Articles | Volume 18, issue 2
https://doi.org/10.5194/nhess-18-555-2018
https://doi.org/10.5194/nhess-18-555-2018
Research article
 | 
21 Feb 2018
Research article |  | 21 Feb 2018

Debris flow run-out simulation and analysis using a dynamic model

Raquel Melo, Theo van Asch, and José L. Zêzere

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Cited articles

Avolio, M. V., Bozzano, F., D'Ambrosio, D., Di Gregorio, S., Lupiano, V., Mazzanti, P., Rongo, R., and Spataro, W.: Debris flows simulation by cellular automata: a short review of the SCIDDICA models, in: 5th International Conference on Debris-Flow Hazards Mitigation, Mechanics, Prediction and Assessment, IJEGE book, edited by: Genevois, R., Hamilton, D. L., and Prestininzi, A., Casa Editrice Università La Sapienza, Rome, Italy, 387–397, 2011. 
Avolio, M. V., Di Gregorio, S., Lupiano, V., and Mazzanti, P.: SCIDDICA-SS3: a new version of cellular automata model for simulating fast moving landslides, J. Supercomput., 65, 682–696, https://doi.org/10.1007/s11227-013-0948-1, 2013. 
Baum, R. L. and Godt, J. W.: Early warning of rainfall-induced shallow landslides and debris flows in the USA, Landslides, 7, 259–272, https://doi.org/10.1007/s10346-009-0177-0, 2010. 
Beguería, S., Van Asch, T. W. J., Malet, J.-P., and Gröndahl, S.: A GIS-based numerical model for simulating the kinematics of mud and debris flows over complex terrain, Nat. Hazards Earth Syst. Sci., 9, 1897–1909, https://doi.org/10.5194/nhess-9-1897-2009, 2009. 
Cannon, S. H.: Debris-Flow Generation From Recently Burned Watersheds, Environ. Eng. Geosci., 7, 321–341, 2001. 
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Short summary
Only two months after a huge forest fire occurred in the upper part of a valley located in central Portugal, several debris flows were triggered by intense rainfall. This research aims to simulate the debris flow run-out for the entire basin, using a dynamic model. Three scenarios were developed and the results were confronted with the existing buildings exposed in the study area. The worst-case scenario showed a potential inundation that may affect 345 buildings.
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