Hemeroby Mapping of the Belém Landscape in Eastern Amazon and Impact Study of Urbanization on the Local Climate

Leonardo Seabra Furtado, Raimundo Vitor Santos Pereira, E. B. de Souza
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Abstract

This work contributes to the studies on landscape mapping induced by human pressure directly related to the urbanization process, whose approach is based on the concept of hemeroby adapted to the metropolitan area of Belém in the eastern Amazon. The mapping results using 1985 and 2021 Landsat satellite data indicated that the artificial coverage characterized as medium to the high urban system (polyhemerobic and metahemerobic degrees) has increased by almost 17% toward northern districts and Outeiro/Mosqueiro islands, while the natural vegetation cover suppression (ahemerobic degree) was around 11%. In addition, we investigated the impacts of urban expansion on seasonal (WET from January to April and DRY from July to November) surface air temperature (minimum TN and maximum TX) patterns. From statistical comparisons between 18-year samples (2004/2021 to 1985/2002), we find evidence of a current significantly warmer climate, with a notable indication of higher surface temperature over densely urbanized areas compared to lower values over natural areas. In the TX climatology, particularly for the DRY regime, we identified a pattern similar to the classic heat island model with concentric isotherms reaching a maximum center over the more urbanized continental region of Belém and a thermal decrease at the edges. Therefore, the findings of this work are convincing that Belém already faces the direct impacts of urbanization on the local climate, so it is crucial to develop government strategies aimed at taking action to mitigate socioenvironmental risks and threats to the well-being of urban populations.
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Hemeroby 绘制亚马逊东部贝伦地貌图以及城市化对当地气候的影响研究
这项工作有助于对与城市化进程直接相关的人类压力所引起的地貌测绘进行研究,其方法是基于适应亚马逊东部贝伦大都市区的hemeroby概念。利用 1985 年和 2021 年 Landsat 卫星数据进行的测绘结果表明,被定性为中度至高度城市系统(多需氧和元需氧程度)的人工覆盖面积在北部地区和 Outeiro/Mosqueiro 岛增加了近 17%,而自然植被覆盖面积(需氧程度)则减少了约 11%。此外,我们还研究了城市扩张对季节性(1 月至 4 月为湿季,7 月至 11 月为干季)地表气温(最低 TN 和最高 TX)模式的影响。通过对 18 年样本(2004/2021 年与 1985/2002 年)进行统计比较,我们发现当前气候明显变暖的证据,城市化密集地区的地表温度明显高于自然地区的地表温度。在 TX 气候学中,特别是在干湿状态下,我们发现了一种类似于经典热岛模型的模式,即同心等温线在城市化程度较高的贝伦大陆地区中心达到最高值,而在边缘则热量下降。因此,这项工作的研究结果令人信服地表明,贝伦已经面临着城市化对当地气候的直接影响,因此,制定旨在采取行动减轻社会环境风险和对城市人口福祉的威胁的政府战略至关重要。
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