拉各斯大都市区地表温度对土地覆盖变化的响应动态

J. Obiefuna, P. Nwilo, C. Okolie, E. I. Emmanuel, O. Daramola
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引用次数: 10

摘要

地表温度(LST)是受土地覆盖变化影响的关键环境参数之一。由于人为的城市扩张导致不透水地表面积不断扩大,拉各斯州的地表温度一直在上升。虽然地表温度的变化已经确定,但它的持续监测以及与土地覆盖持续变化的关系,对于适当的管理和政策行动来说是必不可少的。本研究探讨了土地覆盖变化对快速城市化的拉各斯大都市区地表温度的影响。利用1984 - 2015年的Landsat影像及其热带和辅助数据,分析了中国土地覆盖和地表温度的变化。通过分析城市地表温度和城市用地的空间格局,探讨城市地表温度对城市增长的响应。调查结果证实,在Ikorodu、Kosofe等地方自治州以及与奥贡州接壤的地方,大都市北部以前的农村地区出现了城市扩张。这也证实了新的增长区域出现在Amuwo-Odofin LGA的大都市西部。结果进一步表明,拉各斯大都市的快速城市化改变了地表热环境,地表温度升高。建成区和裸地的地表温度上升幅度最大(部分地区高达1.5℃),而湿地和其他植被区在其仍然占据的地区对地表温度起着至关重要的调节作用。这为有关当局制定必要的政策和行动,以减缓城市扩张,同时加快城市绿色基础设施的发展,以应对全球变暖提供了合理的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of Land Surface Temperature in Response to Land Cover Changes in Lagos Metropolis
Land Surface Temperature (LST) is one of the key environmental parameters affected by land cover change. Lagos State has been experiencing an increase in surface temperature due to growing areas of impervious surfaces caused by anthropogenic urban sprawl. While the change in LST has been established, its continuous monitoring and relationship with continuing Land Cover (LC) changes have become imperative for appropriate management and policy actions. This study investigated the effect of land cover change on LST in the rapidly urbanising Lagos metropolis. Using spatio-temporal Landsat imageries with their thermal bands and ancillary data, land cover and LST changes were assessed from 1984 - 2015. The spatial patterns of LST and LC were derived to examine the response of LST to urban growth. Findings confirmed urban sprawl in previously rural areas northward of the metropolis in LGAs such as Ikorodu, Kosofe and those fringing the state’s border with Ogun State. This also confirmed new growth areas as occurring west of the metropolis in Amuwo-Odofin LGA. The results further showed that the rapid urbanisation in Lagos metropolis has altered the surface thermal environment as indicated by increased LST. Built-up area and bare land accounted for the highest increase in LST (as high as 1.5℃ in some areas) while wetlands and other vegetated areas played a vital role in moderating the surface temperature in areas they still occupy. This provides reasonable evidence for the appropriate authorities to institute requisite policies and actions towards moderating urban sprawl while ramping up the development of urban green infrastructure to counter global warming.
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