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滨水高密度街区中不同绿地模式的降温效果比较研究——以上海为例。

Comparative Study on the Cooling Effects of Green Space Patterns in Waterfront Build-Up Blocks: An Experience from Shanghai.

机构信息

Center for Modern Chinese City Studies, School of Urban and Regional Science, East China Normal University, Shanghai 200062, China.

Institute of Eco-Chongming, Shanghai 202162, China.

出版信息

Int J Environ Res Public Health. 2020 Nov 23;17(22):8684. doi: 10.3390/ijerph17228684.

Abstract

Different structural patterns of waterfront green space networks in built-up areas have different synergistic cooling characteristics in cities. This study's aim is to determine what kinds of spatial structures and morphologies of waterfront green spaces offer a good cooling effect, combined with three different typical patterns in Shanghai. A multidimensional spatial influence variable system based on the cooling effect was constructed to describe the spatial structural and morphological factors of the green space network. The ENVI-met 4.3 software, developed by Michael Bruse at Bochum, German, was used to simulate the microclimate distribution data, combined with the boosted regression tree (BRT) model and the correlation analysis method. The results showed that at the network level, the distance from the water body and the connectivity of green space had a stronger cooling correlation. The orientation of green corridors consistent with a summer monsoon had larger cooling effect ranges. In terms of spatial morphology, the vegetation sky view factor (SVF) and Vegetation Surface Albedo (VS) had an important correlation with air temperature (T), and the green corridor with a 20-25 m width had the largest marginal effect on cooling. These results will provide useful guidance for urban climate adaptive planning and design.

摘要

不同建成区滨水绿地网络的结构模式在城市中具有不同的协同降温特征。本研究旨在确定滨水绿地具有良好降温效果的空间结构和形态类型,结合上海的三种不同典型模式。构建了一个基于降温效果的多维空间影响变量系统,以描述绿地网络的空间结构和形态因素。使用由德国波鸿的 Michael Bruse 开发的 ENVI-met 4.3 软件模拟微气候分布数据,并结合了提升回归树 (BRT) 模型和相关分析方法。结果表明,在网络层面上,水体距离和绿地连通性与降温效果具有更强的相关性。与夏季季风方向一致的绿廊具有更大的降温效果范围。在空间形态方面,植被天空视角因子 (SVF) 和植被表面反照率 (VS) 与气温 (T) 具有重要的相关性,而 20-25 米宽的绿廊对降温的边际效应最大。这些结果将为城市气候适应性规划和设计提供有用的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dce/7700697/a820a80a432b/ijerph-17-08684-g001.jpg

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