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Detecting the Cool Island Effect of Urban Parks in Wuhan: A City on Rivers

机译:检测武汉城市公园的酷岛效果:河流的城市

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摘要

As a nature-based solution, development of urban blue-green spaces is widely accepted for mitigating the urban heat island (UHI) effect. It is of great significance to determine the main driving factors of the park cool island (PCI) effect for optimizing park layout and achieving a maximum cooling benefit of urban parks. However, there have been obviously controversial conclusions in previous studies due to varied case contexts. This study was conducted in Wuhan, a city with high water coverage, which has significant differences in context with the previous case cities. The PCI intensity and its correlation with park characteristics were investigated based on remote sensing data. The results indicated that 36 out of 40 urban parks expressed a PCI effect, with a PCI intensity of 0.08~7.29 °C. As expected, larger parks with enough width had stronger PCI intensity. An increased density of hardened elements in a park could significantly weaken PCI effect. Noticeably, in this study, water bodies in a park contributed the most to the PCI effect of urban parks, while the vegetated areas showed a negative impact on the PCI intensity. It implied that in a context with higher water coverage, the cooling effect of vegetation was weakened or even masked by water bodies, due to the interaction effect of different variables on PCI intensity.
机译:作为基于自然的解决方案,广泛接受城市蓝绿空间的发展,以减轻城市热岛(UHI)效应。确定公园酷岛(PCI)效果的主要驾驶因素具有重要意义,以优化公园布局,实现城市公园的最大冷却利益。然而,由于案例范围的案例背景,以前的研究已经明显存在争议的结论。该研究在武汉进行了一个高水覆盖的城市,这在上一个案例城市具有显着差异。基于遥感数据研究了PCI强度及其与公园特征的相关性。结果表明,40个城市公园中的36个表达了PCI效应,PCI强度为0.08〜7.29°C。如预期的那样,具有足够宽度的较大公园具有更强的PCI强度。公园中硬化元素的密度增加可以显着削弱PCI效应。明显的是,在这项研究中,公园里的水体对城市公园的PCI效应贡献了最大的影响,而植被区域对PCI强度产生负面影响。它暗示在具有较高水覆盖的背景下,由于不同变量对PCI强度的相互作用效应,植被的冷却效果削弱或甚至被水体掩盖。

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