小气候
环境科学
屋顶
大气科学
城市热岛
绿色屋顶
湿度
相对湿度
辐射冷却
热舒适性
白天
反照率(炼金术)
气象学
辐射传输
空气温度
地理
工程类
土木工程
地质学
艺术
考古
表演艺术
物理
量子力学
艺术史
作者
Jaafar Younes,Kamel Ghali,Nesreen Ghaddar
标识
DOI:10.1016/j.scs.2022.103932
摘要
This study investigates the impact of diurnal radiative cooling (RC) roof panels RC roofs in mitigating the urban heat island (UHI) at city scale in comparison with high albedo roofs and concrete roofs. A validated microclimate model that embeds a building energy model is used to predict the street level temperature and thermal comfort. The effective radiative properties of RC surface are calculated using their spectral angular properties in a spectral angular atmospheric model. A case study of Beirut city with its morphology and microclimate was simulated on representative days of the year. At the peak of a humid summer day in Beirut, daytime RC roof panels resulted in a reduction in air temperature at the pedestrian level by at least 0.8°C in high building density regions enhancing outdoor thermal comfort. While the RC panel's surface temperature drop was greatest at night, its effect on the microclimate at night was negligible. At lower humidity days, the RC surface temperature was lower, however, RC impact on pedestrian level air temperature was not significantly changed. At moderate and high humidity days, RC panels yielded a similar microclimate influence on pedestrian level air temperature and outdoor thermal comfort to high-performance cool roofs.
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