← 返回
光伏发电技术 ★ 5.0

城市屋顶光伏部署对复杂地形下热浪事件期间热环境的影响

Influence of urban rooftop photovoltaic deployment on thermal environment during a heatwave event in complex terrain

作者 Xiaoqing Gaoa · Liwei Yanga · Zhenchao Lib · Dongyu Jiac · Shuyuan Rend · Yanhong Mae
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 301 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 **Cooling effect:** RPVPs lower urban temperatures day and night with stronger cooling in eastern (day) and central (night) areas.
语言:

中文摘要

摘要 本研究探讨了在中国复杂地形城市兰州的一次热浪事件期间,屋顶光伏板(RPVPs)对热环境的影响。通过耦合天气研究与预报(WRF)模型以及建筑效应参数化与建筑能量模型(BEP + BEM),我们模拟了不同覆盖率(25%、50%、75%和100%)的屋顶光伏板对近地表温度、城市热岛(UHI)效应、城市干岛(UDI)效应以及人体热舒适性的影响。结果表明,屋顶光伏板在白天和夜间均能降低城市温度,在白天对城市东部区域的降温效果更为显著,而在夜间则以中心城区的降温作用更为突出。随着屋顶光伏板覆盖率的增加,城市热岛强度(UHII)显著减弱,尤其在午后时段,最大降幅达0.71 K。此外,屋顶光伏板还能缓解城市干岛效应,特别是在14:00至18:00期间表现明显。最后,屋顶光伏板通过在高温峰值时段降低热指数(HI),改善了人体热舒适性,其中城市东部和南部区域的改善效果更为显著。本研究凸显了屋顶光伏板在复杂地形城市中作为有效城市气候缓解策略的潜力,为干旱和半干旱地区的可持续城市发展提供了科学依据。

English Abstract

Abstract This study investigates the influence of rooftop photovoltaic panels (RPVPs) on the thermal environment during a heatwave event in Lanzhou, a complex terrain city in China. Using the Weather Research and Forecasting (WRF) model coupled with the Building Effect Parameterization and Building Energy Model (BEP + BEM), we simulate the impacts of RPVPs with varying coverage rates (25 %, 50 %, 75 %, and 100 %) on near-surface temperature, urban heat island (UHI) effect, urban dry island (UDI) effect, and human thermal comfort. The results demonstrate that RPVPs reduce urban temperatures during both daytime and nighttime, exhibiting a more pronounced cooling effect in the eastern part of the city throughout the daytime and in the central area during nighttime. As the coverage rate of RPVPs increases, the UHI intensity (UHII) is significantly mitigated, particularly in the afternoon, with a maximum reduction of 0.71 K. Furthermore, RPVPs also alleviate the UDI effect, especially between 14:00 and 18:00. Finally, RPVPs improve human thermal comfort by lowering the heat index (HI) during peak heat periods, with the more significant benefits in the eastern and southern urban areas. This study highlights the potential of RPVPs as an effective urban climate mitigation strategy in complex terrain cities, providing scientific insights for sustainable urban development in arid and semi-arid regions.
S

SunView 深度解读

该研究验证了城市屋顶光伏在复杂地形下的降温效应,对阳光电源SG系列组串逆变器的城市屋顶场景应用具有重要价值。研究显示光伏覆盖率提升可显著降低热岛强度(最高0.71K),这为阳光电源在兰州等干旱半干旱地区推广1500V高效逆变系统提供科学依据。建议结合iSolarCloud平台,开发针对复杂地形城市的光伏布局优化算法,通过MPPT技术适配不同朝向屋顶,并整合PowerTitan储能系统实现削峰填谷,最大化城市微气候调节效益与经济收益。