Sellado de suelos a partir de teledetección y SIG en el Programa de Actuación Urbanística (PAU) del sudeste de Madrid (España)

  1. García Alvarado, José María
  2. García Rodríguez, Pilar
  3. Pérez González, Mª Eugenia
Journal:
Cuadernos geográficos de la Universidad de Granada

ISSN: 0210-5462 2340-0129

Year of publication: 2018

Volume: 57

Issue: 1

Pages: 39-60

Type: Article

DOI: 10.30827/CUADGEO.V57I1.5360 DIALNET GOOGLE SCHOLAR lock_openDialnet editor

More publications in: Cuadernos geográficos de la Universidad de Granada

Abstract

The aim of this paper is to integrate different sources of spatial information (cadastres, orthophotographies and satellite images), which also require different treatments, in order to be able to measure and evaluate the sealing of soils in a recent urban development project in the southeast of the city of Madrid, in order to establish a methodology of space-time monitoring of this parameter. Another objective is to show if the current urbanization process respects the European environmental guidelines in which waterproofed or sealed soil, inherent in economic development, coexists with natural spaces that allow to maintain some ecological functions such as softening the urban microclimate, setting growth levels of CO2 in stable figures in line with European environmental quality and standards, damping floods and preserving biodiversity. The sealing values of soils measured from different sources and using complementary techniques generate similar results when the waterproofing is higher than 60%. However, the calculations obtained from satellite images vary according to their spatial resolution and the type of treatment applied. With the Spot satellite the sealing values are close to 24%, while with the Sentinel-2 the percentage rises to 30%. Orthophotographies offer greater spatial precision, so sealing levels (<20%, 20-40%, 40-60% and > 60%) have been established, but their low temporal resolution prevents continuous monitoring, at least annually. Therefore, it is necessary to use different cartographic sources when carry out a study of urban areas, since the different temporal, spatial and spectral resolutions allow to visualize different characteristics in each of them. Consequently, their complementarity helps to correct the possible inadequacies of each of them.

Funding information

Investigación financiado por el proyecto CSO2012-34785, Ministerio de Economía y Competitividad, Gobierno de España.

Funders

Bibliographic References

  • AEMA (2012). Guidelines on best practice to limit, mitigate or compensate soil sealing, Bruselas: Commission Staff Working Document.
  • Al-Dousari, Am; Misak, Rafat y Shahid, Shaad (2000). «Soil compaction and sealing in Al-Salmi area, Western Kuwait». Land Degradation and Development, 11(5), 401–418.
  • Arben Petto, Merkohasanaj; Matilda; Lushaj, Arvjen; Bogdani-Ndini, Miriam y Arnisa Arvjen (2014). «Implementation of Bioclimatic Principles in the Design of Urban Open Space for Biodiversity Conservation and Sustainable Development of Ecotourism in Lalzi Bay, Durres County, Albania». Online International Interdisciplinary Research Journal, IV, 104-121.
  • Artmann, Martina (2014). «Assessment of soil sealing management responses, strategies, and targets toward ecologically sustainable urban land use management». Ambio, 43(4), 530–541.
  • Assouline, Schmuel y Mualem, Yechezkel (2006). «Runoff from heterogeneous small bare catchments during soil surface sealing». Water Resources Research, 42 (12), W12405, doi:10,1029/2005WR004592.
  • Blum, Winfried E,H (1998). «Soil degradation caused by urbanization and industrial, In H,P, Blume, H, Eger, E, Fleischhaver», A,Hebel, C,Reij y K,G,Steinen (EDS). Towards Sustainable land use: furthering cooperation between people and institution. Advances in Geoecology Catena Verlag, 31, 755-766.
  • Blum, Winfried E,H, Büsing, Jürgen y Montanarella, Luca (2004). «Research needs in support of the European thematic strategy for soil protection». Trends in Analytical Chemistry, 23, 10-11, 680-685.
  • Burghardt, Wolfgang (2006). Soil sealing and soil properties related to sealing. London: Geological Society, Special Publications.
  • Caballero Pedraza, Agustín, (2017). Sellado de suelos en la comarca del Mar Menor (Murcia), Consecuencias Medioambientales. Universidad de Murcia, 363 pp.
  • Castillo, Victor; Vandekerckhove, Liesbeth y Jarman, Rob (2004). Working Group on Soil Erosion Introduction. Final report, European Commision, 23 pp.
  • Comisión Europea (2014). De aquí a 2020: el nuevo Programa de Acción en materia de Medio Ambiente de la UE. http://europa,eu/!Mt88Hh vía @EU_Commission, Acceso octubre 2016.
  • Comité Nacional de Hábital II (1996). Ciudades para un futuro sostenible: primer catálogo español de buenas prácticas. Madrid: Ministerio de Fomento.
  • Chen, Lin; Sela, Shai; Svoray, Tal y Assouline, Schmuel (2013). «The role of soil-surface sealing, microtopography, and vegetation patches in rainfall-runoff processes in semiarid areas». Water Resources Research, 49 (9), 5585–5599.
  • Chunyang, He; Peijun, Shi; Dingyong, Xie y Yuanyuan, Zhao (2010). «Improving the normalized difference built-up index to map urban built-up areas using a semiautomatic segmentation approach». Remote Sensing Letters, 1 (4), 213-221.
  • Dwivedi, R, S, (2017). Remote sensing of soils, Springer.
  • EEA (2006). Urban sprawl in Europe - the ignored challenge. Report from the European Environment Agency, October, 2006.
  • Escudero, Rosario; Sánchez, Blanca y Moral, Francisco (2010). El proyecto GMES de sellado de suelo como ejemplo de una forma distribuida y colaborativa de abordar proyectos europeos de teledetección. Madrid: Congreso Nacional de Medio Ambiente Conama10, Ed, Conama.
  • Eilers, Louis (1973). «Soil sealing method». US Patent 3,772-893.
  • García Alvarado, José María (2000). «El modelo metropolitano madrileño enjuiciamiento desde la perspectiva del V Programa de Acción de la C.E, en materia de Medio Ambiente: Apuntes metodológicos». Observatorio medioambiental, 3, 135-158.
  • García Alvarado, José María; Pérez González, María Eugenia y García Rodríguez, María Pilar (2014). «Revisión del concepto de sellado de suelos y propuesta de tipología urbana». Anales de Geografía de la Universidad Complutense, 34, 87-103.
  • García Alvarado, J,M,; García Rodríguez, María Pilar y Pérez González, María Eugenia (2018). «Evaluación y medida del sellado de suelos en los Programas de Actuación Urbanística (PAUS) del norte de Madrid (España)». Boletín de la Asociación de Geógrafos Españoles, 76, 1-19.
  • García Rodríguez, María Pilar y Pérez González, María Eugenia (2007). «Changes in soil sealing in Guadalajara (Spain): Cartography with LANDSAT images», Science of the Total Environment, 378(1-2), 209–213.
  • García Rodríguez, María Pilar y Pérez González, María Eugenia (2011). «Sellado de fluvisoles en la Comunidad de Madrid análisis a partir de imágenes Landsat». Anales de Geografía de la Universidad Complutense, 31, 125-137.
  • García Rodríguez, María Pilar y Pérez González, María Eugenia (2014). «Análisis multitemporal del urbanismo expansivo en el Corredor del Henares, Aportación de las imágenes de satélite». Estudios Geográficos, LXXV, 277, 597-618.
  • García Rodríguez, María Pilar y Pérez González, María Eugenia (2016). «Mapping of soil sealing by vegetation indexes and built-up index: A case study in Madrid (Spain)». Geoderma, 268, 100-107.
  • García Rodríguez, María Pilar; Pérez González, María Eugenia y Guerra, Antonio, (2014). «Using TM images to detect soil sealing change in Madrid (Spain)», Geoderma, 214-215, 135–140.
  • Gardi, Ciro; Montanarella, Luca; Tóth, Gergely; Palmieri, Alexandra; Martino, Leoni y Erhard, Markus (2011). «The Assessment of Soil Sealing and Land Take in Europe», In G, Tóth & T, Németh (Eds,). Land Quality and Land Use Information in the European Union. Bruselas: European Comission, Publications Office of the European Union, 173–186.
  • Govers, Gerard, y Poesen, Jean (1986). «A field-scale study of surface sealing and compaction on loam and sandy loams soils, Part I, Spatial variability of soil surface sealing and crusting». Assessment of Soil Surface Sealing and Crusting, 171–182.
  • Harb Rabia, Ahmed (2012). Modeling of Soil Sealing by Urban Sprawl in Wukro, Ethiopia Using Remote Sensing and GIS Techniques. Taza GIS-Days: the International conference of GIS Users, Fez, Morocco.
  • Hartemink, Alfred (2006). «Soil Atlas of Europe». Journal of Environment Quality, 35(3), 952.
  • Heil, Justine; Juo, Anthony y McInnes, Kevin (1997). «Soil properties influencing surface sealing of some sandy soils in the Sahel», Soil Science, 162(7), 459-469.
  • IGME (1989). Memoria y mapa de la Hoja 559, 19-22 del Mapa Geológico (Magna); Madrid, escala 1:50,000. Madrid: Instituto Geológico y Minero de España, Publicaciones del Ministerio de Industria y Energía, 1 ed.
  • Jakab, Gergely; Németh, Tamás; Csepinszky, Béla; Madarász, Balazs;, Szalai, Zoltan y Kertész, Ádam (2013). «The influence of short term soil sealing and crusting on hydrology and erosion at balaton uplands, Hungary». Carpathian Journal of Earth and Environmental Sciences, 8(1), 147–155.
  • Kampouraki, Mary, Wood, Gavin y Brewer, Tim (2006). The application of remote sensing to identify and measure sealed areas in urban environments. Saltzberg: A Proceeding from ISPRS First Int, Conference on Object Based Image Analysis, Saltzberg, Austria.
  • Lavalle, Carlo; Demicheli, Luca; Kasanko, Marjo; Turchini, Giovani M,; Niederhuber, Monika y McCormick Niall (2001). Murbandy/Moland Technical Report, Brussels: European Commission Euro-Report.
  • López de Lucio, Ramón (2007). Construir ciudad en la periferia, de Ramón López de Lucio, Criterios de Diseño para Áreas Residenciales. Acceso: http://www,paisajetransversal,org/2013/01/construir-ciudad-en-la-periferia-de,html, 15 marzo 2016.
  • Miret García, Ana (2010). Criterios para cualificar y valorar los nuevos espacios públicos de la periferia metropolitana desde la perspectiva de la diversidad a través del estudio de caso de los Paus de Madrid. Congreso Ciudad Territorio y Paisaje, Mayo 2010.
  • Montanarella Luca (2007). «Trends in land degradation in Europe». In: Sivakumar MVK, Ndegwa N, (edit). Climate and land degradation. Germany, Springer-Heidelberg, pp, 83-104.
  • Monturiol, Francisco y Alcalá, Luis, (1990a). Mapa de asociaciones de suelos de la Comunidad de Madrid, Escala 1:200,000, Madrid: C,S,I,C. Comunidad de Madrid, 71 pp.
  • Monturiol, Francisco y Alcalá, Luis, (1990b). Mapa de Capacidad Potencial de Uso Agrícola de la Comunidad de Madrid, Escala 1:200,000. Madrid,C,S,I,C, Comunidad de Madrid, 31 pp.
  • Moeller, Matthias (2005). Remote Sensing for the monitoring of urban growth patterns. Tempe: Proc, of the ISPRS Joint Conference URBAN/URS, Tempe, AZ, USA, 2005.
  • Moreira, José Manuel (2012). «Urbanismo expansivo: de la utopía a la realidad, Reflexiones desde la información ambiental». En: Gozálvez Pérez, V, & Marco Molina, J,A, (Coord,). Geografía: Retos ambientales y territoriales, 125-164.
  • Mualem, Yechezkel; Assouline, Schmuel y Rohdenburg, Heinrich (1990). «Rainfall induced soil seal (A) A critical review of observations and models». Catena 17, 185-203,
  • Mulders, M, A, (1987). Remote Sensing in Soil Science. Elsevier, Amsterdam.
  • Munafo, Michele; Norero, Carlo; Sabbi, Alberto y Salvati, Luca (2010). «Soil Sealing in the Growing City: A Survey in Rome, Italy». Scottish Geographical Journal, 126(3), 153–161.
  • Munafo, Michele; Salvati, Luca y Zitti, Marco (2013). «Estimating soil sealing rate at national level - Italy as a case study». Ecological Indicators, 26, 137–140.
  • Mukesh,Singh Boor; Maik, Netzband; Komal, Choudhary y Vít, Voženílek (2015). «Monitoring and modeling of urban sprawl through remote sensing and GIS in Kuala Lumpur, Malaysia». Ecological Processes, 4:15, DOI: 10,1186/s13717-015-0040-2.
  • Netzband, Maik y Meinel, Gothard (1998). «Identifying urban soil sealing by high resolution remote sensing methods». In J, Breuste, H, Feldmand, & O, Uhlman (Eds,), Urban Ecology, Springer-Verlag.
  • Ojeda, José y Villar, Arsenio (2006). “Evolución del suelo urbano/alterado en el litoral de Andalucía (España): 1998-2002”. Geofocus, 7, 73-99.
  • Pérez González, María Eugenia y García Rodríguez, María Pilar (2013). “Aplicaciones de la Teledetección en degradación de suelos”. Boletín de la Asociación de Geógrafos Españoles, 61, 285-308.
  • Pérez González, María Eugenia y García Rodríguez, María Pilar (2016). «Monitoring Soil Sealing in Guadarrama River Basin, Spain, and Its Potential Impact in Agricultural Areas». Agriculture, 6(1), 7.
  • Pérez González, María Eugenia y García Rodríguez, María Pilar (2017). «Monitoring soil erosion by raster images: from aerial photographs to drone taken pictures». European Journal of Geography, 7(5), 117- 129.
  • Poesen, Jean, y Govers, Gerard (1986). A field-scale study of surface sealing and compaction on loam and sandy loam soils. Part II, Impact of soil surface sealing and compaction on water erosion processes. Assessment of Soil Surface Sealing and Crusting, 183–193.
  • Prokop, Gundula; Jobstmann, Heidi y Schönbauer, Arnulf (2011). Overview of best practices for limiting soil sealing or mitigating its effects in EU-27. Brussels: European Communities.
  • Pulido Moncada, Mansonia; Gabriels, Donalds; Lobo, Deyanira; De Beuf, Kristof; Figueroa, Rosana y Cornelis, Win (2014). «A comparison of methods to assess susceptibility to soil sealing». Geoderma, 226-227(1), 397–404.
  • Ramos, María Concepción, Nacci, Silvana, y Pla, Ildefonso (2000). «Soil sealing and its influence on erosion rates for some soils in the Mediterranean area». Soil Science, Vol, 165 (5), 398-403.
  • Romero Díaz, Asunción; Belmonte Serrato, Francisco; Docampo Calvo, Ana María y Ruiz Sinoga, José Damián (2011). «Consecuencias del sellado de los suelos en el Campo de Cartagena (Murcia)». In Gozálvez Pérez, V, & Marco Molina, J,A, (Coords,): Geografía y desafíos territoriales en el siglo XXI, Vol, 2, 605-616.
  • Römkens, Mathias, Prasad, Shyam, y Gerits, Johannes Jacobus Petronela (1997). «Soil erosion modes of sealing soils: A phenomenological study». Soil Technology, 11(1), 31–41.
  • Scalenghe, Riccardo y Marsan, Franco Ajmone (2009). «The anthropogenic sealing of soils in urban areas». Landscape and Urban Planning, 90, 1-10.
  • Singer, Michael y Le Bissonnais, Yves (1998). «Importance of surface sealing in the erosion of some soils from a Mediterranean climate». Geomorphology, 24(1), 79–85.
  • Tomás, Alberto; Salas, Francisco Javier; Santos, Cesar; Garzón, Antonio y Moreno, Victoriano (2010). «Estimación del sellado del suelo mediante técnicas de análisis espectral». Serie Geográfica, 16, 81-92.
  • Ungaro, Fabrizio; Calzolari, Costanza; Pistocchi, Alberto y Malucelli, Francesco (2014).» Modelling the impact of increasing soil sealing on runoff coefficients at regional scale: a hydropedological approach». Journal of Hydrology and Hydromechanics, 62 (1), 33–42.
  • Valentín, Christian (1994). «Sealing, crusting and hardsetting soils in sahelian agriculture», In H, B, So, G, D, Smith, S, R, Raine, B, M, Schafer, & R, J, Loch (Eds,). Second International Symposium on Sealing, Crusting and Hardsetting Soils: Productivity and Conservation. Australian Society of Soil Science Inc, 53–76.
  • Valera, Antonio; Añó, Carlos y Sánchez, Juan (2011a). «Crecimiento urbano (1956-2005) y sellado antropogénico del suelo en el municipio de Alacant». Serie Geográfica, 17, 97- 108.
  • Valera, Antonio; Añó, Carlos y Sánchez, Juan (2011b). «Cincuenta años (1956–2006) de crecimiento urbano y degradación de suelos por sellado antropogénico en el término municipal de Valencia». Anales de Geografía, 31 (2), 177–191.
  • Vaquerizo Gómez, Elena (2015) «La arquitectura de la «nueva periferia»: dinámicas socioculturales urbanas en el PAU de Vallecas». Dialectología y Tradiciones Populares, Vol, LXX, 2, 503-526.
  • Varshney, Avnish (2013). «Improved NDBI differencing algorithm for built-up regions change detection from remote-sensing data: an automated approach». Remote Sensing Letters, 4(5), 504-512.
  • WBRS (2014). Base Referencia Mundial del Recurso Suelo, Informes sobre Recursos Mundiales de Suelos, No, 106. FAO, Roma.
  • Xiao, Rui; Su, Shiliang; Zhang, Zhonghao; Qi, Jiaguo; Jiang, Diwei y Wu, Jiaping (2013). «Dynamics of soil sealing and soil landscape patterns under rapid urbanization». Catena, 109, 1–12.
  • Xu, Hanqiu (2008). «A new index for delineating built‐up land features in satellite imagery». International Journal of Remote Sensing, 29 (14), 4269-4276.
  • Zha, Yong; Gao, Jingqing y Ni, Shaoxiang (2003). «Use of normalized difference built-up index in automatically mapping urban areas from TM imagery». International Journal of Remote Sensing, 24(3), 583-594, DOI: 10.1080/01431160304987.
  • Zhao, Dan; Li, Feng; Wang, Rusong; Yang, Qingrui y Ni, Hongshan (2012). «Effect of soil sealing on the microbial biomass, N transformation and related enzyme activities at various depths of soils in urban area of Beijing, China». Journal of Soils and Sediments, 12(4), 519–530.