Geografie 2013, 118, 205-220

https://doi.org/10.37040/geografie2013118030205

Quantitative rockfall hazard and risk analysis in selected municipalities of the České Švýcarsko National Park, northwestern Czechia

Jan Blahůt1, Jan Klimeš1, Zuzana Vařilová2

1Institute of Rock Structure and Mechanics, Academy of Sciences of the Czech Republic, V Holešovičkách 41, Prague, Czechia
2Museum of the Ústí nad Labem town, Masarykova 1000/3, Ústí nad Labem, Czechia

Received May 2012
Accepted July 2013

References

1. ALMEIDA, J.A., KULLBERG, J.C. (2011): Rockfall hazard and risk analysis for Monte da Lua, Sintra, Portugal. Natural Hazards, 58, pp. 289–310. <https://doi.org/10.1007/s11069-010-9668-5>
2. BELL, R., GLADE, T. (2004): Quantitative risk analysis for landslides – examples from Bíldudalur, NW Iceland. Natural Hazards and Earth System Sciences, 4, pp. 117–131. <https://doi.org/10.5194/nhess-4-117-2004>
3. BIGOT, CH., DORREN, L.K.A., BERGER, F. (2009): Quantifying the protective function of a forest against rockfall for past, present and future scenarios using two modeling approaches. Natural Hazards, 49, pp. 99–111. <https://doi.org/10.1007/s11069-008-9280-0>
4. BLAHŮT, J., KLIMEŠ, J. (2011): Příspěvek k české terminologii ve studiu rizik ze svahových deformací. Geografie, 116, No. 1, pp. 79–90.
5. CARDINALI, M., REICHENBACH, P., GUZZETTI, F., ARDIZZONE, F., ANTONINI, G., GALLI, M., CACCIANO, M., CASTELLANI, M., SALVATI, P. (2002): A geomorphological approach to the estimation of landslide hazards and risks in Umbria, Central Italy. Natural Hazards and Earth System Sciences, 2, pp. 57–72. <https://doi.org/10.5194/nhess-2-57-2002>
6. COROMINAS, J., RAMON, C., MOYA, J., VILAPLANA, J.M., ALTIMIR, J., AMIGÓ, J. (2005): Quantitative assessment of the residual risk in a rockfall protected area. Landslides, 2, pp. 343–357. <https://doi.org/10.1007/s10346-005-0022-z>
7. GUZZETTI, F., CROSTA, G.B., DETTI, R., AGLIARDI, F. (2002): STONE: a computer program for the three-dimensional simulation of rock-falls. Computers & Geosciences, 28, pp. 1079–1093. <https://doi.org/10.1016/S0098-3004(02)00025-0>
8. HEIM, A. (1932): Bergsturz und Menschenleben, Fretz und Wasmuth. Zurich, 218 pp.
9. KATZ, O., REICHENBACH, P., GUZZETTI, F. (2011): Rock fall hazard along the railway corridor to Jerusalem, Israel, in the Soreq and Refaim valleys. Natural Hazards, 56, pp. 649–665. <https://doi.org/10.1007/s11069-010-9580-z>
10. KLIMEŠ, J., VILÍMEK, V., OMELKA, M. (2009): Implications of geomorphological research for recent and prehistoric avalanches and related hazards at Huascaran, Peru. Natural Hazards, 50, pp. 193–209. <https://doi.org/10.1007/s11069-008-9330-7>
11. LAN, H., MARTIN, C.D., LIM, C.H. (2007): RockFall analyst: A GIS extension for threedimensional and spatially distributed rockfall hazard modeling. Computers & Geosciences, 33, No. 2, pp. 262–279. <https://doi.org/10.1016/j.cageo.2006.05.013>
12. LAN, H., MARTIN, C.D., ZHOU, C., LIM, C.H. (2010): Rockfall hazard analysis using LiDAR and spatial modeling. Geomorphology, 118, pp. 213–223. <https://doi.org/10.1016/j.geomorph.2010.01.002>
13. MAVROULI, O., COROMINAS, J. (2010): Vulnerability of simple reinforced concrete buildings to damage by rockfalls. Landslides, 7, pp. 169–180. <https://doi.org/10.1007/s10346-010-0200-5>
14. JABOYEDOFF, M., LABIOUSE, V. (2011): Technical Note: Preliminary estimation of rockfall runout zones. Natural Hazards and Earth System Sciences, 11, pp. 819–828. <https://doi.org/10.5194/nhess-11-819-2011>
15. KALVODA, J., ZVELEBIL, J. (1983): Dynamika a typy porušování svahů při vývoji údolí Labe v Děčínské vrchovině. Acta Montana, Praha, 63, pp. 5–73.
16. KLEIN, V., OPLETAL, M., PRAŽÁK, J. (1967): Vysvětlující text k základní geologické mapě 1 : 25 000, list M 33-41-A-c Königstein and M 33-41-A-d Hřensko. UUG, Geofond, Praha, 22 pp.
17. OFAT, OFEE, OFEFP (1997): Recommandations 1997 – Prise en compte des dangers dus aux crues dans le cadre des acivités de l’aménagement du territoire. Bern, OFAT/OFEE/ OFEFP, 32 pp.
18. STURZENEGGER, M., SARTORI, M., JABOYEDOFF, M., STEAD, D. (2007): Regional deterministic characterization of fracture networks and its application to GIS-based rock fall risk assessment. Engineering Geology, 94, pp. 201–214. <https://doi.org/10.1016/j.enggeo.2007.08.002>
19. ŠEBESTA, J. et al. (2000): Nebezpečí svahových pohybů v údolí Labe na okrese Děčín, part F. MS ČGÚ, Praha, 26 pp.
20. ŠPŮREK, M. (1967): Historická analýza působení sesuvného faktoru v Českém masivu. CSc. thesis, Academy of Science of the Czech Republic, 105 pp.
21. ŠPŮREK, M. (1973): Retrospection and Prognosis of Landslide Calamities. Mineral. Geol., 19, No. 2, pp. 119–134.
22. TYRÁČEK, J. (2001): Upper Cenozoic fluvial history of the Bohemian Massif. Quaternary International, 79, pp. 37–53. <https://doi.org/10.1016/S1040-6182(00)00121-X>
23. VALEČKA, J. (1989): Sedimentology, stratigraphy and cyclicity of the Jizera Formation (Middle-Upper Turonian) in the Děčín area (N. Bohemia). Věstník Ústředního ústavu geologického, 64, No. 2, pp. 77–90.
24. VAŘILOVÁ, Z., ZVELEBIL, J. (2005): Sandstone Relief Geohazards and their Mitigation: Rock Fall Risk Management in the Bohemian Switzerland NP, Czech Republic. Ferrantia-Travaux scientifiques de Musee national d’historie naurelle, Luxembourgh, 44, pp. 51–56.
25. VAŘILOVÁ, Z., ZVELEBIL, J. (2007): Catastrophic and episodic events in sandstone landscapes: slope movements and weathering. – In: Härtel, H., Cílek, V., Herben, T., Jackson A., Williams R. (eds.): Sandstone Landscapes, Academia, Praha, pp. 115–128.
26. WAGNER, A., OLIVER, R., LEITE, E. (1988): Rock and debris slide risk maps applied to low-volume roads in Nepal. Transportation Research Record 1106. TRB. National Research Council,Washington, D.C., pp. 255–267.
27. ZVELEBIL, J., VAŘILOVÁ Z., PALUŠM. (2005): Tools for rock fall risk integrated management in sandstone landscape of the Bohemian Switzerland National Park, Czech Republic (M121). In: Sassa, K., Fukuoka, H., Wang, F., Wang, G. (eds.): Landslides – Risk Analysis and Sustainable Disaster Management. Springer, pp. 119–126.
28. ZVELEBIL, J. (1989): Inženýrskogeologické aspekty vývoje skalních svahů v Děčínské vrchovině. CSc. Thesis, UGG ČSAV, Praha, 282 pp.
29. ZVELEBIL, J. (1995): Determination of characteristic features of slope movements presentday activity by monitoring in thick-bedded sandstones of the Bohemian Cretaceous Basin. Acta Universitatis Carolinae, Geographica, 30, Suppl., pp. 79–113.
30. ZVELEBIL, J. (2007): Rajonizace rizik ohrožení skalními říceními ze skalních svahů na území obce Hřensko. MS OÚ Hřensko, archiv ČGS Praha, 9 pp.
31. ZVELEBIL, J., STEMBERK, J. (2000): Slope Monitoring in Nature-Friendly of Rock Fall Danger from Sandstone Rock Walls in Děčín Highland, NW Bohemia. Proc VIII Int. Symp. on Landslides, Cardiff, 67 pp.
front cover

ISSN 1212-0014 (Print) ISSN 2571-421X (Online)

Archive