基于监督分类法的陆地卫星图像研究地表覆盖变化对地表温度的影响

A. Damayanti, Farisya Isnaayu Khairunisa, K. Maulidina
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引用次数: 0

摘要

土地覆盖变化是随着经济发展和城市化进程的加快而发生的,影响着该地区的生态。Garut地区的tarongong Kidul街道经历了土地覆盖变化,从而改变了地表温度。本研究旨在确定土地覆被变化与地表温度的关系。本研究利用Landsat 8 Surface Reflectance Tier 1卫星影像提取2014年、2017年和2020年三个时期归一化植被指数信息,处理土壤表面温度,并采用监督分类方法。通过谷歌Earth Engine和ArcGIS Pro软件进行图像采集和处理。通过简单线性回归和空间相关分析,得出地表温度的分布与土地覆盖植被指数变化的相关关系。研究表明,土地覆被变化与地表温度升高密切相关,地表温度升高表现为土地利用变化地区地表温度的升高。线性回归分析结果(84.49%)证实,土地覆被变化和植被绿度指数是地表温度变化的最关键驱动因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of Land Cover Changes on Land Surface Temperature using Landsat Imagery with the Supervised Classification Method
Land cover changes occur along with development and an increase in urbanization, affecting the region's ecology. Tarogong Kidul Sub-district, Garut District, experiences land cover changes that change land surface temperature. This study aims to determine the relationship between land cover changes and land surface temperature. This study uses Landsat 8 Surface Reflectance Tier 1 satellite imagery to extract Normalized Difference Vegetation Index information and process soil surface temperatures for three periods, 2014, 2017, and 2020 as well as supervised classification methods. Image collection and processing are done via Google Earth Engine and ArcGIS Pro software. The results were in the form of the distribution of land surface temperature correlated with changes in the value of the land cover vegetation index using simple linear regression and spatial correlation analysis. This study reveals that land cover change is closely related to the increase in land surface temperature indicated by the rise in land surface temperature in areas experiencing changes in land use. The results of linear regression analysis (84.49%) confirm that land cover changes and the greenness index of vegetation are the most critical driving factors for changes in land surface temperature.
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