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热带地区光伏与绿化共置系统的整体评估
Holistic assessment of co-located solar photovoltaics and greenery in the tropics: Results on solar photovoltaic output, greenery growth, and roof surface temperature
| 作者 | Faizatuzzahrah Rahmaniah · Joyce Hui Min Lim · Choon Hock Pohc · Lian Sheng Hec · Jeb Yeoc · James Wei Wangc · Selvam Valliappan · Edward Angd · Zhimin Chend · Stephen En Rong Tayae |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 395 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 | Experimental evaluation of co-located PV-GR system in the tropics over a year. |
语言:
中文摘要
摘要 光伏发电系统与绿色屋顶的共置配置在城市环境中因可同时实现可再生能源发电与绿化而受到越来越多的关注。然而,目前针对热带气候条件下此类系统的整体性研究仍较为有限。本研究从三个功能性效益出发,系统地探讨了热带气候下光伏发电与绿化共置的影响:1)光伏发电输出性能;2)植物生长状况;3)屋顶及天花板表面温度。研究结果表明:1)伴随绿化的存在,光伏发电系统的性能比有所提升[绝对增幅为1.0 ± 0.8%];2)位于光伏组件下方的耐阴植物表现出更显著的水平地面覆盖度,且植株健康状况良好、生长旺盛[绝对增幅为19.8 ± 8.0%];3)共置系统下的屋顶表面温度明显降低[降幅达4.7 ± 0.1 °C]。为了量化该共置系统的多功能综合效益,本文提出了“屋顶当量比”(Roof Equivalent Ratio),该指标借鉴自农光互补系统中使用的土地当量比(Land Equivalent Ratio),本研究中所得屋顶当量比为2.39。本研究结果可为类似研究提供参考,特别是在热带地区推动结合光伏发电与绿化的可持续城市环境建设方面具有启发意义。
English Abstract
Abstract Co-located solar photovoltaics and green roof systems have gained increased attention for generating renewable energy and incorporating greenery in urban environments. However, few studies approach the topic from a holistic approach of such a system in tropical climates. In this study, the impact of co-located solar photovoltaics and greenery in a tropical climate was investigated across three functional benefits: 1) solar photovoltaic output, 2) greenery growth, and 3) roof and ceiling surface temperature. Results revealed 1) an increase in photovoltaic performance ratio with greenery [absolute increase of 1.0 ± 0.8 %], 2) shade-tolerant plant species located under photovoltaic modules exhibited a significantly higher horizontal ground coverage with good health and vigour [absolute increase of 19.8 ± 8.0 %], and 3) lower roof surface temperature under co-located solar photovoltaics and greenery [reduction of 4.7 ± 0.1 °C]. To quantify the multi-functional impact of the co-located system, the Roof Equivalent Ratio is proposed, which was adapted from the Land Equivalent Ratio used in agrivoltaics , to which a roof equivalent ratio of 2.39 was obtained for the study. The results of this study could inspire similar research, especially in the tropics, to incorporate renewable energy generation through solar photovoltaic and greenery for sustainable urban environments.
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SunView 深度解读
该研究揭示热带地区光伏绿化共生系统的多重效益,对阳光电源SG系列逆变器及智能运维方案具有重要价值。研究证实绿化可提升光伏性能比1%并降低屋面温度4.7°C,为我司MPPT优化算法提供温控协同思路。建议在iSolarCloud平台集成温度-植被-发电效率关联模型,针对热带城市屋顶场景开发光伏-绿化一体化解决方案,结合ST储能系统实现建筑微网的能源与生态双重优化,拓展可持续城市能源市场。