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Evaluating the cooling effects of green infrastructure: A systematic review of methods, indicators and data sources

机译:评估绿色基础设施的降温效果:系统评估方法,指标和数据来源

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Evidence of temperature moderation through green infrastructure has been largely documented and quantified by literature; however, the critique of available methods and indicators, and the advantage of one over another has not received the same attention. A systematic review was conducted of studies that quantified and reported on the relationship between vegetation-related characteristics and their effect on human thermal comfort, air and surface temperatures. A total of 165 peer-reviewed studies were analysed for their: (a) spatial patterns and climate zones; (b) investigation periods; (c) studied green infrastructure typologies; and (d) methodological aspects. This analysis was aimed to determine particular trends and patterns in the literature and to provide researchers with an overview of methodological aspects to identify knowledge gaps and potential directions for future research. Results show that little is known about the thermal benefits of urban greening in tropical and desert climates, developing countries, and southern-hemisphere regions. Our analysis reveals a lack of standardised protocols and classification systems for green infrastructure enabling the reporting and comparison of thermal data. Most studies overlooked the spatial heterogeneity, connectivity and multi-functionality of green infrastructure which are necessary to understand the interplay and cumulative effects of natural and artificial features. Novel approaches should facilitate the 3-dimensional analysis of urban areas by incorporating the effect of vertical surfaces in current methodologies. Additionally, more research must be done to analyse the role of irrigation and evapotranspiration for cooling urban areas. Most studies were conducted at micro scales; hence, we still know little about the optimum types, amounts and arrangements necessary to mitigate heat more effectively at the local scale. We suggest the integration of drone-based high-resolution imagery, in-situ measurements and statistical modelling for a more precise and accurate thermal analysis of green infrastructure.
机译:通过绿色基础设施进行的温度调节的证据已被大量文献记录和量化;但是,对可用方法和指标的批评以及一种方法相对于另一种方法的优势并未受到同样的关注。对研究进行了系统的回顾,这些研究量化并报告了与植被有关的特征及其对人体热舒适性,空气和地表温度的影响之间的关系。总共对165个同行评审研究进行了分析:(a)空间格局和气候带; (b)调查期; (c)研究了绿色基础设施的类型; (d)方法论方面。这项分析旨在确定文献中的特定趋势和模式,并为研究人员提供方法论方面的概述,以识别知识差距和未来研究的潜在方向。结果表明,对于热带和沙漠气候,发展中国家和南半球地区城市绿化的热效益知之甚少。我们的分析表明,缺乏用于绿色基础设施的标准化协议和分类系统,无法实现热数据的报告和比较。大多数研究忽略了绿色基础设施的空间异质性,连通性和多功能性,这对于理解自然特征和人工特征的相互作用和累积影响是必不可少的。通过将垂直表面的影响纳入当前方法中,新颖的方法应有助于对城市区域进行三维分析。此外,必须做更多的研究来分析灌溉和蒸散对城市地区降温的作用。大多数研究都是在微观尺度上进行的。因此,我们对在地方规模更有效地减少热量所必需的最佳类型,数量和安排仍然知之甚少。我们建议将基于无人机的高分辨率图像,原位测量和统计模型进行集成,以对绿色基础设施进行更精确的热分析。

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