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影响光伏电站单轴跟踪器风致气动弹性响应的关键参数
Key parameters influencing wind-induced aeroelastic responses of single-axis solar trackers in photovoltaic plants
| 作者 | Giorgio Frontin · Filippo Calamell · Sara Muggias · Tommaso Argentini |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 287 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Study analyzes how key parameters affect photovoltaic tracker structural response. |
语言:
中文摘要
摘要 与固定式光伏板相比,单轴太阳能跟踪器在大规模太阳能装置中能够提高能源产量和成本效益。然而,由于为节约成本而降低了机械性能,其结构设计必须应对独特的挑战,特别是在抗风性能方面。本文研究了光伏电站的若干关键参数,并评估了这些参数对跟踪器响应的影响,重点分析风致气动弹性效应。所研究的参数包括光伏电站的布局排列方式以及排间距。跟踪器的位置评估是在一个矩形布置的跟踪器电站的4行2列角落区域进行的,地面覆盖率分别为0.38和0.25。此外,还监测了单个跟踪器运行参数的影响,考虑了工作俯仰角在−60°至+60°之间的变化,以及风向角为0°、15°、30°和45°的情况。假设结构属性保持不变。本研究结合了实验风洞测试与基于有限元模型的数值动力学模拟,通过监测内部应力状态来评估性能表现。结果表明,大俯仰角(>45°)表现出稳定的气动弹性行为,而在达到某一临界风速后,小俯仰角(−30°至+30°之间)则变得不稳定。在所监测的俯仰角中,倾角在15°至30°之间的工况在内部响应方面最为关键。研究证实,位于电站外围区域的跟踪器承受的应力最大。最大的荷载工况出现在风向垂直于跟踪器轴线方向时。最后,对排间距的分析显示,其对响应无显著影响。
English Abstract
Abstract Single-axis solar trackers enhance energy production and cost-effectiveness in large-scale solar installations compared to fixed panels. However, their structural design must address unique challenges, particularly regarding wind resistance, due to reduced mechanical properties for cost savings. This article examines several key parameters of solar plants and evaluates their influence on tracker response, emphasizing wind-induced aeroelastic effects. These parameters include the layout arrangement of solar plants and the inter-row spacing. Tracker position has been evaluated in a 4-rows by 2-column corner region of rectangular tracker plant, with two ground cover ratios of 0.38 and 0.25. Moreover, the effects of the operational parameters of individual trackers have also been monitored, considering working pitch angles in the range between − 6 0 ∘ and + 6 0 ∘ and wind exposure angles of 0°, 15°, 30° and 45°. Structural properties were assumed to remain constant. The research combines experimental wind tunnel tests with numerical dynamic simulations based on a finite element model, monitoring the internal stress state to assess performance. Results show that large pitch angles ( > 4 5 ∘ ) exhibit stable aeroelastic behavior, while small pitch angles, between − 3 0 ∘ and + 3 0 ∘ , become unstable after reaching a certain velocity threshold. Among the monitored pitches, inclinations between 15° and 30° are the most critical in terms of internal response. The research confirms that trackers on the perimeter are the most stressed in the plants. The largest load cases occur with wind directions normal to the tracker axis. Finally, the analysis of the spacing between rows showed no significant effect on the response.
S
SunView 深度解读
该研究揭示跟踪支架在15-30°倾角时风致气动弹性响应最严峻,对阳光电源SG系列逆变器的MPPT优化策略具有重要指导意义。在大风工况下,可通过智能算法动态调整跟踪角度,避开临界失稳区间,平衡发电效率与结构安全。研究确认的边缘跟踪器高应力特性,可结合iSolarCloud平台实现差异化监控,对边缘阵列实施预测性维护。风向垂直于跟踪轴时载荷最大的结论,可优化ST储能系统的功率调度策略,在极端天气预警时提前储能以补偿跟踪系统保护性平躺造成的发电损失,提升光储系统整体可靠性与经济性。