Register      Login
International Journal of Wildland Fire International Journal of Wildland Fire Society
Journal of the International Association of Wildland Fire

Articles citing this paper

What do we know about forest fire size distribution, and why is this knowledge useful for forest management?

Wenbin Cui A B and Ajith H. Perera A
+ Author Affiliations
- Author Affiliations

A Ontario Forest Research Institute, Ontario Ministry of Natural Resources, 1235 Queen Street E, Sault Ste. Marie, ON P6A 2E5, Canada.

B Corresponding author. Email: wenbin.cui@ontario.ca

International Journal of Wildland Fire 17(2) 234-244 https://doi.org/10.1071/WF06145
Submitted: 9 November 2006  Accepted: 17 September 2007   Published: 18 April 2008



67 articles found in Crossref database.

Size dependency of variables influencing fire occurrence in Mediterranean forests of Eastern Spain
Peris-Llopis Marina, González-Olabarria José Ramón, Mola-Yudego Blas
European Journal of Forest Research. 2020 139(4). p.525
Fire deficit increases wildfire risk for many communities in the Canadian boreal forest
Parisien Marc-André, Barber Quinn E., Hirsch Kelvin G., Stockdale Christopher A., Erni Sandy, Wang Xianli, Arseneault Dominique, Parks Sean A.
Nature Communications. 2020 11(1).
Extreme value analysis of forest fires from New York to Nova Scotia, 1950–2010
Irland Lloyd C.
Forest Ecology and Management. 2013 294 p.150
Development of a Global Fire Weather Database
Field R. D., Spessa A. C., Aziz N. A., Camia A., Cantin A., Carr R., de Groot W. J., Dowdy A. J., Flannigan M. D., Manomaiphiboon K., Pappenberger F., Tanpipat V., Wang X.
Natural Hazards and Earth System Sciences. 2015 15(6). p.1407
Wildfires in boreal ecoregions: Evaluating the power law assumption and intra‐annual and interannual variations
Lehsten Veiko, Groot William J., Flannigan Mike, George Charles, Harmand Peter, Balzter Heiko
Journal of Geophysical Research: Biogeosciences. 2014 119(1). p.14
Interactions between macroclimate, microclimate, and anthropogenic disturbance affect the distribution of aspen near its northern edge in Quebec: Implications for climate change related range expansions
Whitbeck Kristen L., Oetter Doug R., Perry David A., Fyles James W.
Forest Ecology and Management. 2016 368 p.194
Edge effects on between-fire interval in landscape fragments such as fire-prone terrestrial conservation reserves
Gill A. Malcolm, Sharples Jason, Johnstone Glenn
Biological Conservation. 2014 169 p.54
Fuel fragmentation and fire size distributions in managed and unmanaged boreal forests in the province of Saskatchewan, Canada
Lehsten Veiko, de Groot William, Sallaba Florian
Forest Ecology and Management. 2016 376 p.148
Highlighting Biome-Specific Sensitivity of Fire Size Distributions to Time-Gap Parameter Using a New Algorithm for Fire Event Individuation
Oom Duarte, Silva Pedro, Bistinas Ioannis, Pereira José
Remote Sensing. 2016 8(8). p.663
Scale‐dependent thresholds in the dominant controls of wildfire size in semi‐arid southwest Australia
O'Donnell A. J., Boer M. M., McCaw W. L., Grierson P. F.
Ecosphere. 2014 5(7). p.1
Hydro-geomorphic response models for burned areas and their applications in land management
Nyman Petter, Sheridan Gary J., Lane Patrick N. J.
Progress in Physical Geography: Earth and Environment. 2013 37(6). p.787
Fractal properties of forest fires in Amazonia as a basis for modelling pan-tropical burnt area
Fletcher I. N., Aragão L. E. O. C., Lima A., Shimabukuro Y., Friedlingstein P.
Biogeosciences. 2014 11(6). p.1449
How Fire History, Fire Suppression Practices and Climate Change Affect Wildfire Regimes in Mediterranean Landscapes
Brotons Lluís, Aquilué Núria, de Cáceres Miquel, Fortin Marie-Josée, Fall Andrew, Bohrer Gil
PLoS ONE. 2013 8(5). p.e62392
How Much of a Pixel Needs to Burn to Be Detected by Satellites? A Spectral Modeling Experiment Based on Ecosystem Data from Yellowstone National Park, USA
Riet Mats, Veraverbeke Sander
Remote Sensing. 2022 14(9). p.2075
Gradient boosting with extreme-value theory for wildfire prediction
Koh Jonathan
Extremes. 2023 26(2). p.273
Comparison of the Higher-Severity Fire Regime in Historical (A.D. 1800s) and Modern (A.D. 1984–2009) Montane Forests Across 624,156 ha of the Colorado Front Range
Williams Mark A., Baker William L.
Ecosystems. 2012 15(5). p.832
Large fires or small fires, will they differ in affecting shifts in species composition and distributions under climate change?
Xu Wenru, He Hong S., Huang Chao, Duan Shengwu, Hawbaker Todd J., Henne Paul D., Liang Yu, Zhu Zhiliang
Forest Ecology and Management. 2022 510 p.120131
Synoptic weather conditions and changing fire regimes in a Mediterranean environment
Duane Andrea, Brotons Lluís
Agricultural and Forest Meteorology. 2018 253-254 p.190
Evaluating the effect of prescribed burning on the reduction of wildfire extent in Portugal
Davim David A., Rossa Carlos G., Pereira José M.C., Fernandes Paulo M.
Forest Ecology and Management. 2022 519 p.120302
Spatiotemporal wildfire modeling through point processes with moderate and extreme marks
Koh Jonathan, Pimont François, Dupuy Jean-Luc, Opitz Thomas
The Annals of Applied Statistics. 2023 17(1).
Characterising fire regimes in Spain from fire statistics
Moreno M. Vanesa, Chuvieco Emilio
International Journal of Wildland Fire. 2013 22(3). p.296
Variation in the Canadian Fire Weather Index Thresholds for Increasingly Larger Fires in Portugal
Fernandes
Forests. 2019 10(10). p.838
Impact of wildfire size on snowshoe hare relative abundance in southern British Columbia, Canada
Hutchen Jenna, Hodges Karen E.
Fire Ecology. 2019 15(1).
Detecting critical nodes in forest landscape networks to reduce wildfire spread
Yemshanov Denys, Liu Ning, Thompson Daniel K., Parisien Marc-André, Barber Quinn E., Koch Frank H., Reimer Jonathan, Pickell Paul
PLOS ONE. 2021 16(10). p.e0258060
Modelling the effects of fire and rainfall regimes on extreme erosion events in forested landscapes
Jones Owen D., Nyman Petter, Sheridan Gary J.
Stochastic Environmental Research and Risk Assessment. 2014 28(8). p.2015
Predicting forest fires burned area and rate of spread from pre-fire multispectral satellite measurements
Maffei Carmine, Menenti Massimo
ISPRS Journal of Photogrammetry and Remote Sensing. 2019 158 p.263
Increased burning in a warming climate reduces carbon uptake in the Greater Yellowstone Ecosystem despite productivity gains
Henne Paul D., Hawbaker Todd J., Scheller Robert M., Zhao Feng, He Hong S., Xu Wenru, Zhu Zhiliang, Jucker Tommaso
Journal of Ecology. 2021 109(3). p.1148
Constructing a Comprehensive National Wildfire Database from Incomplete Sources: Israel as a Case Study
Guk Edna, Bar-Massada Avi, Levin Noam
Fire. 2023 6(4). p.131
Wildfire Prediction to Inform Fire Management: Statistical Science Challenges
Taylor S. W., Woolford Douglas G., Dean C. B., Martell David L.
Statistical Science. 2013 28(4).
Do lakes feel the burn? Ecological consequences of increasing exposure of lakes to fire in the continental United States
McCullough Ian M., Cheruvelil Kendra Spence, Lapierre Jean‐François, Lottig Noah R., Moritz Max A., Stachelek Jemma, Soranno Patricia A.
Global Change Biology. 2019 25(9). p.2841
Statistical Models of Key Components of Wildfire Risk
Xi Dexen D.Z., Taylor Stephen W., Woolford Douglas G., Dean C.B.
Annual Review of Statistics and Its Application. 2019 6(1). p.197
Emulating natural disturbances as a forest management goal: Lessons from fire regime simulations
Perera Ajith H., Cui Wenbin
Forest Ecology and Management. 2010 259(7). p.1328
Wildfire Frequency-Area Statistics in Spain
Moreno M.V., Malamud B.D., Chuvieco E.A.
Procedia Environmental Sciences. 2011 7 p.182
Land cover, more than monthly fire weather, drives fire-size distribution in Southern Québec forests: Implications for fire risk management
Marchal Jean, Cumming Steve G., McIntire Eliot J. B., Carcaillet Christopher
PLOS ONE. 2017 12(6). p.e0179294
Wildland fire prevention: the impact of the Modifying Industrial Operations Protocol on the growth of industrial forestry-caused wildland fires in Ontario, Canada
Granville Kevin, Woolford Douglas G., Dean C. B., McFayden Colin B.
International Journal of Wildland Fire. 2022 31(9). p.825
Mapping Natural Phenomena: Boreal Forest Fires with Non-discrete Boundaries
Remmel Tarmo K., Perera Ajith H.
Cartographica: The International Journal for Geographic Information and Geovisualization. 2009 44(4). p.274
One extreme fire weather event determines the extent and frequency of wildland fires
Wang Xianli, Swystun Tom, Oliver Jacqueline, Flannigan Mike D
Environmental Research Letters. 2021 16(11). p.114031
Kinetics of pyrolysis of litter materials from pine and eucalyptus forests
Wadhwani R., Sutherland D., Moinuddin K. A. M., Joseph P.
Journal of Thermal Analysis and Calorimetry. 2017 130(3). p.2035
Overview of fire foci causes and locations in Brazil based on meteorological satellite data from 1998 to 2011
Caúla R. H., Oliveira-Júnior J. F., Lyra G. B., Delgado R. C., Heilbron Filho P. F. L.
Environmental Earth Sciences. 2015 74(2). p.1497
The Proximal Drivers of Large Fires: A Pyrogeographic Study
Clarke Hamish, Penman Trent, Boer Matthias, Cary Geoffrey J., Fontaine Joseph B., Price Owen, Bradstock Ross
Frontiers in Earth Science. 2020 8
Characterizing the rate of spread of large wildfires in emerging fire environments of northwestern Europe using Visible Infrared Imaging Radiometer Suite active fire data
Cardíl Adrián, Tapia Victor M., Monedero Santiago, Quiñones Tomás, Little Kerryn, Stoof Cathelijne R., Ramirez Joaquín, de-Miguel Sergio
Natural Hazards and Earth System Sciences. 2023 23(1). p.361
Decreases in Fire Spread Probability with Forest Age Promotes Alternative Community States, Reduced Resilience to Climate Variability and Large Fire Regime Shifts
Kitzberger Thomas, Aráoz Ezequiel, Gowda Juan H., Mermoz Mónica, Morales Juan M.
Ecosystems. 2012 15(1). p.97
Risk and Uncertainty Assessment for Natural Hazards (2013)
Hincks T. K., Malamud B. D., Sparks R. S. J., Wooster M. J., Lynham T. J.
Economic valuation of ecosystem-based rockfall risk reduction considering disturbances and comparison to structural measures
Moos C., Thomas M., Pauli B., Bergkamp G., Stoffel M., Dorren L.
Science of The Total Environment. 2019 697 p.134077
How Does Fire Suppression Alter the Wildfire Regime? A Systematic Review
Hai Jiaying, Zhang Ling, Gao Cong, Wang Han, Wu Jiansheng
Fire. 2023 6(11). p.424
Handbook of Optimization in Complex Networks (2012)
Fang Zheng, Wang Jie, Liu Benyuan, Gong Weibo
Relating Spatiotemporal Patterns of Forest Fires Burned Area and Duration to Diurnal Land Surface Temperature Anomalies
Maffei Carmine, Alfieri Silvia, Menenti Massimo
Remote Sensing. 2018 10(11). p.1777
Global fire size distribution is driven by human impact and climate
Hantson Stijn, Pueyo Salvador, Chuvieco Emilio
Global Ecology and Biogeography. 2015 24(1). p.77
Multi-scaled drivers of severity patterns vary across land ownerships for the 2013 Rim Fire, California
Povak Nicholas A., Kane Van R., Collins Brandon M., Lydersen Jamie M., Kane Jonathan T.
Landscape Ecology. 2020 35(2). p.293
Projected changes in fire size from daily spread potential in Canada over the 21st century
Wang Xianli, Studens Kala, Parisien Marc-André, Taylor Steve W, Candau Jean-Noël, Boulanger Yan, Flannigan Mike D
Environmental Research Letters. 2020 15(10). p.104048
Assessing the distribution patterns of wildfire sizes in Mississippi, USA
Sun Changyou, Tolver Branden
International Journal of Wildland Fire. 2012 21(5). p.510
Time since prior wildfire affects subsequent fire containment in black spruce
Beverly Jennifer L.
International Journal of Wildland Fire. 2017 26(11). p.919
Prediction of regional wildfire activity in the probabilistic Bayesian framework of Firelihood
Pimont François, Fargeon Héléne, Opitz Thomas, Ruffault Julien, Barbero Renaud, Martin‐StPaul Nicolas, Rigolot Eric, RiviÉre Miguel, Dupuy Jean‐Luc
Ecological Applications. 2021 31(5).
Wild forest fire regime following land abandonment in the Mediterranean region
Ursino Nadia, Romano Nunzio
Geophysical Research Letters. 2014 41(23). p.8359
Categorizing and Harmonizing Natural, Technological, and Socio-Economic Perils Following the Catastrophe Modeling Paradigm
Mignan Arnaud
International Journal of Environmental Research and Public Health. 2022 19(19). p.12780
Characterization of wildfire regimes in Canadian boreal terrestrial ecosystems
Jiang Yueyang, Zhuang Qianlai, Flannigan Mike D., Little John M.
International Journal of Wildland Fire. 2009 18(8). p.992
A compound Poisson model for the annual area burned by forest fires in the province of Ontario
Podur Justin J., Martell David L., Stanford David
Environmetrics. 2010 21(5). p.457
Airborne LiDAR Detects Selectively Logged Tropical Forest Even in an Advanced Stage of Recovery
Kent Rafi, Lindsell Jeremy, Laurin Gaia, Valentini Riccardo, Coomes David
Remote Sensing. 2015 7(7). p.8348
The influences of forest fire on the vegetation and some soil properties of a savanna ecosystem in Nigeria
Fatubarin, A. R., Olojugba, M. R
Journal of Soil Science and Environmental Management. 2014 5(2). p.28
Evaluating the Effect of Prescribed Burning on the Reduction of Wildfire Extent in Portugal
Davim David A., Rossa Carlos G., Pereira José M. C., Fernandes Paulo M.
SSRN Electronic Journal . 2022
Wildfire Danger Prediction and Understanding With Deep Learning
Kondylatos Spyros, Prapas Ioannis, Ronco Michele, Papoutsis Ioannis, Camps‐Valls Gustau, Piles María, Fernández‐Torres Miguel‐Ángel, Carvalhais Nuno
Geophysical Research Letters. 2022 49(17).
A biogeographic model of fire regimes in Australia: current and future implications
Bradstock R. A.
Global Ecology and Biogeography. 2010 19(2). p.145
Spatial scale invariance of southern Australian forest fires mirrors the scaling behaviour of fire-driving weather events
Boer Matthias M., Sadler Rohan J., Bradstock Ross A., Gill A. Malcolm, Grierson Pauline F.
Landscape Ecology. 2008
Integrating fire spread patterns in fire modelling at landscape scale
Duane Andrea, Aquilué Núria, Gil-Tena Assu, Brotons Lluís
Environmental Modelling & Software. 2016 86 p.219
Fire regime from 1973 to 2011 in north-western Patagonian grasslands
Oddi Facundo José, Ghermandi Luciana
International Journal of Wildland Fire. 2016 25(9). p.922
Isolating the lightning ignition regime from a contemporary background fire regime in east-central Florida, USA
Duncan Brean W., Adrian Frederic W., Stolen Eric D.
Canadian Journal of Forest Research. 2010 40(2). p.286
A simulation of probabilistic wildfire risk components for the continental United States
Finney Mark A., McHugh Charles W., Grenfell Isaac C., Riley Karin L., Short Karen C.
Stochastic Environmental Research and Risk Assessment. 2011 25(7). p.973

Committee on Publication Ethics


Abstract Export Citation Get Permission