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绿色和蓝色基础设施缓解城市热岛效应:驱动因素、成效及未来需求

Urban heat mitigation by green and blue infrastructure: Drivers, effectiveness, and future needs.

作者信息

Kumar Prashant, Debele Sisay E, Khalili Soheila, Halios Christos H, Sahani Jeetendra, Aghamohammadi Nasrin, Andrade Maria de Fatima, Athanassiadou Maria, Bhui Kamaldeep, Calvillo Nerea, Cao Shi-Jie, Coulon Frederic, Edmondson Jill L, Fletcher David, Dias de Freitas Edmilson, Guo Hai, Hort Matthew C, Katti Madhusudan, Kjeldsen Thomas Rodding, Lehmann Steffen, Locosselli Giuliano Maselli, Malham Shelagh K, Morawska Lidia, Parajuli Rajan, Rogers Christopher D F, Yao Runming, Wang Fang, Wenk Jannis, Jones Laurence

机构信息

Global Centre for Clean Air Research (GCARE), School of Sustainability, Civil and Environmental Engineering, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford GU2 7XH, UK.

Institute for Sustainability, University of Surrey, Guildford GU2 7XH, Surrey, UK.

出版信息

Innovation (Camb). 2024 Feb 7;5(2):100588. doi: 10.1016/j.xinn.2024.100588. eCollection 2024 Mar 4.

Abstract

The combination of urbanization and global warming leads to urban overheating and compounds the frequency and intensity of extreme heat events due to climate change. Yet, the risk of urban overheating can be mitigated by urban green-blue-grey infrastructure (GBGI), such as parks, wetlands, and engineered greening, which have the potential to effectively reduce summer air temperatures. Despite many reviews, the evidence bases on quantified GBGI cooling benefits remains partial and the practical recommendations for implementation are unclear. This systematic literature review synthesizes the evidence base for heat mitigation and related co-benefits, identifies knowledge gaps, and proposes recommendations for their implementation to maximize their benefits. After screening 27,486 papers, 202 were reviewed, based on 51 GBGI types categorized under 10 main divisions. Certain GBGI (green walls, parks, street trees) have been well researched for their urban cooling capabilities. However, several other GBGI have received negligible (zoological garden, golf course, estuary) or minimal (private garden, allotment) attention. The most efficient air cooling was observed in botanical gardens (5.0 ± 3.5°C), wetlands (4.9 ± 3.2°C), green walls (4.1 ± 4.2°C), street trees (3.8 ± 3.1°C), and vegetated balconies (3.8 ± 2.7°C). Under changing climate conditions (2070-2100) with consideration of RCP8.5, there is a shift in climate subtypes, either within the same climate zone (e.g., Dfa to Dfb and Cfb to Cfa) or across other climate zones (e.g., Dfb [continental warm-summer humid] to BSk [dry, cold semi-arid] and Cwa [temperate] to Am [tropical]). These shifts may result in lower efficiency for the current GBGI in the future. Given the importance of multiple services, it is crucial to balance their functionality, cooling performance, and other related co-benefits when planning for the future GBGI. This global GBGI heat mitigation inventory can assist policymakers and urban planners in prioritizing effective interventions to reduce the risk of urban overheating, filling research gaps, and promoting community resilience.

摘要

城市化与全球变暖相互交织,导致城市过热,并加剧了气候变化引发的极端高温事件的频率和强度。然而,城市绿色-蓝色-灰色基础设施(GBGI),如公园、湿地和人工绿化等,能够缓解城市过热的风险,它们有潜力有效降低夏季气温。尽管已有诸多综述,但关于GBGI降温效益的量化证据仍然不完整,且实施方面的实际建议也不明确。本系统文献综述综合了缓解高温及相关协同效益的证据基础,找出了知识空白,并提出了实施建议,以最大化其效益。在筛选了27486篇论文后,基于10个主要类别下的51种GBGI类型,对其中202篇进行了综述。某些GBGI(绿墙、公园、行道树)的城市降温能力已得到充分研究。然而,其他一些GBGI(动物园、高尔夫球场、河口)受到的关注极少,(私家花园、小块菜地)则关注度极低。在植物园(5.0±3.5°C)、湿地(4.9±3.2°C)、绿墙(4.1±4.2°C)、行道树(3.8±3.1°C)和植被阳台(3.8±2.7°C)中观察到了最有效的空气降温效果。在考虑RCP8.5的变化气候条件下(2070-2100年),气候亚型会发生转变,要么在同一气候区内(如从Dfa转变为Dfb,从Cfb转变为Cfa),要么跨越其他气候区(如从Dfb[大陆性暖夏湿润型]转变为BSk[干旱、寒冷半干旱型],从Cwa[温带型]转变为Am[热带型])。这些转变可能导致未来现有GBGI的效率降低。鉴于多种服务的重要性,在规划未来的GBGI时,平衡其功能、降温性能及其他相关协同效益至关重要。这份全球GBGI降温清单可协助政策制定者和城市规划者确定有效干预措施的优先级,以降低城市过热风险,填补研究空白,并提升社区复原力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3790/10909648/4eae757fc884/fx1.jpg

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