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A review of mitigating strategies to improve the thermal environment and thermal comfort in urban outdoor spaces

机译:改善城市室外空间热环境和热舒适性的缓解策略综述

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Urban open space provides various benefits to citizens, but the thermal environment of this space is impacted by global warming and urban heat islands. A growing number of studies have been conducted on strategies for improving the urban thermal environment and attracting more people to outdoor spaces. This paper reviews the mechanisms and cooling effects of four major mitigation strategies, namely, changing the urban geometry, planting vegetation, using cool surface, and incorporating bodies of water. Our review found that on summer days these four strategies yielded a median reduction in air temperature of 2.1 K, 2.0 K, 1.9 K, and 1.8 K, respectively. In terms of integrated effect on thermal comfort, changing the urban geometry provided the greatest improvement, with the largest reduction in physiologically equivalent temperature (PET) in summer (median Delta PET = 18.0 K). The use of vegetation and water bodies reduced the median PET by 13.0 K and 4.6 K, respectively. However, some simulation studies found that reflective surface led to higher PET in summer because of the increased amount of reflected solar radiation. The mitigation strategies improved the urban thermal environment to a greater extent in hotter and drier climates. Vegetation, cool surface, and water bodies provided less cooling in compact urban spaces than in open areas. The results that we reviewed can be used by designers and planners seeking to create thermally comfortable urban open spaces. (C) 2019 Elsevier B.V. All rights reserved.
机译:城市开放空间为公民提供了各种好处,但是该空间的热环境受到全球变暖和城市热岛的影响。关于改善城市热环境和吸引更多人到室外空间的策略的研究越来越多。本文回顾了四种主要的缓解策略的机理和降温效果,即改变城市的几何形状,种植植被,使用凉爽的地表以及结合水体。我们的评论发现,在夏季,这四种策略分别使气温分别降低了2.1 K,2.0 K,1.9 K和1.8K。就对热舒适性的综合影响而言,改变城市几何形状提供了最大的改善,夏季的生理等效温度(PET)下降幅度最大(中位数Delta PET = 18.0 K)。植被和水体的使用分别使中位数PET降低了13.0 K和4.6K。然而,一些模拟研究发现,由于反射的太阳辐射量增加,反射面导致夏季PET升高。缓解策略在炎热和干燥的气候条件下在很大程度上改善了城市的热环境。与开放区域相比,紧凑的城市空间中的植被,凉爽的地面和水体提供的冷却较少。我们审查的结果可用于寻求创建热舒适的城市开放空间的设计师和规划师。 (C)2019 Elsevier B.V.保留所有权利。

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