首页> 外文会议>IEEE Latin American GRSS ISPRS Remote Sensing Conference >The Urban Heat Island of Porto Alegre, Rs, Southern Brazil: An Analysis Between 1985 and 2019 Through the Radiative Transfer in the Infrared Thermal.
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The Urban Heat Island of Porto Alegre, Rs, Southern Brazil: An Analysis Between 1985 and 2019 Through the Radiative Transfer in the Infrared Thermal.

机译:巴西南部Rs的阿雷格里港城市热岛:1985年至2019年之间通过红外热辐射传递进行的分析。

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The objective of this study was to verify the evolution of surface temperature associated with land use and land cover from 1985 to 2019 in Porto Alegre, RS, Brazil. The methodological procedures were performed in five steps: 1. Definition of the study area; 2. Land use and land cover classification from images of Landsat 5 satellite Thematic Mapper (TM) and Operational Land Imager (OLI) from Landsat 8 satellite; 3. Calculation of surface temperature from TM sensor band 6 and OLI sensor band 10; 4. Analysis of temperature evolution over the historical series; and 5. Temporal relation between surface temperature and land use and land cover classes. The results demonstrated that higher temperatures were associated to the evolution of two classes of land use and land cover: urban area and exposed soil, with the former occupying 31% in 1989 to 75% in 2018 of the study area. When comparing the first and last decade of the historical series for each season, there was an average increase of 4. 18°C in the surface temperature of the districts. Thus, adopting policies that mitigate the effects caused by densification and urban sprawl are necessary, mainly through the conservation of vegetated areas and water reservoirs, as these are crucial for the maintenance of air humidity and evapotranspiration.
机译:这项研究的目的是验证1985年至2019年巴西RS阿雷格里港与土地利用和土地覆盖相关的地表温度变化。方法程序分五个步骤进行:1.确定研究区域; 2.从Landsat 5卫星专题制图仪(TM)和Landsat 8卫星的可操作土地成像仪(OLI)影像获得的土地利用和土地覆盖物分类; 3.根据TM传感器带6和OLI传感器带10计算表面温度; 4.分析历史序列的温度演变; 5.地表温度与土地利用和土地覆盖类别之间的时间关系。结果表明,较高的温度与两类土地利用和土地覆盖的演变有关:城市区域和裸露的土壤,前者在1989年占研究区域的75%,在2018年占75%。比较每个季节的历史序列的第一个十年和最后一个十年,该地区的地表温度平均升高4. 18°C。因此,有必要采取措施来减轻致密化和城市扩张所带来的影响,这主要是通过保护植被区和水库,因为这些对维持空气湿度和蒸散量至关重要。

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