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Spatiotemporal analysis of the atmospheric and surface urban heat islands of the Metropolitan Area of Toluca, Mexico

机译:墨西哥托卢卡大都市区大气和地表城市热岛的时空分析

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The dynamic of consolidation of urban areas in Latin America has allowed that almost 80% of the population concentrates in cities; this has produced changes in land covers and modified regional climate, propitiating the appearance of urban heat islands. The Metropolitan Area of Toluca, State of Mexico, Mexico, holds the fifth national place in population size and experiences this process, because of this, the objective is to analyze and compare the spatiotemporal characteristics of the atmospheric urban heat island obtained from data gathered from 12 urban and rural weather stations with the surface urban heat island obtained from the digital processing of four Landsat 8 images. Results show the year-round presence of night-time atmospheric urban heat islands, which reach a peak in autumn (up to 6 degrees C). Daytime atmospheric urban heat islands occur in summer and autumn with a maximum intensity of 4 degrees C. For their part, surface urban heat islands occur in spring, summer and autumn and reach maximums of 19 degrees C in intensity. A strong correlation was found between wetness and surface temperature (coefficient of determination, 0.8) in spring and winter. Soil wetness directly impacts the formation of weak urban heat islands in dry season, and intense ones in wet season, while the green areas and the winds affect the spatial distribution of the same.
机译:拉丁美洲城市地区整合的动态使几乎80%的人口集中在城市。这导致了土地覆被的变化和区域气候的改变,促进了城市热岛的出现。墨西哥墨西哥州托卢卡市大都会区在人口规模上排名第五,因此经历了这一过程,因此,目的是分析和比较从收集的数据中获得的大气城市热岛的时空特征。通过对4个Landsat 8图像进行数字处理,获得了12个城市和乡村气象站,它们具有地表城市热岛。结果显示,夜间存在大气中的城市热岛,全年都有,秋天达到峰值(最高6摄氏度)。白天的大气城市热岛发生在夏季和秋季,最高强度为4摄氏度。表面上的城市热岛发生在春季,夏季和秋季,强度最高为19摄氏度。在春季和冬季,湿度和表面温度之间存在很强的相关性(测定系数为0.8)。土壤湿度直接影响干旱季节城市弱热岛的形成,而湿季则强烈影响城市热岛的形成,而绿地和风影响其空间分布。

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