Institute of Ecology and Sustainable Development, Shanghai Academy of Social Sciences, No.7, Lane 622, Huaihaizhong Road, Huangpu District, Shanghai 200020, China.
Research Center for Eco-Environment Sciences, Chinese Academy of Sciences, Shuangqing Rd. 18, Beijing 100085, China.
Int J Environ Res Public Health. 2021 Jun 1;18(11):5941. doi: 10.3390/ijerph18115941.
Research shows that urban green spaces (UGSs) provide a number of positive effects, including enhancing human thermal comfort levels by decreasing air temperature (AT) and increasing relative humidity (RH). However, research on how the shape of an UGS influences these effects is yet to be explored. This paper explores the principles and features behind this. The AT and RH surrounding an UGS within a horizontal scale of 20 m was explored. Microclimate field measurements around 35 UGSs in Shanghai, China were carried out. The samples covered the most applied types of UGSs-punctiform, linear, and planar. Comparison spots were selected away from the sampled UGSs. The effects were studied by data collection and statistical analysis. The results indicate that the shape of the UGS had significant impact on the Temperature Humidity Index (THI). In the summer, the amplitude of THI variation decreases with the distance to UGS. For punctiform UGS, a larger total area and existence of water body results in a lower THI. A wider, linear UGS with the same orientation as the direction of the prevailing wind contributes more to decrease the surrounding THI. The total area of planar UGS is not critical. A higher landscape shape index of a planar UGS is the critical point to achieve a lower THI. The results can serve as a reference when planning and designing future UGSs.
研究表明,城市绿地(UGS)具有多种积极影响,包括通过降低空气温度(AT)和增加相对湿度(RH)来提高人体热舒适度。然而,关于 UGS 的形状如何影响这些效果的研究尚未得到探索。本文探讨了这背后的原理和特点。研究了 UGS 在水平 20 米范围内的 AT 和 RH。在中国上海的 35 个 UGS 周围进行了微气候现场测量。样本涵盖了最常用的 UGS 类型——点状、线状和平面状。选择了远离采样 UGS 的对比点。通过数据收集和统计分析研究了这些影响。结果表明,UGS 的形状对温度湿度指数(THI)有显著影响。在夏季,THI 变化的幅度随距 UGS 的距离而减小。对于点状 UGS,更大的总面积和水体的存在会导致较低的 THI。与盛行风向方向一致的更宽的线状 UGS 有助于降低周围的 THI。平面 UGS 的总占地面积并不关键。平面 UGS 的更高景观形状指数是实现较低 THI 的关键点。这些结果可以为未来 UGS 的规划和设计提供参考。