1. V. V. Titov, F.I. Gonzalez, P.M. E. Laboratory, Implementation and testing of the Method of Splitting Tsunami (MOST) model, Vol. [108,] U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Pacific Marine Environmental Laboratory ;Springfield, VA, Seattle, Wash., 1997. URL http://purl.access.gpo.gov/GPO/LPS46461.
2. P. Vickery, J. Lin, P. Skerlj, L. Twisdale, K. Huang, Hazus-mh hurricane model methodology. i: Hurricane hazard, terrain, and wind load modeling, Natural Hazards Review 7 (2) (2006) 82-93. doi:10.1061/(ASCE)1527-6988(2006)7:2(82).
3. R. C. Rothermel, A mathematical model for predicting fire spread in wildland fuels, Director (INT-115) (1972) 40. URL http://www.srs.fs.usda.gov/pubs/32533.
4. M. A. Finney, FARSITE, Fire Area Simulator–model development and evaluation, Res. Pap. RMRS-RP-4, Ogden, UT: U.S. Department of Agriculture, Forest Service, Rocky Mountain Research Station, 1998.
5. B. Abdalhaq, A. Cortés, T. Margalef, E. Luque, Enhancing wildland fire prediction on cluster systems applying evolutionary optimization techniques, Future Generation Computer Systems 21 (1) (2005) 61-67. doi:10.1016/j.future.2004.09.013. URL http://www.sciencedirect.com/science/article/pii/S0167739X04001360.