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Analysis and Sustainable Management of Urban Growth’s Impact on Land Surface Temperature in Lagos, Nigeria

机译:尼日利亚拉各斯城市增长对地表温度影响的分析和可持续管理

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The rapid growth in urban population is seen to create a need for the development of more urban infrastructures. In order to meet this need, natural surfaces such as vegetation are been replaced with non-vegetated surfaces such as asphalt and bricks which has the ability to absorb heat and release it later. This change in land cover is seen to increase the land surface temperature.Previous studies have tried to explain the impact of land cover changes on the land surface temperature. However, there is a growing need to spatially quantify the extent to which temperature has increased so as to identify areas where immediate mitigation measures can be applied. In view of this, this study has incorporated remotely sensed Landsat data with remote sensing techniques in order to effectively quantify the spatial extent of urban growth and its impact on the land surface temperature in Lagos, Nigeria.The result shows that there have been changes in the land cover which has increased the land surface temperature between 2002 and 2013. Overall, there was an increase in the highly dense areas, moderately dense areas and less dense areas by 3.35% (2200.77 ha), 27.87% (13681.35 ha), 6.20% (3284.01 ha) and a corresponding increase in the mean land surface temperature of these urban areas by 3.8°C, 4.2°C and 2.2°C. Hence, it was recommended that in order to reduce the temperature of the urban areas, sustainable urban planning strategies that include increasing the vegetated areas and embracing other green initiatives such as urban forestry should be adopted.
机译:城市人口的快速增长被认为需要发展更多的城市基础设施。为了满足这种需求,自然表面(例如植被)被非植被表面(例如,沥青和砖头)所取代,后者具有吸收热量并随后释放热量的能力。土地覆盖的这种变化被认为会增加地表温度。先前的研究试图解释土地覆盖变化对地表温度的影响。但是,越来越需要在空间上量化温度升高的程度,以便确定可以立即采取缓解措施的区域。有鉴于此,本研究将遥感的Landsat数据与遥感技术相结合,以便有效地量化尼日利亚拉各斯的城市发展的空间范围及其对地表温度的影响。土地覆盖物在2002年至2013年间升高了地表温度。总体而言,高密度地区,中密度地区和低密度地区分别增加了3.35%(2200.77公顷),27.87%(13681.35公顷),6.20 (3284.01公顷),这些城市地区的平均地表温度相应升高了3.8°C,4.2°C和2.2°C。因此,建议为了降低城市温度,应采取可持续的城市规划策略,包括增加植被覆盖面积并采用其他绿色举措,例如城市林业。

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