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Geomorphic dynamics of gullies developed in sandy slopes of Central Spain

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Gullies developed on sandy lithologies are scarce. Such landforms have developed in the sandy deposits of the Cretaceous 'Utrillas' facies within the Segovia province of Central Spain. They appear at the slopes of a group of mesas and cuestas located at the edge of the northern piedmont of the Guadarrama Mountains of the Spanish Central System. The activity of the different geomorphic processes acting in these gullies, as well as their connectivity, are being characterized and quantified. This study was preceded by reconnaissance methods, whereas presently technologically advanced and more accurate techniques are being utilized. The new methods are applied in an experimental catchment (1.26 ha). They include: i) an automatic Reid-type (formerly termed Birkbeck) slot bedload sampler for continuous monitoring of bedload flux and for continuous sampling of bedload; siphons for sampling the suspended load; and a Parshall flume to monitor water discharge. Jointly, these instruments allow to study the fluvial dynamics at the catchment mouth; ii) topographic surveys undertaken by a Terrestrial Laser Scanner (TLS) to quantify the activity of gravitational, overland flow and fluvial processes in different sediment source areas within the gully basin; iii) micro runoff and erosion plots to monitor the infiltration and erosive response of different Hydrologic Response Units (HRU) comprising the interior of the catchment. This ensemble of novel methods has started providing patterns of sediment movement within the gully system.
Czasopismo
Rocznik
Tom
Strony
91--97
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
autor
  • Dept.of Geodynamics and Institute of Geosciences (CSIC-UCM), Complutense University of Madrid, Madrid, Spain, aluciave@geo.ucm.es
Bibliografia
  • Boardman J., Parsons A.J., Holland R., Holmes P.J. & Washington R., 2003. Development of badlands and gullies in the Sneeuberg, Great Karoo, South Africa. Catena 50: 165–184.
  • Crouch, 1990. Erosion processes and rates for gullies in granitic soils bathurst, New South Wales, Australia. Earth Surface Processes and Landforms 15: 169–173.
  • Gallart F., Balach J.C., Regües D., Soler M. & Castelltort X., 2005. Catchment dynamics in a Mediterranean mountain environment. The Vallcebre research basins (southeastern Pyrinees) II: temporal and spatial dynamics of erosion and stream sediment transport. In: Batalla R.J. & Celso G. (eds.) Catchment Dynamics and River Processes: Mediterranean and Other Climate Regions, Elsevier B.V.: 17–29.
  • Garcia Ruiz J.M. & López Bermudez F., 2009. La erosión de suelo en España. Sociedad Española de Geomorfología (SEG), Zaragoza.
  • García Ruiz D. Regües J.M., Alvera B., Lana-Renault N., Serrano-Muela P., Nadal-Romero E., Navas A., Latrón J., Martí-Bono C. & Arnáez J., 2008. Flood generation and sediment transport in experimental catchments affected by land use changes in the central Pyrenees. Journal of Hydrology 356: 245–260.
  • Habersack H., Nachtnebel P.N. & Laronne J.B., 2001. The continuous measurement of bedload discharge in a large alpine gravel bed river. J. Hydraul. Res. 39: 125–133.
  • Harvey A.M., 2001. Coupling between hillslopes and channels in upland fluvial systems: implications for landscape sensitivity, illustrated from the Howgill Fells, northwest England. Catena 42: 225–250.
  • Hudson N.W., 1997. Medición sobre el Terreno de la Erosión del Suelo y de la Escorrentía. Roma: 147pp.
  • INM, 2001. Guía resumida del clima en España 1971–2000. Centro de Publicaciones, Ministerio de Obras Públicas, Transportes y Medio Ambiente, Madrid: 257 pp.
  • Laronne J.B., Alexandrov Y., Bergman N., Cohen H., García C., Habersack H., Powell D.M. & Reid I., 2003. The continuous monitoring of bedload flux in various flluvial envionments. In: Bogen, J., Fregus, T. & Walling, D.E. (Eds.)Erosion and sediment transpor measurement in rivers: Technological and Methodological Advances, Int’l Assoc. Hydrol. Sci. Publ.: 134–145.
  • Lindquist R.C., 1980. Slope processes and forms at Bryce Canyon National Park. 132. Utah, University of Utah: 132 pp.
  • Lucía A., Sanz M.A., Vicente F., Martín-Moreno C., Martín-Duque J.F., Bodoque J.M., Pedraza J. & López N., 2007. A proposal to study gully erosion on silica sand and arkose slopes in Central Spain.In: Casali, J. & Giménez, R. (eds.) Progress in Gully Erosion Research, Universidad Pública de Navarra, Pamplona: 72–73.
  • Lucía A., Vicente F., Martín-Moreno C., Martín-Duque J.F., Sanz M.A., De Andrés C. & Bodoque J.M., 2008. Procesos geomorfológicos activos en cárcavas del borde del piedemonte norte de la Sierra de Guadarrama (Provincia de Segovia, España). Boletín de la Real Sociedad Española de Historia Natural 102(1–4): 47–69.
  • Mathys N., Brochot S., Meunier M. & Richard D., 2003. Erosion quantification in the small marly experimental catchments of Draix (Alpes de Haute Provence, France). Calibration of the ETC rainfall-runoff-erosion model. Catena 50: 527–548.
  • Moreno F., 1989. Zonas kársticas en la vertiente N de la Sierra de Guadarrama. Universidad Complutense de Madrid, Madrid: 773 pp.
  • Okagbue C.O. & Ezechi J.I., 1988. Geotechnical characteristics of soils susceptible to severe gullying in eastern Nigeria. Bulletin o the International Association of Engineering Geology 38: 111–119.
  • Osterkamp W.R. & Toy T.J., 1997. Geomorphic considerations for erosion predicition. Environmental Geology 29(3–4): 152–157.
  • Reid I., Layman J.T. & Frostick L.E., 1980. The continuosu measurement of bedload discharge. Journal of hydraulic research 18 (3): 243–249.
  • Thomas M.F., 2001. Landscape sensitivity in time and space. An introduction. Catena 42 (2–4): 83–98.
  • Ana Lucía, José Francisco Martín-Duque, Jonathan Benjamin Laronne, Miguel Ángel Sanz-SantosVicente F., Sanz M.A., Lucía A. & Martín-Duque J.F., 2009. Evolución geomorfológica en tiempos históricos recientes de cárcavas del borde del piedemonte norte del Guadarrama. Estudio a partir de fuentes documentales. Boletín de la Real Sociedad Española de Historia Natural: 49–64.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ5-0051-0060
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