Comprehensive Analysis on the Thermal Comfort of Various Greening Forms: A Study in Hot-humid Areas

Chang Lin, Zhuotong Wu, Hui Li, Jun Huang, Quanle Huang
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Abstract

The potential impact of greening on improving thermal environments is widely recognized. However, few studies have comprehensively evaluated the influence of different forms of greening, such as various tree crown widths, green facades, green roofs, and their combinations, on both outdoor and indoor environments. In this study, we conducted an extensive investigation within a residential precinct at Guangzhou University by combining on-site measurements and numerical simulations with the ENVI-met model. Physiologically Equivalent Temperature (PET) and Temperature Humidity Index (THI) were used to assess outdoor thermal comfort. The results indicated that planting trees had a greater impact on improving the outdoor thermal environment than green facades and green roofs, and this effect increased with the crown width of the trees, with a maximum potential reduction of 4.8 °C (0.2 °C) in PET (THI). Green facades can bring a change of up to 101.9 W/m2 in sensible heat flux, resulting in a reduction of up to 1.8 °C in indoor Ta (air temperature). Conversely, green roofs composed of grass exhibit minimal effects in both outdoor and indoor environments. Finally, we provide recommendations for the construction and renovation of projects in residential areas, with a focus on hot-humid areas.
各种绿化形式的热舒适性综合分析:湿热地区研究
绿化对改善热环境的潜在影响已得到广泛认可。然而,很少有研究全面评估不同形式的绿化,如各种树冠宽度、绿色外墙、绿色屋顶及其组合对室外和室内环境的影响。在本研究中,我们结合现场测量和 ENVI-met 模型的数值模拟,对广州大学的一个住宅区进行了广泛调查。采用生理当量温度(PET)和温湿度指数(THI)来评估室外热舒适度。结果表明,与绿色外墙和绿色屋顶相比,种植树木对改善室外热环境的影响更大,而且这种影响随着树冠宽度的增加而增加,PET(THI)最大可能降低 4.8 °C(0.2 °C)。绿色外墙可带来高达 101.9 W/m2 的显热通量变化,使室内 Ta(气温)最多降低 1.8 °C。相反,由草组成的绿色屋顶对室外和室内环境的影响都很小。最后,我们为住宅区项目的建设和改造提供了建议,重点是湿热地区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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