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Articles citing this paper

A generic, empirical-based model for predicting rate of fire spread in shrublands

Wendy R. Anderson A , Miguel G. Cruz B N , Paulo M. Fernandes C , Lachlan McCaw D , Jose Antonio Vega E , Ross A. Bradstock F , Liam Fogarty G , Jim Gould B , Greg McCarthy H , Jon B. Marsden-Smedley I , Stuart Matthews B J , Greg Mattingley K , H. Grant Pearce L and Brian W. van Wilgen M
+ Author Affiliations
- Author Affiliations

A School of Physical, Environmental and Mathematical Sciences, University of New South Wales, Canberra, ACT 2600, Australia.

B Bushfire Dynamics and Applications, CSIRO Land and Water Flagship, Canberra, ACT 2601, Australia.

C Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB), University of Trás-os-Montes and Alto Douro, 5001-801 Vila Real, Portugal.

D Department of Parks and Wildlife, Manjimup, WA 6258, Australia.

E Forestry Research Center of Lourizan, Pontevedra 36080, Spain.

F Centre for Environmental Risk Management of Bushfires, University of Wollongong, NSW 2522, Australia.

G Fire and Emergency Management Division, Land, Fire and Environment, Department of Environment and Primary Industries, Melbourne, Vic. 3002, Australia.

H Fire Ecology and Risk Planning, Strategy and Partnerships, DEPI, Gippsland Region, Orbost, Vic. 3888, Australia.

I Geography and Environmental Studies, School of Land and Food, University of Tasmania, Hobart, Tas. 7001, Australia.

J Faculty of Agriculture and Environment, University of Sydney, Eveleigh, Sydney, NSW, Australia.

K Parks Victoria, PO Box 91, Foster, Vic. 3960, Australia.

L Scion, Rural Fire Research Group, PO Box 29237, Christchurch 8540, New Zealand.

M Centre for Invasion Biology, Department of Botany and Zoology, Stellenbosch University, Private Bag X1, Matieland, 7602, South Africa.

N Corresponding author. Email: miguel.cruz@csiro.au

International Journal of Wildland Fire 24(4) 443-460 https://doi.org/10.1071/WF14130
Submitted: 24 July 2014  Accepted: 2 December 2014   Published: 12 February 2015



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Forest Systems. 2018 26(3). p.eSC08
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Briones-Herrera Carlos Ivan, Vega-Nieva Daniel José, Monjarás-Vega Norma Angélica, Flores-Medina Favian, Lopez-Serrano Pablito Marcelo, Corral-Rivas José Javier, Carrillo-Parra Artemio, Pulgarin-Gámiz Miguel Ángel, Alvarado-Celestino Ernesto, González-Cabán Armando, Arellano-Pérez Stéfano, Álvarez-González Juan Gabriel, Ruiz-González Ana Daría, Jolly William Mathew
Forests. 2019 10(5). p.402
Relationships of Fire Rate of Spread with Spectral and Geometric Features Derived from UAV-Based Photogrammetric Point Clouds
Carbonell-Rivera Juan Pedro, Moran Christopher J., Seielstad Carl A., Parsons Russell A., Hoff Valentijn, Ruiz Luis Á., Torralba Jesús, Estornell Javier
Fire. 2024 7(4). p.132
Site Quality Models and Fuel Load Dynamic Equation Systems Disaggregated by Size Fractions and Vegetative States in Gorse and High Heath Shrublands in Galicia (NW Spain)
Vega José A., Álvarez-González Juan Gabriel, Arellano-Pérez Stéfano, Fernández Cristina, Ruiz-González Ana Daría
Fire. 2024 7(4). p.126
Coupling wildfire spread simulations and connectivity analysis for hazard assessment: a case study in Serra da Cabreira, Portugal
Sá Ana C. L., Aparicio Bruno, Benali Akli, Bruni Chiara, Salis Michele, Silva Fábio, Marta-Almeida Martinho, Pereira Susana, Rocha Alfredo, Pereira José
Natural Hazards and Earth System Sciences. 2022 22(12). p.3917
A simple model for shrub-strata-fuel dynamics in Quercus coccifera L. communities
Pimont François, Dupuy Jean-Luc, Rigolot Eric
Annals of Forest Science. 2018 75(2).
Ungulates mitigate the effects of drought and shrub encroachment on the fire hazard of Mediterranean oak woodlands
Lecomte Xavier, Bugalho Miguel N., Catry Filipe X., Fernandes Paulo M., Cera Andreu, Caldeira Maria C.
Ecological Applications. 2024
Fire ignition patterns to manage prescribed fire behavior: Application to Mediterranean pine forests
Molina J.R., Ortega M., Rodríguez y Silva F.
Journal of Environmental Management. 2022 302 p.114052
LES simulation of terrain slope effects on wind enhancement by a point source fire
Eftekharian Esmaeel, Rashidi Maria, Ghodrat Maryam, He Yaping, Kwok Kenny C.S.
Case Studies in Thermal Engineering. 2020 18 p.100588
Exploring the key drivers of forest flammability in wet eucalypt forests using expert-derived conceptual models
Cawson Jane G., Hemming Victoria, Ackland Andrew, Anderson Wendy, Bowman David, Bradstock Ross, Brown Tegan P., Burton Jamie, Cary Geoffrey J., Duff Thomas J., Filkov Alexander, Furlaud James M., Gazzard Tim, Kilinc Musa, Nyman Petter, Peacock Ross, Ryan Mike, Sharples Jason, Sheridan Gary, Tolhurst Kevin, Wells Tim, Zylstra Phil, Penman Trent D.
Landscape Ecology. 2020 35(8). p.1775
Ungulates mediate trade‐offs between carbon storage and wildfire hazard in Mediterranean oak woodlands
Lecomte Xavier, Caldeira Maria C., Catry Filipe X., Fernandes Paulo M., Jackson Robert B., Bugalho Miguel N., Mukul Sharif
Journal of Applied Ecology. 2019 56(3). p.699
Quantifying the effect of mastication on flaming and smouldering durations in eucalypt forests and woodlands under laboratory conditions
Cawson J. G., Pickering B., Penman T. D., Filkov A.
International Journal of Wildland Fire. 2021 30(8). p.611
Development and participatory evaluation of fireline intensity and flame property models for managed burns on Calluna-dominated heathlands
Davies G. Matt, Legg Colin J., Smith A. Adam, MacDonald Angus
Fire Ecology. 2019 15(1).
Encyclopedia of Wildfires and Wildland-Urban Interface (WUI) Fires (2020)
Duff Thomas J., Cawson Jane G., Penman Trent D.
Curvature effects in the dynamic propagation of wildfires
Hilton J. E., Miller C., Sharples J. J., Sullivan A. L.
International Journal of Wildland Fire. 2016 25(12). p.1238
Evaluating the Performance of Fire Rate of Spread Models in Northern-European Calluna vulgaris Heathlands
Minsavage-Davis Charles D., Davies G. Matt
Fire. 2022 5(2). p.46

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