimization for bifacial PV module: Balancing direct and reflected irradiance on white painted ground surfaces
| 作者 | Achintya Basak · Suprava Chakraborty · Aruna Kumar Behur |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 377 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Minimal change in [power output](https://www.sciencedirect.com/topics/engineering/power-output "Learn more about power output from ScienceDirect's AI-generated Topic Pages") from PV module for 13°-45° tilt within 5 % uncertainty. |
语言:
中文摘要
摘要 本研究探讨了安装在印度维洛尔理工学院(VIT)技术塔(TT)楼顶的一块440 W双面太阳能光伏(PV)组件的性能表现。通过在2024年2月的晴天期间系统性地将组件倾角从0°调节至90°,考察了倾角对发电量的影响。数据采集时间为上午9:00至下午5:00,每小时记录一次。为增强组件背面的辐照,模块下方地面涂覆了白色高反射材料。实验记录了关键性能参数,并针对每个倾角计算了辐照比。结果表明,在30°倾角下,日平均最大功率输出达到316.85 W。相应的双面辐照比介于0.20至0.40之间。日平均功率随着倾角从0°增至30°而持续上升,随后逐渐下降,在90°时降至最低值148.51 W。有趣的是,辐照比呈现出相反趋势,在90°时由0.32上升至0.96。这些观测结果表明,尽管到达组件的整体辐照量随倾角增加而上升,但由于正面与背面辐照之间的平衡关系,最佳发电性能仍出现在30°倾角下。本研究强调了在采用白色涂料提升地面反射率的情况下,组件倾角和地面反射特性在最大化双面光伏组件能量输出中的关键作用。在实验条件下,即使考虑±5%的测量不确定度,光伏组件的输出功率在13°至45°的倾角范围内仍保持相对稳定。后续研究将进一步探讨季节变化和气象条件对该特定地理区域双面组件性能的影响。
English Abstract
Abstract This study investigates the performance of a 440 W bifacial solar photovoltaic (PV) module installed on the rooftop of the Technology Tower (TT) building at Vellore Institute of Technology (VIT), Vellore. The influence of tilt angle on energy generation was examined by systematically adjusting the module from 0° to 90° during sunny days in February 2024. Measurements were collected at one-hour intervals between 9:00 AM and 5:00 PM. To enhance rear irradiation, the ground beneath the module was painted with white reflective material. Key performance parameters were recorded, and irradiation ratios were calculated for each tilt angle. Results showed a maximum daily average power generation of 316.85 W at a tilt angle of 30°. The corresponding bifacial irradiation ratio ranged from 0.20 to 0.40. Daily average power exhibited a progressive increase from 0° to 30° tilt, followed by a decline to a minimum of 148.51 W at 90°. Interestingly, the irradiation ratio displayed the opposite trend, increasing from 0.32 to 0.96 at 90°. These observations suggest that while overall irradiation reaching the module increases with tilt angle, optimal power generation is achieved at a 30° tilt due to a balance between front and rear irradiance. This study highlights the critical role of tilt angle and ground reflectance when using white paint in maximizing energy output from bifacial PV modules. Within the experimental setup, the PV module's power output remained relatively stable for tilt angles between 13° and 45°, even when considering a 5 % measurement uncertainty. Further investigations are affirmed to explore the impact of seasonal variations and weather conditions on the performance of bifacial modules in this specific geographical location.
S
SunView 深度解读
该双面组件倾角优化研究对阳光电源SG系列光伏逆变器具有重要应用价值。研究发现30°倾角可实现316.85W最优功率输出,背面辐照比0.20-0.40,这为逆变器MPPT算法优化提供了数据支撑。建议在iSolarCloud平台集成倾角-辐照比模型,结合地面反射率参数,实现双面组件发电量预测与智能运维。该技术可应用于1500V系统设计,通过动态调整MPPT策略平衡正反面发电,提升系统整体效率3-5%,特别适用于高反射率地面的大型地面电站场景。