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Spatial patterns of greenspace cool islands and their relationship to cooling effectiveness in the tropical city of Chiang Mai, Thailand

机译:泰国清迈热带城市凉爽岛屿的空间格局及其与降温效果的关系

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Urban greenspaces provide evaporative cooling, which can help effectively mitigate the urban heat island (UHI) to achieve a sustainable urban climate. This study examines the cooling effects of greenspace patterns on urban cool islands (UCIs) at the patch level in an urban environment. The effects of 1155 patches of greenspace cool islands (GCIs) on UCIs of the Chiang Mai metropolitan area in Thailand were identified from a satellite image, and the relationships between them were analyzed through correlation and regression analyses. The results indicate that (1) spatial patterns of GCIs have significant effects on their cooling potential, while urban areas with more green patch coverage encounter stronger cooling effects; also, (2) our correlation analysis of three fundamental and widely recognized classes of landscape metrics (area, shape, and core of GCIs with temperature change) shows that the most important metric of effective cooling is the core area. These findings can help planners understand greenspaces established in urban areas and plan urban greenspace to mitigate UHI effects.
机译:城市绿地提供蒸发冷却,这可以帮助有效减轻城市热岛(UHI)以实现可持续的城市气候。本研究在城市环境中的斑块水平上研究了绿地模式对城市凉爽岛屿(UCI)的冷却效果。通过卫星图像确定了1155个绿地冷岛斑块对泰国清迈市区UCI的影响,并通过相关性和回归分析分析了它们之间的关系。结果表明:(1)GCIs的空间格局对其降温潜力有显着影响,而绿色斑块覆盖率较高的城市地区降温效果更强;同样,(2)我们对三种基本且广为接受的景观度量标准(随温度变化的GCI的面积,形状和核心)进行的相关分析表明,有效冷却的最重要度量标准是核心面积。这些发现可帮助规划人员了解在城市地区建立的绿地,并规划城市绿地以减轻UHI影响。

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