近20年罗马尼亚巴切鲁市暖季地表热岛时空特征及土地利用变化对地表温度的影响

Remote. Sens. Pub Date : 2023-07-03 DOI:10.3390/rs15133385
L. Sfîcă, Alexandru Corocăescu, Claudiu Crețu, Vlad-Alexandru Amihaesei, Pavel Ichim
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引用次数: 0

摘要

本文利用MODIS和Landsat LST影像,对罗马尼亚巴克奇乌市(bacucu City)近20年暖季(4 ~ 9月)地表热岛(SUHI)特征进行了一系列研究。同时,由于MODIS LST具有较高的时间分辨率和白天和夜间的可用性,我们利用MODIS LST来了解SUHI与土地利用的空间特征。利用946张MODIS Terra和483张Landsat卫星图像,勾勒出罗马尼亚东北部这个中等城市晴空日的主要地表温度特征。为了分析2001-2018年MODIS地表温度变化与土地利用变化的关系,我们使用了标准化的CORINE土地覆盖数据集。在Rodionov测试的帮助下,我们能够确定SUHI的几何形状和强度。白天,SUHI的空间延伸达到最大值,以31.0℃的等温线为界,比邻近的非城市地区高1.5 ~ 2.0℃。在夜间,SUHI在城市中心区域周围有一个更有规律的空间扩展,以15.5°C等温线为界,LST值比周围的非城市区域高1.0-1.5°C。此外,从方法学的角度来看,我们强调在500 m空间分辨率下重新采样的MODIS和Landsat图像可以放心地用于了解SUHI的详细空间特征。这项研究的结果可以帮助制定未来的政策,以减轻夏季气温升高时代城市化对SUHI的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatiotemporal Features of the Surface Urban Heat Island of Bacău City (Romania) during the Warm Season and Local Trends of LST Imposed by Land Use Changes during the Last 20 Years
Using MODIS and Landsat LST images, the present paper advances a series of results on the characteristics of the surface heat island (SUHI) of Bacău City (Romania) during the warm season (April to September) for a period of 20 years (2001–2020). At the same time, given their higher temporal resolution and their availability for both day and night, MODIS LST was used to understand the spatial features of the SUHI in relation to land use. In this way, a total of 946 MODIS Terra and 483 Landsat satellite images were used to outline the main LST characteristics of the days with clear sky in this middle-sized city in northeast Romania. In order to analyze MODIS LST changes in relation to land use changes in the period 2001–2018, we used the standardized CORINE Land Cover datasets. With the help of the Rodionov test, we were able to determine the geometry and intensity of the SUHI. During the day, the spatial extension of the SUHI reaches its maximum level and is delimited by the isotherm of 31.0 °C, which is 1.5–2.0 °C warmer than the neighboring non-urban areas. During the night, the SUHI has a more regulated spatial extension around the central area of the city, delimited by the 15.5 °C isotherm with LST values that are 1.0–1.5 °C warmer than the surrounding non-urban areas. Additionally, from a methodological point of view, we highlight that resampled MODIS and Landsat images at a spatial resolution of 500 m can be used with confidence to understand the detailed spatial features of the SUHI. The results of this study could help the elaboration of future policies meant to mitigate the effects of urbanization on the SUHI in an era of increasing air temperatures during summer.
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