Geografie 2012, 117, 152-169
https://doi.org/10.37040/geografie2012117020152
Assessing the natural hazard of gully erosion through a Geoecological Information System (GeIS): a case study from the Western Carpathians
References
1. 2010): Landslide susceptibility assessment of the Kraľovany – Liptovský Mikuláš railway case study. Physics and Chemistry of the Earth, 35, No. 3–5, pp. 162–171.
< , M., MAGULOVÁ, B., MATYS, M., MARSCHALKO, M. (https://doi.org/10.1016/j.pce.2009.12.002>
2. 2009): Different ways of landslide geometry interpretation in a process of statistical landslide susceptibility and hazard assessment: Horná Súča (western Slovakia) case study. Environmental Earth Sciences, 61, No. 4, pp. 733–739.
< , M., PAUDITŠ, P. (https://doi.org/10.1007/s12665-009-0387-8>
3. 1983): Multivariate models for landslide hazard evaluation. Mathematical Geology, 5, No. 3, pp. 403–427.
< , A. (https://doi.org/10.1007/BF01031290>
4. CARRARA, A. (1988): Landslide hazard mapping by statistical method: a black box approach. Proceedings of the Workshop on Natural Disaster in European Mediterranean Countries, Consiglio Nazionale delle Richerche, Perugia, Italy, pp. 205–224.
5. 2002): A procedure for landslide susceptibility zonation by the conditional analysis method. Geomorphology, 48, No. 4, pp. 349–364.
< , A., PEREGO, S., TELLINI, C., VESCOVI, P. (https://doi.org/10.1016/S0169-555X(02)00079-X>
6. 2009): The influence of site conditions on the impact of windstorms on forests: The case study of the High Tatras foothills (Slovakia) in 2004. Moravian Geographical Reports, 17, No. 3, pp. 44–52.
, V., KATINA, S., BÁNOVSKÝ, M., PAZÚROVÁ, Z. (
7. FULAJTÁR, E., JANSKÝ, L. (2001): Vodná erózia pôdy a protierózna ochrana. VÚPOP, Prírodovedecká Fakulta UK, Bratislava, 310 pp.
8. 1987): Response of Quaternary fluvial systems to differential epeirogenic uplift: Aguas and Feos River Systems. Geology, 15, No. 8, pp. 689–693.
< , A.M., WELLS, S.G. (https://doi.org/10.1130/0091-7613(1987)15<689:ROQFST>2.0.CO;2>
9. KLIMENT, Z. (2003): Lineární eroze v povodí Manětínského potoka. Geomorfologický sborník 2, ZČU Plzeň, pp. 95–106.
10. 2001): Assessing landslide potential using GIS, soil wetness modeling and topographic attributes, Payette River, Idaho. Geomorphology, 37, No. 1–2, pp. 149–165.
< , M.G., MARCUS, W.A., ASPINALL, R., CUSTER, S.G. (https://doi.org/10.1016/S0169-555X(00)00068-4>
11. 2003): Detailed physical-geographical (geoecological) research and mapping in the landscape ecology. Ekológia (Bratislava), 22, Supplement 2/2003, pp. 141–149.
, J. (
12. 2009): Geografické polia a priestorová organizácia krajiny (pokus o vyjasňovanie základných konceptov). Geografický časopis, 61, No. 3, pp. 179–198.
, J. (
13. 2006): Geomorphological hazards in Slovakia. Studia Geomorphologica Carpatho-Balcanica, XL, pp. 61–78.
, J., BARKA, I., JAKÁL, J., STANKOVIANSKY, M., TRIZNA, M., URBÁNEK, J. (
14. 2008): Elementary forms for land surfaces segmentation: the theoretical basis of terrain analysis and geomorphological mapping. Geomorphology, 95, No. 3–4, pp. 236–259.
< , J., EVANS, I.S. (https://doi.org/10.1016/j.geomorph.2007.06.003>
15. 2009): Influence of site conditions on the windstorm impact: a case study of the High Tatras foothills in 2004. Landform Analysis, 10, pp. 95–101.
, J., FALŤAN, V., BÁNOVSKÝ, M., DAMANKOŠOVÁ, Z., KOŽUCH, M. (
16. MINÁR, J., TREMBOŠ, P. (1994): Prírodné hazardy – hrozby, niektoré postupy ich hodnotenia. Acta Facultatis rerum naturalium Universitatis Comenianae, Geographica, 35, Univerzita Komenského, Bratislava, pp. 173–194.
17. 1999): Assessment of soil losses by ephemeral gully erosion using high-altitude (stereo) aerial photographs. Earth Surface Processes and Landforms, 24, No. 8, pp. 693–706.
< , J., POESEN, J. (https://doi.org/10.1002/(SICI)1096-9837(199908)24:8<693::AID-ESP992>3.0.CO;2-7>
18. 2002): Medium term evolution of a gully developed in a loess-derived soil. Geomorphology, 46, No. 3–4, pp. 223–239.
< , J., POESEN, J., OOSTWOUD WIJDENES, D. VANDEKERCKHOVE, L. (https://doi.org/10.1016/S0169-555X(02)00075-2>
19. 1990): Identification of homogeneous regions for the purposes of regionalization. Journal of Hydrology, 121, No. 1–4, pp. 217–238.
< , R.J., McMAHON, T.A. (https://doi.org/10.1016/0022-1694(90)90233-N>
20. 2001): Regional flood frequency estimation with canonical correlation analysis. Journal of Hydrology, 254, No. 1–4, pp. 157–173.
< , T.B.M.J., GIRARD, C., CAVADIAS, G.S., BOBÉE, B. (https://doi.org/10.1016/S0022-1694(01)00488-7>
21. 2005): Využívanie štatistických metód pri hodnotení náchylnosti územia na zosúvanie. Mineralia Slovaca, 37, No. 4, pp. 529–538.
, P., VLČKO, J., JURKO, J. (
22. 2005): Niektoré možnosti využitia viacrozmerných štatistických metód pri hodnotení prírodných hrozieb. Geomorphologia Slovaca, 2/2005, pp. 30–37.
, M., KRIEGEROVÁ, I. (
23. STANKOVIANSKY, M. (2003a): Geomorfologická odozva environmentálnych zmien na území Myjavskej pahorkatiny. Univerzita Komenského, Bratislava, 152 pp.
24. 2003b): Historical evolution of permanent gullies in the Myjava Hill Land, Slovakia. Catena, 51, No. 3–4, pp. 223–239.
< , M. (https://doi.org/10.1016/S0341-8162(02)00167-4>
25. 2005): Gully erosion: Impacts, factors and control. Catena, 63, No. 2–3, pp. 132–153.
< , C., POESEN, J., YONG LI (https://doi.org/10.1016/j.catena.2005.06.001>
26. ZACHAR, D. (1960): Erózia pôdy. SAV, Bratislava, 308 pp.