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Jan Kyselý, Ladislav Gaál and Romana Beranová

References BALLESTER J., RODÓ X., GIORGI F., 2010: Future changes in Central Europe heat waves expected to mostly follow summer mean warming. Clim. Dyn., 35 , 7-8, 1191-1205. BARNETT D. N., BROWN S. J., MURPHY J. M., SEXTON D. M. H., WEBB, M. J., 2006: Quantifying uncertainty in changes in extreme event frequency in response to doubled CO2 using a large ensemble of GCM simulations. Clim. Dyn., 26 , 5, 489-511. BENGTSSON L., HODGES K. I., ROECKNER E., 2006: Storm tracks and climate

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Metrology and Measurement Systems

The Journal of Committee on Metrology and Scientific Instrumentation of Polish Academy of Sciences

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Kamila Hlavčová, Silvia Kohnová, Marco Borga, Oliver Horvát, Pavel Šťastný, Pavla Pekárová, Oľga Majerčáková and Zuzana Danáčová

., Anquetin, A., Lang, M., Neppel, L., Obled, C., Parent-du-Chatelet, J., Saulnier, G.M., Walpersdorf, A., Wobrock, W., 2005. The catastrophic flash-flood event of 8–9 September 2002 in the Gard region, France: a first case study for the Cévennes–Vivarais Mediterranean Hydrometeorological Observatory. Journal of Hydrometeorology, 6, 34–52. Gaume, E., Borga, M., 2008. Post-flood field investigations in upland catchments after major flash floods: proposal of a methodology and illustrations. Journal of Flood Risk Management, 1, 4, 175–189. Gaume, E., Bain, V

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Martinho A.S. Martins, Ana I. Machado, Dalila Serpa, Sergio A. Prats, Sílvia R. Faria, María E.T. Varela, Óscar González-Pelayo and J. Jacob Keizer

and its relationship to Mediterranean plant species type, burn severity and total organic carbon content. Geoderma, 160, 599-607. Cardoso, J.C., Bessa, M.T., Marado, M.B., 1971. Carta dos solos de Portugal (1 : 1,000,000). Serviço de Reconhecimento e de Ordenamento Agrário, Secretaria de Estado da Agricultura, Lisbon, Portugal. Cardoso, J.C., Bessa, M.T., Marado, M.B., 1973. Carta dos solos de Portugal (1 : 1,000,000). Agronomia Lusitana, 33, 461-602. Cerdà, A., 1998. Changes in overland flow and infiltration after a

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Miloslav Janeček, Vít Květoň, Eliška Kubátová, Dominika Kobzová, Michaela Vošmerová and Jana Chlupsová

References Angima, S.D., 2002. Soil erosion prediction using RUSLE for central Kenyan highland conditions. Journal of Sustainable Agriculture, 20, 3, 57-67. Auerswald, K. et al., 2009. Rates of sheet and rill erosion in Germany - A meta-analysis. Geomorphology. 111, 3-4, 182-193. Bonilla, C.A., Vidal, K.L., 2011. Rainfall erosivity in Central Chile. Journal of Hydrology, 410, 1-2, 126-133. Braunovič, S. et al., 2009. Determination of rain erosive power factor (R) for he region of Vranje

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David Hernando and Manuel G. Romana

-133. Brown, L.C., Foster, G.R., 1987. Storm erosivity using idealized intensity distributions. Trans. ASAE, 30, 2, 379-386. Colotti, E., 2004. Aplicabilidad de los datos de lluvia horaria en el cálculo de la erosidad. [Applicability of hourly rainfall data to erosion analysis]. Fondo Editorial de Humanidades y Educación. Departamento de Publicaciones. Universidad Central de Venezuela, Caracas. (In Spanish.) Diodato, N., 2004. Estimating RUSLE’s rainfall factor in the part of Italy with a Mediterranean rainfall regime. Hydrol. Earth Syst

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Margarita L. Himmelbauer, Violeta Vateva, Ljudmila Lozanova, Willibald Loiskandl and Svetla Rousseva

., Rejman, J., Rousseva, S., Muxart, T., Roxo, M.J., Dostal, T., 2010. Rates and spatial variations of soil erosion in Europe: a study based on erosion plot data. Geomorphology, vol. 122, No 1-2, 167-177. De Baets, S., Poesen, J., Knapen, A., Barberá, G., Navarro, J., 2007a. Root characteristics of representative Mediterranean plant species and their erosion-reducing potential during concentrated runoff. Plant and Soil, 294, 1-2, 169-183. De Baets, S., Poesen, J., Knapen, A., Galindo Morales, P., 2007b. Impact of root architecture, soil

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Elena Benito, Eufemia Varela and María Rodríguez-Alleres

REFERENCES Alagna, V., Iovino, M., Bagarello, V., Mataix-Solera, J., Lichner, L., 2017. Application of minidisk infiltrometer to estimate water repellency in Mediterranean pine forest soils. J. Hydrol. Hydromech., 65, 254–263. Alanís, N., Hernández-Madrigal, V.M., Cerdà, A., Zavala, L.M., Jordán, A., 2017. Spatial gradients of intensity and persistence of soil water repellency under different forest types in Central México. Land Degrad. Develop., 28, 317–327. Arcenegui, V., Mataix-Solera, J., Guerrero, C., Zornoza, R., Mayoral, A.M., Morales J

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Elena Lozano, Fuensanta García-Orenes, Gema Bárcenas-Moreno, Patricia Jiménez-Pinilla, Jorge Mataix-Solera, Victoria Arcenegui, Alicia Morugán-Coronado and Jorge Mataix-Beneyto

water repellency on soil hydrological and erosional processes under Eucalyptus and evergreen Quercus forests in the Western Mediterranean. Aust. J. Soil Res., 43, 309-318. DeBano, L.F., 2000. Water repellency in soils: a historical overview. J. Hydrol., 231-232, 4-32. Doerr, S.H., Shakesby, R.A., Walsh, R.P.D., 2000. Soil water repellency: its causes, characteristics and hydrogeomorphological significance. Earth-Sci. Rev., 51, 33-65. Federle, T.W., 1986. Microbial distribution in soil. In: Megusar, F., Gantar, M. (Eds

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Jesús Rodrigo-Comino, Christine Brings, Thomas Iserloh, Markus C. Casper, Manuel Seeger, José M. Senciales, Eric C. Brevik, José D. Ruiz-Sinoga and Johannes B. Ries

soil management on compaction of individual horizons. J. Cent. Eur. Agric., 17. DOI:10.5513/jcea.v17i2.4294. Chaplot, V., Poesen, J., 2012. Sediment, soil organic carbon and runoff delivery at various spatial scales. Catena, 88, 46-56. DOI: 10.1016/j.catena.2011.09.004. David, M., Follain, S., Ciampalini, R., Le Bissonnais, Y., Couturier, A., Walter, C., 2014. Simulation of medium-term soil redistributions for different land use and landscape design scenarios within a vineyard landscape in Mediterranean France. Geomorphology, 214, 10