Affiliation:
1. Institute of Geography, History and Social Sciences, National Scientific and Technical Research Council , Pinto 399, Tandil, Buenos Aires Province , Argentina
Abstract
Abstract
Latin American cities are amongst those with the highest rates of urbanization in the world. This process has involved their territorial expansion as well as the densification of some of its neighborhoods, in mainly central areas. This is the case of the city of Santiago del Estero (Argentina) that increased its population by 33% between 1991 and 2010 with the consequent transformations of the local space. In this context, this study analyzes the evolution of vegetated areas and densification of the central area of the city using satellite data. We analyzed two indices: normalized difference vegetation index (NDVI) and Urban Index (UI) time-series data, for the 1992–2011 year period, using the Google Earth Engine for processing Landsat 5 TM images. We found that the NDVI showed a decreasing trend in the timelapse under consideration, while the UI performance registered the opposite trend. The mean NDVI decreased from 0.161 (1992) to 0.103 (2011) while the UI mean increased from 0.003 to 0.036 in the same timelapse. Further, the NDVI has a strong negative correlation with UI (R-squared = -0.862). The results are consistent with the census information that recorded an important demographic and housing growth for the entire city in this period.
Subject
Management, Monitoring, Policy and Law,Nature and Landscape Conservation,Urban Studies,Pollution,Geography, Planning and Development
Reference60 articles.
1. Andersson E., Haase D., Scheuer S., Wellmann T. 2020. Neighbourhood character affects the spatial extent and magnitude of the functional footprint of urban green infrastructure. Landscape Ecology, 35, 7: 1605–1618.10.1007/s10980-020-01039-z
2. Arboit M.E., Maglione D.S. 2018. Multi-temporal and multi-spatial analysis of the normalized difference vegetation index (NDVI) and soil-adjusted vegetation index (SAVI) in forested urban centers and irrigated oases, with dry climates. Boletín de Estudios geográficos, 109 [in Spanish].
3. Arias M.E., Celemin J. 2021. Spatial distribution of street trees in the Center of the city of Santiago del Estero (Argentina). Revista da Casa da Geografia de Sobral, 23: 434 – 454 [in Spanish].10.35701/rcgs.v23.811
4. Bensús Talavera V. 2018. (Un)planned densification of a metropolis. The case of the Metropolitan Area of Lima 2000–2014. Revista INVI, 33(92): 9–51 [in Spanish].10.4067/S0718-83582018000100009
5. Berkowitz A.R., Nilon C.H., Hollweg K.S. 2003. The importance of understanding urban ecosystems: Themes. [in:] A.R. Berkowitz, C.H. Nilon, K.S. Hollweg (eds.) Understanding urban ecosystems - A new frontier for science and education. Sringer-Verlag, New York: 15–17.10.1007/b97613