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Spatial statistical analysis and simulation of the urban heat island in high-density central cities

机译:高密度中心城市城市热岛的空间统计分析与模拟

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The urban heat island (UH1) is a mounting problem in built-up areas, leading to increased temperatures, air pollution, and energy consumption. This paper explores the urban determinants of the UHI, using two-dimensional (2-D) and three-dimensional (3-D) urban information as input to spatial statistical models. The research involves: (a) estimating land surface temperatures, using satellite images, (b) developing a 3-D city model with LiDAR data, (c) generating urban parameters with 2-D/3-D geospatialinformation, and (d) conducting spatial regression analyses. The data are captured over three grids of square cells - 480 m, 240 m, and 120 m - and characterize the center of Columbus. Ohio. The results show that solar radiations, open spaces, vegetation, building roof-top areas, and water strongly impact surface temperatures, and that spatial regressions are necessary to capture neighboring effects. The best regression is obtained with the general spatial model (GSM), which is then used to simulate the temperature effects of different greening scenarios (green roofs, greened parking and vacant lots, vegetation densification) in the center of Columbus. The results demonstrate the potential of such models to mitigate the UHI through design and land-usepolicies.
机译:城市热岛(UH1)在建筑密集地区是一个日益严重的问题,导致温度升高,空气污染和能源消耗增加。本文利用二维(2-D)和三维(3-D)城市信息作为空间统计模型的输入,探索了UHI的城市决定因素。这项研究涉及:(a)使用卫星图像估算地表温度;(b)使用LiDAR数据开发3-D城市模型;(c)使用2-D / 3-D地理空间信息生成城市参数;以及(d)进行空间回归分析。数据在480 m,240 m和120 m的三个方格网格上捕获,并表征了哥伦布的中心。俄亥俄州。结果表明,太阳辐射,开放空间,植被,建筑物屋顶区域和水会对表面温度产生强烈影响,并且需要进行空间回归来捕获邻近的影响。使用通用空间模型(GSM)可获得最佳回归,然后将其用于模拟哥伦布中心不同绿化方案(绿化屋顶,绿化的停车场和空地,植被致密化)的温度影响。结果证明了这种模型通过设计和土地使用政策减轻UHI的潜力。

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