Anonymous, Boroujerd county natural resource office. None published information of fire in rangeland, 2014. (In Persian)
Antoninetti, M., Binaghi, E., Rampini, A. and D’Angelo, M. The integrated use of satellite and topographic data for forest fire hazard mapping. In: Wikkler P. (ed.) Proceedings of 12th EARSeL Symposium “Remote sensing for monitoring the changing environment of Europe”, Eger (Hungary), Sept, 8-11.A.A. Balkema: 1993; 179-184.
Ardakani, A. Assessment of drought effect on wildfire using MODIS data, The 2nd International Conference on Earth Observation for Global Changes (EOGC 2009), Chengdu, Sichuan, China. 2009.
Bruke, T.E. An Internet–Based forest fire information system. Unasylva, 1997; 48 (2): 32-38.
Butry, D.T. What is the price of catastrophic wildfire? J. Forest., 2001; 99; 9-17.
Chen, F., Weber, K.T., Anderson, J. and Gokhal, B. Assessing the susceptibility of semiarid rangelands to wildfires using Terra MODIS and Landsat Thematic Mapper data. Int. J. Wildland Fire, 2011; 20 (5): 690-701.
Chuvieco, E. Application of remote sensing and geographic information systems to forest, fire hazard mapping. Remote Sens. Environ., 1989; 29; 147-159.
De Vliegher, B.M. and Basigos, P.S. Fire hazard modelling using remote sensing and GIS. A case study of the Eparchy of Pylias (Messinia, Greece). EARSeL advances in remote sensing, 1995; 4 (3): 21-29.
Dong, X., Li-min, D., Guo-fan, S., Lei, T., Hui, W., Forest fire risk zone mapping from satellite images and GIS for Baihe Forestry Bureau, Jilin, China. J. Forest. Res., 2005; 16(3): 169-174.
Erten, E., Kurgun, V. and Musaoglu, N. Forest fire risk zone mapping form satellite imagery and GIS a case study. Eur. J. Oper. Res., 2005; 15: 1-7.
Faramarzi, H., Hosseini, S.M. and Ghajar, I. Gholamalifard, M., Fire risk modeling using discriminant analysis and adaptive network based fuzzy inference system in the Golestan National Park. J. Crisis Manag., 2015; 5: 79-87. (In Persian)
Gltie, J. GIS-supported modelling and diagnosis of fire risk at the wildland urban interface. A methodological approach for operational management. Modeling Environmental Dynamics, Environ. Sci. Eng., 2008; 169-197.
Jain, A. Forest fire risk modeling using remote sensing and geographic information system. Curr. Sci., 1996; 70 (10): 928 P.
Jaiswal, R.K. Forest fire risk zone mapping from satellite imagery and GIS. International, J. App. Earth Obser. Geo., 2002; 4; 1-10.
Kailidis, D.S. and Pantelis, D. Sizes of forest-shrub and grazing land fires and relationship with meteorological conditions during the year and the day. Thessaloniki (Greece), Aristotelian University of Thessaloniki, Dept. Forestry Natural Environment, Laboratory Forest Protection, 3/1988, 1988; 26 P.
Kamyab, H.R. and Mahiny, A.S. Modeling urban growth effect on landscape structure in Gorgan city area. ECOPERSIA, 2013; 1(2): 99-112.
Karteris, M.A. and Kritikos, G. Assessment of forest fire damages in Holy Mount Athos using remote sensing techniques, in: Floving S. et al. (eds.) European collaborative program workshop on Remote Sensing for Forestry Applications. Copenhagen (Denmark), 1992; 13-15: 197-210.
Keane, R.E. A Method for mapping fire hazard and risk across multiple scales and its application in fire management. Ecol. Model., 2010; 221: 2-18.
Keane, R.E., Burgan, R. and Wagtendonk, J.V. Mapping wildland fuels for fire management across multiple scales: Integrating remote sensing, GIS, and biophysical modeling. Int. J. Wildland Fire, 2001; 10 (4): 301-319.
Kuntz, M. Fire risk modeling based on satellite remote sensing and GIS. J. of Earsel advances in RS, 1995; 4 (3): 39-45.
Mahdavi, A., Fallah Shamsi, S.R. and Nazari, R. Forests and rangelands wildfire risk zoning using GIS and AHP techniques. Caspian J. Env. Sci., 2012; 10 (1): 43-52.
Mansouri, N., Nazari, R., Nasiri, N. and Gragozloo, A.R. Collection of management program of forest fire crisis by GIS and RS technology. Journal of Application of Remote Sensing and Geographical Information System in Programming, 2012; 2 (3): 128-141.
Mohammadi, F., Pir Bavaghar, M. and Shabanian, N. Forest fire risk zone modeling using logistie regression and GIS: an Iranian case study. J. Small-scale Forestry, 2014; 13: 117-125.
Mohammadi, F., Shabanian, N., Pourhashemi, M. and Fatehi, P. Risk zone mapping of forest fire using GIS and AHP in a part of Paveh forests. Iranian J. Forest and Poplar Res., 2010; 18 (4): 569-586. (In Persian)
Noson, L. Hazard mapping and risk assessment. Regional workshop on best practices in disaster mitigation, Bali, Indonesia, 2004; 69-80.
Pettenella, D. Proposal for a harmonized methodology to assess socio-economic damages from forest fires in Europe. Final Reports of Studies on Forest Fires Done Under Forest Focus Regulation. Economic Damages Study. Joint Research Centre (JRC) and the Directorate General for Environment (DG ENV) of the European Commission (EC), 2009; 187 P.
Robichaud, P.R. and Ashmun, L.E. Tools to aid post-wildfire assessment and erosion-mitigation treatment decisions. Int. J. Wildland Fire, 2012: 22(1): 95-105.
Root, R.R., Stitt, S.C.F., Nyquist, M.O., Waggoner, G.S. and Agee, J.K. Vegetation and fire fuel models mapping of North Cascades National Park. In: Pecora 10 Proceedings, Fort Collins (Colorado, USA), Aug., 20-22: 1985: 287-294.
Roy, N. and M. C. Porwal. Forest fire risk zonation using geo-spatial modeling in Part of Rajaji National Park, Asian J. Geoinformatics, 2005; 5 (2): 40-46.
Saaty, T.L. Decision making for leaders, RWS Publications, Pittsburgh, 2002; 322 P.
Shariat Nezhad, M. Role and pavilion of forests, rangelands and watershed organization for development management and preparing to food industry primary material of country. Proceeding of first national conference preparing to food industry primary material of country. Gorgan University of Agricultural Sciences and Natural Resources, 2008. (In Persian)
Tahir, M., Rabbani, G. and Farooq, M. Forest fire risk zonation using remote sensing and GIS technology in Kansrao forest range of Rajaji National Park, Uttarakhand, India. Inter. J. adv. RS and GIS, 2013; 2 (1): 86-95.
Vakalis, D., Sarimvesis, H., Kiranoudis, C., Alexandridis, A. and Bafas, G. A GIS based operational system for wildland fire crisis management I. Mathematical modeling and simulation. App. Math. Model. J., 2004; 28 (4): 389-410.
Vazquez, A. and Moreno, J.M. Sensitivity of fire occurrence to meteorological variables in mediterranean and atlantic areas of Spain. Landscape Urban Plan., 1993; 24: 129-142.
Weber, K.T., Seefeldt, S.S., Norton, J.M. and Finley, C. Fire severity modeling of Sagebrush-steppe rangelands in southeastern Idaho. Final Report: Impact of Temporal Landcover Changes in Southeastern Idaho Rangelands, 2010; 205-218.
Williams, C.J., Pierson, F.B., Robichaud, P.R. and Boll, J. Hydrologic and erosion responses to wildfire along the rangeland-xeric forest continuum in the western US: a review and model of hydrologic vulnerability. Int. J. Wildland Fire., 2014; 23 (2): 155-172.
Zebardast E. Application of AHP in local and city management. J. Honarhaye Ziba, 2002; 10: 4-12. (In Persian)