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A review of the impact of blue space on the urban microclimate

机译:蓝色空间对城市小气门的影响综述

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The urban heat island (UHI) phenomenon represents a major public health issue and has received great attention due to rapid urbanisation. Blue spaces have long been considered a possible mitigation strategy to ameliorate the UHI. However, our knowledge regarding the interaction of waterbodies with their urban surroundings is still limited. This review attempts through a comparative analysis of the available literature to examine the thermal effects of static blue spaces on the urban climate. Remote sensing studies are the most common approach analysed in this review but there is a clear disparity between the cooling potentials reported by remote sensing as opposed to field measurements or numerical simulations, likely due to a lack of nocturnal measurements, when wanning due to thermal inertia can occur and consideration of the latent heat flux. The size and shape of blue spaces are shown to be important variables for the cooling achieved in urban settings but there is no consensus in the literature. This is likely due to the different locations and climates of the studies, it can be hypothesised that in locations with an even distribution of wind directions a rounder waterbody is more effective while in locations where wind direction is more uniform an elongated waterbody aligned to the wind is more effective due to the increased fetch. From the analysis of the literature, it is clear that there is still a distinct knowledge gap regarding the physical interpretation of waterbodies' contribution to the urban climate. There is also a current lack of information about the diurnal and seasonal variability of the various structures and processes. There is evidence, however, that the comfort achieved by sensible cooling can be offset by the increased water vapour content and that during the night blue spaces may actually exacerbate the UHI, reducing urban thermal comfort.
机译:城市热岛(UHI)现象代表了一个主要的公共卫生问题,并且由于快速城市化而受到极大的关注。蓝色空间长期以来一直被认为是可能的缓解策略来改善uhi。然而,我们对与城市周边环境相互作用的知识仍然有限。本综述通过对可用文献的比较分析来检查静态蓝色空间对城市气候的热效应。遥感研究是本综述中分析的最常见的方法,但是通过遥感的遥感报告的冷却电位之间存在明显的差异,而不是现场测量或数值模拟,可能由于缺乏夜间测量而导致的热惯性时可以发生并考虑潜热通量。蓝色空间的尺寸和形状被证明是城市环境中达到的冷却的重要变量,但文献中没有达成共识。这很可能是由于研究的不同位置和气候,可以假设,在风向均匀的风向分布的位置,圆角水体在风向更均匀的位置更加有效,细长的水体与风向一致的较长的水体由于提升的提升,更有效。从对文献的分析来看,很明显,有关水资源同性对城市气候贡献的物理解释仍然存在明显的知识差距。目前还有关于各种结构和过程的昼夜季节性变异性的信息。然而,有证据表明,通过显着的冷却可以通过增加的水蒸气含量抵消,并且在夜间蓝色空间期间可能会加剧UHI,降低城市热舒适度。

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