College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou 510642, China.
Institute for Environmental and Climate Research, Jinan University, Guangzhou 511443, China.
Sci Total Environ. 2023 Feb 10;859(Pt 2):160408. doi: 10.1016/j.scitotenv.2022.160408. Epub 2022 Nov 21.
Many studies have focused mainly on the thermal and energy performance of VGSs on a building scale; however, little is known about the cooling effect of VGSs in street canyons and its response to different aspect ratios (building height/street width, H/W). Therefore, a scaled outdoor experiment was conducted to investigate the spatiotemporal variation of the urban wind and thermal environment caused by west-facing vertical greenery systems (VGSs) in street canyons with H/W = 1 and 2 in the subtropical city of Guangzhou, China. On a typical hot day (26th Oct. 2021), VGSs reduced wind speed by 38.0 % and 21.0 % in street canyons with H/W = 1 and 2, respectively. Compared with the reference cases, the temperature regimes of VGS cases (H/W = 1 and 2), including west-facing wall temperature (T), east-facing wall temperature (T), ground temperature (T), and air temperature (T), were all significantly decreased. Because of the cooling effect of VGSs, the maximum reduction of T in the upper level of street canyons with H/W = 1 and 2 was 20.3 and 16.8 °C, respectively. The maximum reduction of T in the center of the VGS case with H/W = 2 was 4.6 °C, which was more pronounced than in the VGS case with H/W = 1 (1.8 °C). The maximum reduction of T at the pedestrian level along the central axis of street canyons with H/W = 1 and 2 was 0.8 and 1.6 °C, respectively, which was more pronounced than at the upper level. The reduction of T in the upper level and of T and T in the VGS case with H/W = 2 was greater than that in the VGS case with H/W = 1 due to lower wind speed and albedo.
许多研究主要集中在建筑物尺度上的垂直绿化系统(VGS)的热工性能和能量性能上;然而,对于 VGS 在街道峡谷中的冷却效果及其对不同纵横比(建筑高度/街道宽度,H/W)的响应知之甚少。因此,在中国亚热带城市广州,进行了一项室外比例模型实验,以研究西向垂直绿化系统(VGS)在 H/W=1 和 2 的街道峡谷中对城市风场和热环境的时空变化。在一个典型的炎热天气(2021 年 10 月 26 日),VGS 分别使 H/W=1 和 2 的街道峡谷中风速降低了 38.0%和 21.0%。与参考案例相比,VGS 案例(H/W=1 和 2)的温度场,包括西墙温度(T)、东墙温度(T)、地面温度(T)和空气温度(T),均显著降低。由于 VGS 的冷却效果,H/W=1 和 2 的街道峡谷上层的 T 最大降幅分别为 20.3 和 16.8°C。H/W=2 的 VGS 案例中心的 T 最大降幅为 4.6°C,比 H/W=1 的 VGS 案例(1.8°C)更为显著。H/W=1 和 2 的街道峡谷中心轴线上行人高度处的 T 最大降幅分别为 0.8 和 1.6°C,比上层更为显著。由于风速和反照率较低,H/W=2 的 VGS 案例中,T 在高层以及 T 和 T 在 VGS 案例中的降幅均大于 H/W=1 的 VGS 案例。