Google Earth引擎云地理处理技术在巴西半干旱区植被覆盖和土地利用占用中的应用

Q3 Social Sciences Human Geographies Pub Date : 2022-10-02 DOI:10.3390/geographies2040036
Jhon Lennon Bezerra da Silva, Daiana Caroline Refati, Ricardo da Cunha Correia Lima, A. A. De Carvalho, Maria Beatriz Ferreira, Héliton Pandorfi, Marcos Vinícius da Silva
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引用次数: 1

摘要

土地覆盖和利用的专题地图可以协助监测半干旱地区的环境,这主要是由于气候变化的出现,例如干旱,以及人类活动的压力,例如城市地区的发展。地质技术的使用是其有效性和低运营成本的关键。目的是利用谷歌地球引擎(GEE)中的云遥感技术,评估和了解巴西半干旱区土地覆盖和土地利用的时空动态变化,并确定36年来(1985年至2020年)变化条件的年度趋势。利用MapBiomas Brazil提供的土地覆盖和土地利用专题地图,通过Mann-Kendall趋势分析进行评估。归一化植被指数(NDVI)也通过对Landsat系列卫星1985年至2020年的800幅轨道图像进行数字处理得到。对土地覆盖和利用的趋势分析发现,随着时间的推移,森林地区和水体的损失,其次是暴露的土壤地区和城市基础设施的增加。原生植被的改变直接影响到水的供应,农业活动增加了对水资源的压力,主要是在严重干旱时期。NDVI发现2013 - 2020年受气候变率条件影响最大,平均值极低。土地覆盖和利用专题地图以及生物物理指数是减轻巴西半干旱地区环境影响的重要指标。
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Techniques of Geoprocessing via Cloud in Google Earth Engine Applied to Vegetation Cover and Land Use and Occupation in the Brazilian Semiarid Region
Thematic maps of land cover and use can assist in the environmental monitoring of semiarid regions, mainly due to the advent of climate change, such as drought, and pressures from anthropic activities, such as the advance of urban areas. The use of geotechnologies is key for its effectiveness and low operating cost. The objective was to evaluate and understand the spatiotemporal dynamics of the loss and gain of land cover and use in a region of the Brazilian semiarid region, and identify annual trends from changing conditions over 36 years (1985 to 2020), using cloud remote sensing techniques in Google Earth Engine (GEE). Thematic maps of land cover and land use from MapBiomas Brazil were used, evaluated by Mann–Kendall trend analysis. The Normalized Difference Vegetation Index (NDVI) was also determined from the digital processing of about 800 orbital images (1985 to 2020) from the Landsat series of satellites. The trend analysis for land cover and use detected, over time, the loss of forest areas and water bodies, followed by the advance of exposed soil areas and urban infrastructure. The modification of native vegetation directly influences water availability, and agricultural activities increase the pressure on water resources, mainly in periods of severe drought. The NDVI detected that the period from 2013 to 2020 was most affected by climatic variability conditions, with extremely low average values. Thematic maps of land cover and use and biophysical indices are essential indicators to mitigate environmental impacts in the Brazilian semiarid region.
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来源期刊
Human Geographies
Human Geographies Social Sciences-Geography, Planning and Development
CiteScore
1.10
自引率
0.00%
发文量
7
审稿时长
8 weeks
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