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Assessment of land cover changes in the hinterland of Barranquilla (Colombia) using Landsat imagery and logistic regression

[PDF] 2018_12_ART-04_LAND-Bqlla-CoverChanges_AndresCaballero.pdf (6.649Mb)
Identificadores
URI: https://hdl.handle.net/10481/86814
DOI: https://doi.org/10.3390/land7040152
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Autor
Schubert, Henry; Caballero Calvo, Andrés; Rauchecker, Markus; Rojas Zamora, Óscar; Brokamp, Grischa; Schütt, Brigitta
Editorial
MDPI
Materia
Colombian Caribbean
 
Urbanisation
 
Tropical dry forest
 
Random forest classifier
 
Woody vegetation changes
 
Fecha
2018
Referencia bibliográfica
SCHUBERT, H., CABALLERO CALVO, A., RAUCHECKER, M., ROJAS ZAMORA, O., BROKAMP, G. y SCHÜTT, B. (2018). Assessment of land cover changes in the hinterland of Barranquilla (Colombia) using Landsat imagery and logistic regression. Land, 7(4), 152, p. 24. ISSN: 2073-445X. https://doi.org/10.3390/land7040152
Patrocinador
Federal Ministry of Education and Research of Germany (BMBF, ColBioDiv, project number: 01DN17006); German Research Foundation (DFG, project number: SCHU 949/14–1); German Research Foundation and the Open Access Publication Fund of the Freie Universität Berlin
Resumen
Barranquilla is known as a dynamically growing city in the Colombian Caribbean. Urbanisation induces land use and land cover (LULC) changes in the city and its hinterland affecting the region’s climate and biodiversity. This paper aims to identify the trends of land use and land cover changes in the hinterland of Barranquilla corresponding to 13 municipalities in the north of the Department Atlántico. Landsat TM/ETM/OLI imagery from 1985 to 2017 was used to map and analyse the spatio-temporal development of land use and land cover changes. During the investigation period, the settlement areas grew by approximately 50% (from 103.3 to 153.6 km2), while areas with woody vegetation cover experienced dynamic changes and increased in size since 2001. Peri-urban and rural areas were characterized by highly dynamic changes, particularly regarding clearing and recovery of vegetated areas. Regression analyses were performed to identify the impact factors of detected vegetation cover changes. Computed logistic regression models included 20 independent variables, such as relief, climate, soil, proximity characteristics and socio-economic data. The results of this study may act as a basis to enable researchers and decision-makers to focus on the most important signals of systematic landscape transformations and on the conservation of ecosystems and the services they provide.
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