绿色应该去哪里?系统的文献综述绿色基础设施的选址方法,以减轻全球城市中不断上升的热量和雨水风险

IF 6 2区 环境科学与生态学 Q1 ENVIRONMENTAL STUDIES
Saeideh Sobhaninia , Sara Meerow , Aubrey Dugger , Thomas Hopson , Cenlin He , Olga Wilhelmi
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引用次数: 0

摘要

热浪和洪水分别被认为是最致命和最昂贵的气候灾害,而且由于城市发展和气候变化,这两种灾害都在加剧。为此,全球许多城市越来越多地转向绿色基础设施(GI),以减轻极端高温和洪水等气候风险,同时增强整体抵御能力。然而,现有的研究表明,全球地理标志知识系统存在重大差距,这削弱了这些投资的有效性。其中包括狭隘地关注有限的功能,而忽视了其他功能,以及缺乏对决定哪些GI功能优先考虑和在何处优先考虑的决策过程的研究。地理标志选址所使用的指标和模型可能会影响其在城市环境中管理雨水和减轻高温风险的有效性,以及谁能从地理标志投资中受益。本研究系统地回顾了国际上关于地理标志空间规划的学术文献,分析了地理标志的类型、指标,并提出了地理标志选址的方法,以应对城市的热量和雨水挑战。我们的研究结果表明,尽管广泛呼吁多功能地理标志,但在学术文献中,热地理标志和雨水地理标志的空间规划在很大程度上仍然是分开的。与减少热风险的方法相比,用于雨水管理的地理标志选址具有更强大和一致的文献体系,其方法相似,而且两个重点领域使用的地理标志类型有所不同。这项研究提供了有价值的见解,可以为地理标志规划提供更综合、更有效的方法,增强城市对气候灾害的抵御能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Where should the green go? A systematic literature review of methods for siting green infrastructure to mitigate rising heat and stormwater risks in cities worldwide
Heat and flooding are frequently cited as among the deadliest and costliest climate hazards, respectively, and both are intensifying due to urban developments and climate change. In response, many cities worldwide are increasingly turning to green infrastructure (GI) to mitigate climate risks such as extreme heat and flooding while enhancing overall resilience. However, existing research suggests that knowledge systems for GI globally have significant gaps that undermine the effectiveness of these investments. These include a narrow focus on limited functions while neglecting others and a lack of research on the decision-making processes that determine which GI functions are prioritized and where. The metrics and models used for siting GI likely shape its effectiveness in managing stormwater and mitigating heat risks in urban settings as well as who benefits from GI investments. This study systematically reviews the academic literature on GI spatial planning worldwide to analyze the GI types, indicators, and methods proposed for siting GI to address heat and stormwater challenges in cities. Our findings reveal that the spatial planning of GI for heat and stormwater remains largely separate in the academic literature, despite widespread calls for multifunctional GI. GI siting for stormwater management has a more robust and consistent body of literature with similar methodologies compared to that for heat risk mitigation, and the types of GI used differ between the two focus areas. This study provides valuable insights that can inform more integrated and effective approaches to GI planning, enhancing urban resilience to climate hazards.
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来源期刊
CiteScore
11.70
自引率
12.50%
发文量
289
审稿时长
70 days
期刊介绍: Urban Forestry and Urban Greening is a refereed, international journal aimed at presenting high-quality research with urban and peri-urban woody and non-woody vegetation and its use, planning, design, establishment and management as its main topics. Urban Forestry and Urban Greening concentrates on all tree-dominated (as joint together in the urban forest) as well as other green resources in and around urban areas, such as woodlands, public and private urban parks and gardens, urban nature areas, street tree and square plantations, botanical gardens and cemeteries. The journal welcomes basic and applied research papers, as well as review papers and short communications. Contributions should focus on one or more of the following aspects: -Form and functions of urban forests and other vegetation, including aspects of urban ecology. -Policy-making, planning and design related to urban forests and other vegetation. -Selection and establishment of tree resources and other vegetation for urban environments. -Management of urban forests and other vegetation. Original contributions of a high academic standard are invited from a wide range of disciplines and fields, including forestry, biology, horticulture, arboriculture, landscape ecology, pathology, soil science, hydrology, landscape architecture, landscape planning, urban planning and design, economics, sociology, environmental psychology, public health, and education.
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