Information Technology Reference
In-Depth Information
30. Avolio, M.V., Di Gregorio, S., Rongo, R., Sorriso-Valvo, M., Spataro, W.: Hexagonal cellular
automata model for debris flow simulation. In: Proceedings of IAMG, pp. 183-188 (1998)
31. D'Ambrosio, D., Di Gregorio, S., Iovine, G.: Simulating debris flows through a hexagonal
Cellular Automata model: Sciddica S3-hex. Nat. Haz. Ear. Sys. Scien. 3, 545-559 (2003)
32. Miyamoto, H., Sasaki, S.: Simulating lava flows by an improved cellular automata method.
Comp. Geosci. 23, 283-292 (1997)
33. Crisci, G.M., Di Gregorio, S., Nicoletta, F., Rongo, R., Spataro, W.: Analysing Lava Risk for
the Etnean Area: Simulation by Cellular Automata Methods. Nat. Haz. 20, 215-229 (1999)
34. Avolio, M.V., D'Ambrosio, D., Lupiano, V., Rongo, R., Spataro, W.: Evaluating Lava Flow
Hazard at Mount Etna (Italy) by a Cellular Automata Based Methodology. In: Wyrzykowski,
R., Dongarra, J., Karczewski, K., Wasniewski, J. (eds.) PPAM 2009, Part II. LNCS, vol. 6068,
pp. 495-504. Springer, Heidelberg (2010)
35. Cappello, A., Vicari, A., DelNegro, C.: A retrospective validation of lava flow hazard map at
Etna Volcano. Spec. Issue of Annals of Geophy. (2011) (to appear)
36. Ho, C.H., Smith, E.I., Feuerbach, D.L., Naumann, T.R.: Eruptive calculation for the Yucca
Mountain site, USA: Statistical estimation of recurrence rates. Bull. Volcanol. 54, 50-56
(1991)
37. Behncke, B., Neri, M., Nagay, A.: Lava flow hazard at Mount Etna (Italy): New data from a
GIS-based study. Spec. Pap. Geol. Soc. Am. 396, 187-205 (2005)
38. Tarquini, S., Favalli, M.: Changes of the susceptibility to lava flow invasion induced by mor-
phological modifications of an active volcano: the case of Mount Etna, Italy. Nat. Hazards 54,
537-546 (2010)
 
Search WWH ::




Custom Search