Critical review on the cooling effect of urban blue-green space: A threshold-size perspective

城市热岛 透视图(图形) 空格(标点符号) 环境科学 城市绿地 计算机科学 气象学 地理 艺术 视觉艺术 操作系统
作者
Zhaowu Yu,Gaoyuan Yang,Shudi Zuo,Gertrud Jørgensen,Motoya Koga,Henrik Vejre
出处
期刊:Urban Forestry & Urban Greening [Elsevier BV]
卷期号:49: 126630-126630 被引量:636
标识
DOI:10.1016/j.ufug.2020.126630
摘要

The cooling effect of blue-green space has been recognized as a promising approach to mitigate the urban heat island (UHI), while the quantitative role (threshold-size for cooling) is still uncertain. This paper aims to present the latest progress and controversies on the studies of the cooling effects of waterbodies, greenspaces, and parks. In order to do this research, international search engines were employed to systematically search peer-reviewed articles, including the cooling effect of blue-green space and threshold-size-based UHI mitigation studies. After that, the inductive analysis is used to analyze the relevant literature. We found that previous studies concentrated on the correlations between different landscape types, temperature variations and the quantification of cooling intensity, etc. However, threshold-size-based research has received less attention, which limits the ability to make specific recommendations for actionable planning and management – usingthe smallest blue-green space for the best cooling effect. The review also revealed the controversies over the effects of blue-green space size, shape, landscape composition and configuration on cooling effect. Besides, we pointed out that the uncertainties (i.e., the optimal proportion of blue-green space in a park) and the reasons of controversial results of the cooling effect need to be further investigated. We also suggested that more attention should be paid to quantify the contributions of local background climate and landscape characteristics to the cooling effect (threshold-size) of blue-green space. This review would give us a deeper understanding of the field and provide insights into actionable climate adaption planning.
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