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

A Logit Model for Predicting the Daily Occurrence of Human Caused Forest-Fires

CV Garcia, PM Woodard, SJ Titus, WL Adamowicz and BS Lee
5(2) pp.101 - 111


149 articles found in Crossref database.

Lessons Learned from Arson Wildfire Incidence in Reforestations and Natural Stands in Spain
Da Ponte Emmanuel, Costafreda-Aumedes Sergi, Vega-Garcia Cristina
Forests. 2019 10(3). p.229
The Economics of Forest Disturbances (2008)
Prestemon Jeffrey P., Mercer D. Evan, Pye John M.
Driving factors of fire density can spatially vary at the local scale in south-eastern France
Ganteaume Anne, Long-Fournel Marlène
International Journal of Wildland Fire. 2015 24(5). p.650
Forest Landscapes and Global Change (2014)
Rego Francisco C., Silva Joaquim S.
Seasonality and trends in human- and lightning-caused wildfires ≥ 2 ha in Canada, 1959–2018
Coogan Sean C. P., Cai Xinli, Jain Piyush, Flannigan Mike D.
International Journal of Wildland Fire. 2020 29(6). p.473
Modeling and mapping wildfire ignition risk in Portugal
Catry Filipe X., Rego Francisco C., Bação Fernando L., Moreira Francisco
International Journal of Wildland Fire. 2009 18(8). p.921
A Bootstrap-Based Covariate Selection Method for Modeling the Risk of Lightning-Induced Fires at a Local Scale: A Case Study in Northwest Spain
Ordóñez Celestino, Roca-Pardiñas Javier, Castedo-Dorado Fernando, Rodríguez-Pérez José R.
Human and Ecological Risk Assessment: An International Journal. 2013 19(1). p.254
The relationship between landscape patterns and human-caused fire occurrence in Spain
Costafreda-Aumedes S., Garcia-Martin A., Vega-Garcia C.
Forest Systems. 2013 22(1). p.71
Assessing different measures of fire risk for Cultural World Heritage Sites
Falk Martin Thomas, Hagsten Eva
Heritage Science. 2023 11(1).
Fifty years of wildland fire science in Canada
Coogan Sean C.P., Daniels Lori D., Boychuk Den, Burton Philip J., Flannigan Mike D., Gauthier Sylvie, Kafka Victor, Park Jane S., Wotton B. Mike
Canadian Journal of Forest Research. 2021 51(2). p.283
Habitat suitability for the invasion of Bombus terrestris in East Asian countries: A case study of spatial overlap with local Chinese bumblebees
Naeem Muhammad, Yuan Xiaolong, Huang Jiaxing, An Jiandong
Scientific Reports. 2018 8(1).
An insight into machine-learning algorithms to model human-caused wildfire occurrence
Rodrigues Marcos, de la Riva Juan
Environmental Modelling & Software. 2014 57 p.192
Machine learning based wildfire susceptibility mapping using remotely sensed fire data and GIS: A case study of Adana and Mersin provinces, Turkey
Iban Muzaffer Can, Sekertekin Aliihsan
Ecological Informatics. 2022 69 p.101647
Quantifying economic losses from wildfires in black pine afforestations of northern Spain
Alcasena Fermín J., Salis Michele, Nauslar Nicholas J., Aguinaga A. Eduardo, Vega-García Cristina
Forest Policy and Economics. 2016 73 p.153
Impacts of Changing Forest Management Areas on Forest Landscapes and Habitat Patterns in Northeastern China
Wu Wen, Li Yuehui, Hu Yuanman, Xiu Chunliang, Yan Xiaolu
Sustainability. 2018 10(4). p.1211
Probabilistic modelling of wildfire occurrence based on logistic regression, Niassa Reserve, Mozambique
Nhongo Eufrásio João Sozinho, Fontana Denise Cybis, Guasselli Laurindo Antonio, Bremm Carolina
Geomatics, Natural Hazards and Risk. 2019 10(1). p.1772
Modeling anthropogenic and natural fire ignitions in an inner-alpine valley
Vacchiano Giorgio, Foderi Cristiano, Berretti Roberta, Marchi Enrico, Motta Renzo
Natural Hazards and Earth System Sciences. 2018 18(3). p.935
Predicting burnt areas during the summer season in Portugal by combining wildfire susceptibility and spring meteorological conditions
Bergonse Rafaello, Oliveira Sandra, Gonçalves Ana, Nunes Sílvia, DaCamara Carlos, Zêzere José Luis
Geomatics, Natural Hazards and Risk. 2021 12(1). p.1039
Wildfire ignition in the forests of southeast China: Identifying drivers and spatial distribution to predict wildfire likelihood
Guo Futao, Su Zhangwen, Wang Guangyu, Sun Long, Lin Fangfang, Liu Aiqin
Applied Geography. 2016 66 p.12
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
Human and biophysical factors influencing modern fire disturbance in northern Wisconsin
Sturtevant Brian R., Cleland David T.
International Journal of Wildland Fire. 2007 16(4). p.398
Analyzing the recent dynamics of wildland fires in Quercus suber L. woodlands in Sardinia (Italy), Corsica (France) and Catalonia (Spain)
Salis Michele, Arca Bachisio, Alcasena-Urdiroz Fermin, Massaiu Antonella, Bacciu Valentina, Bosseur Fréderic, Caramelle Philippe, Dettori Sandro, Fernandes de Oliveira Ana Sofia, Molina-Terren Domingo, Pellizzaro Grazia, Santoni Paul-Antoine, Spano Donatella, Vega-Garcia Cristina, Duce Pierpaolo
European Journal of Forest Research. 2019 138(3). p.415
Preceding Fall Drought Conditions and Overwinter Precipitation Effects on Spring Wildland Fire Activity in Canada
Hanes Chelene, Wotton Mike, Woolford Douglas G., Martell David L., Flannigan Mike
Fire. 2020 3(2). p.24
Modeling Agricultural Change through Logistic Regression and Cellular Automata: A Case Study on Shifting Cultivation
Lopez Santiago
Journal of Geographic Information System. 2014 06(03). p.220
Biomass Burning and Its Inter-Relationships with the Climate System (2000)
Larsen Chris
Development of a framework for fire risk assessment using remote sensing and geographic information system technologies
Chuvieco Emilio, Aguado Inmaculada, Yebra Marta, Nieto Héctor, Salas Javier, Martín M. Pilar, Vilar Lara, Martínez Javier, Martín Susana, Ibarra Paloma, de la Riva Juan, Baeza Jaime, Rodríguez Francisco, Molina Juan R., Herrera Miguel A., Zamora Ricardo
Ecological Modelling. 2010 221(1). p.46
Forecast Zoning of Forest Fire Occurrence: A Case Study in Southern China
Jing Xiaodong, Li Xusheng, Zhang Donghui, Liu Wangjia, Zhang Wanchang, Zhang Zhijie
Forests. 2024 15(2). p.265
Using multiscale spatial analysis to assess fire ignition density in Catalonia, Spain
Gonzalez-Olabarria Jose Ramon, Mola-Yudego Blas, Pukkala Timo, Palahi Marc
Annals of Forest Science. 2011 68(4). p.861
What drives forest fire in Fujian, China? Evidence from logistic regression and Random Forests
Guo Futao, Wang Guangyu, Su Zhangwen, Liang Huiling, Wang Wenhui, Lin Fangfang, Liu Aiqin
International Journal of Wildland Fire. 2016 25(5). p.505
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).
Spatiotemporal patterns of burned areas, fire drivers, and fire probability across the equatorial Andes
Zapata-Ríos Xavier, Lopez-Fabara Carmen, Navarrete Abigail, Torres-Paguay Sandra, Flores Miguel
Journal of Mountain Science. 2021 18(4). p.952
Demography and socioeconomic vulnerability influence fire occurrence in Bariloche (Argentina)
Dondo Bühler Mariana, de Torres Curth Mónica, Garibaldi Lucas Alejandro
Landscape and Urban Planning. 2013 110 p.64
Spatial Modelling of Fire Drivers in Urban-Forest Ecosystems in China
Guo Futao, Su Zhangwen, Tigabu Mulualem, Yang Xiajie, Lin Fangfang, Liang Huiling, Wang Guangyu
Forests. 2017 8(6). p.180
Fire and Climatic Change in Temperate Ecosystems of the Western Americas (2003)
Keane Robert E., Finney Mark A.
Assessment of China’s forest fire occurrence with deep learning, geographic information and multisource data
Shao Yakui, Wang Zhichao, Feng Zhongke, Sun Linhao, Yang Xuanhan, Zheng Jun, Ma Tiantian
Journal of Forestry Research. 2023 34(4). p.963
Spatial stratification of wildfire drivers towards enhanced definition of large-fire regime zoning and fire seasons
Rodrigues Marcos, Costafreda-Aumedes Sergi, Comas Carles, Vega-García Cristina
Science of The Total Environment. 2019 689 p.634
Farmland changes and the driving forces in Yucheng, North China Plain
Chen Zhao, Lu Changhe, Fan Lan
Journal of Geographical Sciences. 2012 22(3). p.563
Modeling the Influence of Eucalypt Plantation on Wildfire Occurrence in the Brazilian Savanna Biome
Galizia Luiz Felipe de Castro, Rodrigues Marcos
Forests. 2019 10(10). p.844
Comparing four regression techniques to explore factors governing the number of forest fires in Southeast, China
Cao Qianqian, Zhang Lianjun, Su Zhangwen, Wang Guangyu, Sun Shuaichao, Guo Futao
Geomatics, Natural Hazards and Risk. 2021 12(1). p.499
A Combination of Human Activity and Climate Drives Forest Fire Occurrence in Central Europe: The Case of the Czech Republic
Berčák Roman, Holuša Jaroslav, Trombik Jiří, Resnerová Karolina, Hlásny Tomáš
Fire. 2024 7(4). p.109
Evaluation of the Influence of Local Fuel Homogeneity on Fire Hazard through Landsat-5 TM Texture Measures
Vega-García Cristina, Tatay-Nieto Jaime, Blanco Ricardo, Chuvieco Emilio
Photogrammetric Engineering & Remote Sensing. 2010 76(7). p.853
The Economics of Forest Disturbances (2008)
Prestemon Jeffrey P., Butry David T.
Early Warning Systems for Natural Disaster Reduction (2003)
Buchholz Georg, Goldammer Johann G., Martell David L.
Sustaining cultural tourism through higher female participation in Nigeria: The role of corporate social responsibility in oil host communities
Uduji Joseph I., Okolo‐Obasi Elda N., Asongu Simplice A.
International Journal of Tourism Research. 2020 22(1). p.120
Historic distribution and driving factors of human-caused fires in the Chinese boreal forest between 1972 and 2005
Guo Futao, Innes John L., Wang Guangyu, Ma Xiangqing, Sun Long, Hu Haiqing, Su Zhangwen
Journal of Plant Ecology. 2015 8(5). p.480
Human-caused fire occurrence modelling in perspective: a review
Costafreda-Aumedes Sergi, Comas Carles, Vega-Garcia Cristina
International Journal of Wildland Fire. 2017 26(12). p.983
Modeling human-caused forest fire ignition for assessing forest fire danger in Austria
Arndt N, Vacik H, Koch V, Arpaci A, Gossow H
iForest - Biogeosciences and Forestry. 2013 6(6). p.315
Applying Local Measures of Spatial Heterogeneity to Landsat-TM Images for Predicting Wildfire Occurrence in Mediterranean Landscapes
Vega-García Cristina, Chuvieco Emilio
Landscape Ecology. 2006 21(4). p.595
Complementing daily fire-danger assessment using a novel metric based on burnt area ranking
Pezzatti Gianni Boris, De Angelis Antonella, Bekar İsmail, Ricotta Carlo, Bajocco Sofia, Conedera Marco
Agricultural and Forest Meteorology. 2020 295 p.108172
Simulation of potential habitat overlap between red deer (Cervus elaphus) and roe deer (Capreolus capreolus) in northeastern China
Wu Wen, Li Yuehui, Hu Yuanman
PeerJ. 2016 4 p.e1756
Linking People, Place, and Policy (2002)
Thompson D. Michael, Serneels Suzanne, Lambin Eric F.
Predicting fire occurrence patterns with logistic regression in Heilongjiang Province, China
Chang Yu, Zhu Zhiliang, Bu Rencang, Chen Hongwei, Feng Yuting, Li Yuehui, Hu Yuanman, Wang Zhicheng
Landscape Ecology. 2013 28(10). p.1989
Do Factors Causing Wildfires Vary in Space? Evidence from Geographically Weighted Regression
Koutsias Nikos, Martínez-Fernández Jesús, Allgöwer Britta
GIScience & Remote Sensing. 2010 47(2). p.221
The Impact of Precipitation Regimes on Forest Fires in Yunnan Province, Southwest China
Chen Feng, Niu Shukui, Tong Xiaojuan, Zhao Jinlong, Sun Yu, He Tengfei
The Scientific World Journal. 2014 2014 p.1
Empirical models of forest fire initial attack success probabilities: the effects of fuels, anthropogenic linear features, fire weather, and management
Arienti M Cecilia, Cumming Steven G, Boutin Stan
Canadian Journal of Forest Research. 2006 36(12). p.3155
Geo-Informatics in Resource Management and Sustainable Ecosystem (2013)
Deng Ou, Su GuoFeng, Huang QuanYi, Li YiQiu
Fire Risk Assessment Using Neural Network and Logistic Regression
Jafari Goldarag Y., Mohammadzadeh Ali, Ardakani A. S.
Journal of the Indian Society of Remote Sensing. 2016 44(6). p.885
Automated prediction of extreme fire weather from synoptic patterns in northern Alberta, Canada
Lagerquist Ryan, Flannigan Mike D., Wang Xianli, Marshall Ginny A.
Canadian Journal of Forest Research. 2017 47(9). p.1175
Fine fuel moisture for site- and species-specific fire danger assessment in comparison to fire danger indices
Schunk Christian, Wastl Clemens, Leuchner Michael, Menzel Annette
Agricultural and Forest Meteorology. 2017 234-235 p.31
Interpreting and using outputs from the Canadian Forest Fire Danger Rating System in research applications
Wotton B. Mike
Environmental and Ecological Statistics. 2009 16(2). p.107
Ignition of Forest Fires by Cigarette Butts: Using Pinus massoniana Needles as an Example
Zhang Yunlin, Tian Lingling
Fire. 2024 7(3). p.65
Understanding fire drivers and relative impacts in different Chinese forest ecosystems
Guo Futao, Su Zhangwen, Wang Guangyu, Sun Long, Tigabu Mulualem, Yang Xiajie, Hu Haiqing
Science of The Total Environment. 2017 605-606 p.411
Integrating burned area as a complementary performance measure for daily fire danger assessment: A large-scale test
Bekar İsmail, Pezzatti G. Boris, Conedera Marco, Vacik Harald, Pausas Juli G., Dupire Sylvain, Bugmann Harald
Agricultural and Forest Meteorology. 2023 342 p.109746
Identifying dynamics of fire ignition probabilities in two representative Mediterranean wildland-urban interface areas
Badia Anna, Serra Pere, Modugno Sirio
Applied Geography. 2011 31(3). p.930
Using model-based geostatistics to predict lightning-caused wildfires
Ordóñez C., Saavedra A., Rodríguez-Pérez J.R., Castedo-Dorado F., Covián E.
Environmental Modelling & Software. 2012 29(1). p.44
Spatiotemporal Analysis of Active Fires in the Arctic Region during 2001–2019 and a Fire Risk Assessment Model
Zhang Zhen, Wang Leilei, Xue Naiting, Du Zhiheng
Fire. 2021 4(3). p.57
Comparing machine learning algorithms to predict vegetation fire detections in Pakistan
Shahzad Fahad, Mehmood Kaleem, Hussain Khadim, Haidar Ijlal, Anees Shoaib Ahmad, Muhammad Sultan, Ali Jamshid, Adnan Muhammad, Wang Zhichao, Feng Zhongke
Fire Ecology. 2024 20(1).
Multitemporal Modelling of Socio-Economic Wildfire Drivers in Central Spain between the 1980s and the 2000s: Comparing Generalized Linear Models to Machine Learning Algorithms
Vilar Lara, Gómez Israel, Martínez-Vega Javier, Echavarría Pilar, Riaño David, Martín M. Pilar, Vadrevu Krishna Prasad
PLOS ONE. 2016 11(8). p.e0161344
Modeling Anthropogenic Fire Occurrence in the Boreal Forest of China Using Logistic Regression and Random Forests
Guo Futao, Zhang Lianjun, Jin Sen, Tigabu Mulualem, Su Zhangwen, Wang Wenhui
Forests. 2016 7(11). p.250
Potential climate change impacts on fire intensity and key wildfire suppression thresholds in Canada
Wotton B M, Flannigan M D, Marshall G A
Environmental Research Letters. 2017 12(9). p.095003
Forest Fire Spread Monitoring and Vegetation Dynamics Detection Based on Multi-Source Remote Sensing Images
Tian Yuping, Wu Zechuan, Li Mingze, Wang Bin, Zhang Xiaodi
Remote Sensing. 2022 14(18). p.4431
Forecasting Crop Residue Fires in Northeastern China Using Machine Learning
Bai Bing, Zhao Hongmei, Zhang Sumei, Li Xiaolan, Zhang Xuelei, Xiu Aijun
Atmosphere. 2022 13(10). p.1616
Impact of drought on wildland fires in Greece: implications of climatic change?
Dimitrakopoulos Alexandros P., Vlahou M., Anagnostopoulou Ch. G., Mitsopoulos I. D.
Climatic Change. 2011 109(3-4). p.331
Quantifying the human influence on fire ignition across the westernUSA
Fusco Emily J., Abatzoglou John T., Balch Jennifer K., Finn John T., Bradley Bethany A.
Ecological Applications. 2016 26(8). p.2390
Comparing calibrated statistical and machine learning methods for wildland fire occurrence prediction: a case study of human-caused fires in Lac La Biche, Alberta, Canada
Phelps Nathan, Woolford Douglas G.
International Journal of Wildland Fire. 2021 30(11). p.850
Using GIS spatial analysis and logistic regression to predict the probabilities of human-caused grassland fires
Zhang Z.X., Zhang H.Y., Zhou D.W.
Journal of Arid Environments. 2010 74(3). p.386
A Review of the Main Driving Factors of Forest Fire Ignition Over Europe
Ganteaume Anne, Camia Andrea, Jappiot Marielle, San-Miguel-Ayanz Jesus, Long-Fournel Marlène, Lampin Corinne
Environmental Management. 2013 51(3). p.651
Prediction of forest fires occurrences with area-level Poisson mixed models
Boubeta Miguel, Lombardía María José, Marey-Pérez Manuel Francisco, Morales Domingo
Journal of Environmental Management. 2015 154 p.151
Forest fire risk assessment using point process modelling of fire occurrence and Monte Carlo fire simulation
Woo Hyeyoung, Chung Woodam, Graham Jonathan M., Lee Byungdoo
International Journal of Wildland Fire. 2017 26(9). p.789
Machine Learning Techniques for Fine Dead Fuel Load Estimation Using Multi-Source Remote Sensing Data
D’Este Marina, Elia Mario, Giannico Vincenzo, Spano Giuseppina, Lafortezza Raffaele, Sanesi Giovanni
Remote Sensing. 2021 13(9). p.1658
Modeling the spatial variation of the explanatory factors of human-caused wildfires in Spain using geographically weighted logistic regression
Rodrigues M., de la Riva J., Fotheringham S.
Applied Geography. 2014 48 p.52
Spatial-statistical analysis of factors determining forest fires: a case study from Golestan, Northeast Iran
Abdi Omid, Kamkar Behnam, Shirvani Zeinab, Teixeira da Silva Jaime A., Buchroithner Manfred F.
Geomatics, Natural Hazards and Risk. 2018 9(1). p.267
The Human and Physical Determinants of Wildfires and Burnt Areas in Israel
Levin Noam, Tessler Naama, Smith Andrew, McAlpine Clive
Environmental Management. 2016 58(3). p.549
Analysis of lightning-induced forest fires in Austria
Müller Mortimer M., Vacik Harald, Diendorfer Gerhard, Arpaci Alexander, Formayer Herbert, Gossow Hartmut
Theoretical and Applied Climatology. 2013 111(1-2). p.183
Assessing long‐term fire risk at local scale by means of decision tree technique
Amatulli Giuseppe, Rodrigues Maria João, Trombetti Marco, Lovreglio Raffaella
Journal of Geophysical Research: Biogeosciences. 2006 111(G4).
Exploring the Dynamic Mechanisms of Farmland Abandonment Based on a Spatially Explicit Economic Model for Environmental Sustainability: A Case Study in Jiangxi Province, China
Xie Hualin, Wang Peng, Yao Guanrong
Sustainability. 2014 6(3). p.1260
Forecasting the outbreak of moorland wildfires in the English Peak District
Albertson Kevin, Aylen Jonathan, Cavan Gina, McMorrow Julia
Journal of Environmental Management. 2009 90(8). p.2642
Effect of fire prevention programs on accidental and incendiary wildfires on tribal lands in the United States
Abt Karen L., Butry David T., Prestemon Jeffrey P., Scranton Samuel
International Journal of Wildland Fire. 2015 24(6). p.749
A GIS based method for indexing the broad-leaved forest surfaces by their wildfire ignition probability and wildfire spreading capacity
Hysa Artan, Başkaya Fatma Ayçim Türer
Modeling Earth Systems and Environment. 2019 5(1). p.71
Geospatial information on geographical and human factors improved anthropogenic fire occurrence modeling in the Chinese boreal forest
Guo Futao, Selvalakshmi Selvaraj, Lin Fangfang, Wang Guangyu, Wang Wenhui, Su Zhangwen, Liu Aiqin
Canadian Journal of Forest Research. 2016 46(4). p.582
Identifying Forest Fire Driving Factors and Related Impacts in China Using Random Forest Algorithm
Ma Wenyuan, Feng Zhongke, Cheng Zhuxin, Chen Shilin, Wang Fengge
Forests. 2020 11(5). p.507
The Economics of Forest Disturbances (2008)
Butry David T., Gumpertz Marcia, Genton Marc G.
A geographical similarity-based sampling method of non-fire point data for spatial prediction of forest fires
Xu Quanli, Li Wenhui, Liu Jing, Wang Xiao
Forest Ecosystems. 2023 10 p.100104
ENVIRONMENTAL AND SOCIAL FACTORS INFLUENCING WILDFIRES IN THE UPPER MIDWEST, UNITED STATES
Cardille Jeffrey A., Ventura Stephen J., Turner Monica G.
Ecological Applications. 2001 11(1). p.111
ENVIRONMENTAL AND HUMAN FACTORS INFLUENCING FIRE TRENDS IN ENSO AND NON-ENSO YEARS IN TROPICAL MEXICO
Román-Cuesta Rosa Maria, Gracia Marc, Retana Javier
Ecological Applications. 2003 13(4). p.1177
A study on the effects of unbalanced data when fitting logistic regression models in ecology
Salas-Eljatib Christian, Fuentes-Ramirez Andres, Gregoire Timothy G., Altamirano Adison, Yaitul Valeska
Ecological Indicators. 2018 85 p.502
A novel framework for identifying causes of forest fire events using environmental and temporal characteristics of the ignition point in fire footprint
Su Huiyi, Wang Xinyu, Chen Wei, Ding Ning, Cui Xiaolei, Bai Mengqi, Chen Zhili, Li Mingshi
Ecological Indicators. 2024 160 p.111899
Forest fire risk zone mapping from satellite images and GIS for Baihe Forestry Bureau, Jilin, China
Dong Xu, Li-min Dai, Guo-fan Shao, Lei Tang, Hui Wang
Journal of Forestry Research. 2005 16(3). p.169
System Analysis and Optimization of Human-Actuated Dynamical Systems
2018 Annual American Control Conference (ACC) (2018)
Bae Sangjae, Han Sang Min, Moura Scott
Human-caused wildfire risk rating for prevention planning in Spain
Martínez Jesús, Vega-Garcia Cristina, Chuvieco Emilio
Journal of Environmental Management. 2009 90(2). p.1241
Influence of Fuel Moisture Content, Packing Ratio and Wind Velocity on the Ignition Probability of Fuel Beds Composed of Mongolian Oak Leaves via Cigarette Butts
Sun Ping, Zhang Yunlin, Sun Long, Hu Haiqing, Guo Futao, Wang Guangyu, Zhang Heng
Forests. 2018 9(9). p.507
Comparing production function models for wildfire risk analysis in the wildland–urban interface
Mercer D. Evan, Prestemon Jeffrey P.
Forest Policy and Economics. 2005 7(5). p.782
Mapping forest fire risk zones with spatial data and principal component analysis
Xu Dong, Shao Guofan, Dai Limin, Hao Zhanqing, Tang Lei, Wang Hui
Science in China Series E: Technological Sciences. 2006 49(S1). p.140
Proximate causes of land-use change in Narok District, Kenya: a spatial statistical model
Serneels Suzanne, Lambin Eric F
Agriculture, Ecosystems & Environment. 2001 85(1-3). p.65
Simulation of forest fire spread based on artificial intelligence
Wu Zechuan, Wang Bin, Li Mingze, Tian Yuping, Quan Ying, Liu Jianyang
Ecological Indicators. 2022 136 p.108653
Spatial Distribution of Forest Fires and Controlling Factors in Andhra Pradesh, India Using Spot Satellite Datasets
Vadrevu Krishna P, Eaturu Anuradha, Badarinath K. V. S.
Environmental Monitoring and Assessment. 2006 123(1-3). p.75
Assessment of several spectral indices derived from multi-temporal Landsat data for fire occurrence probability modelling
Lozano F. Javier, Suárez-Seoane Susana, de Luis Estanislao
Remote Sensing of Environment. 2007 107(4). p.533
Neural network and GA approaches for dwelling fire occurrence prediction
Yang L., Dawson C.W., Brown M.R., Gell M.
Knowledge-Based Systems. 2006 19(4). p.213
Time to Burn: Modeling Wildland Arson as an Autoregressive Crime Function
Prestemon Jeffrey P., Butry David T.
American Journal of Agricultural Economics. 2005 87(3). p.756
Implications of changing climate for global wildland fire
Flannigan Mike D., Krawchuk Meg A., de Groot William J., Wotton B. Mike, Gowman Lynn M.
International Journal of Wildland Fire. 2009 18(5). p.483
Emergency logistics for wildfire suppression based on forecasted disaster evolution
Yang Zhongzhen, Guo Liquan, Yang Zaili
Annals of Operations Research. 2019 283(1-2). p.917
Influences of forest roads on the spatial patterns of human- and lightning-caused wildfire ignitions
Narayanaraj Ganapathy, Wimberly Michael C.
Applied Geography. 2012 32(2). p.878
Pastoral wildfires in the Mediterranean: Understanding their linkages to land cover patterns in managed landscapes
Ruiz-Mirazo Jabier, Martínez-Fernández Jesús, Vega-García Cristina
Journal of Environmental Management. 2012 98 p.43
A Probabilistic Method Predicting Forest Fire Occurrence Combining Firebrands and the Weather-Fuel Complex in the Northern Part of the Daxinganling Region, China
Sun Ping, Zhang Yunlin
Forests. 2018 9(7). p.428
Using GIS and Random Forests to identify fire drivers in a forest city, Yichun, China
Su Zhangwen, Hu Haiqing, Wang Guangyu, Ma Yuanfan, Yang Xiajie, Guo Futao
Geomatics, Natural Hazards and Risk. 2018 9(1). p.1207
Spotting ignition of larch (Larix gmelinii) fuel bed by different firebrands
Yang Guang, Ning Jibin, Shu Lifu, Zhang Jili, Yu Hongzhou, Di Xueying
Journal of Forestry Research. 2022 33(1). p.171
Fire Occurrence Probability Mapping of Northeast China With Binary Logistic Regression Model
Zhang Haijun, Han Xiaoyong, Dai Sha
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2013 6(1). p.121
Fire, Climate Change, and Carbon Cycling in the Boreal Forest (2000)
Anderson Kerry, Martell David L., Flannigan Michael D., Wang Dongmei
Estimating the spatial pattern of human-caused forest fires using a generalized linear mixed model with spatial autocorrelation in South Korea
Kwak Hanbin, Lee Woo-Kyun, Saborowski Joachim, Lee Si-Young, Won Myoung-Soo, Koo Kyo-Sang, Lee Myung-Bo, Kim Su-Na
International Journal of Geographical Information Science. 2012 26(9). p.1589
Modelling long-term fire occurrence factors in Spain by accounting for local variations with geographically weighted regression
Martínez-Fernández J., Chuvieco E., Koutsias N.
Natural Hazards and Earth System Sciences. 2013 13(2). p.311
Land use and vegetation fires in Jambi Province, Sumatra, Indonesia
Stolle F., Chomitz K.M., Lambin E.F., Tomich T.P.
Forest Ecology and Management. 2003 179(1-3). p.277
Exploring the factors influencing ecological land change for China's Beijing–Tianjin–Hebei Region using big data
Xie Hualin, He Yafen, Xie Xue
Journal of Cleaner Production. 2017 142 p.677
Road network density correlated with increased lightning fire incidence in the Canadian western boreal forest
Arienti M. Cecilia, Cumming Steven G., Krawchuk Meg A., Boutin Stan
International Journal of Wildland Fire. 2009 18(8). p.970
Logistic regression models for human-caused wildfire risk estimation: analysing the effect of the spatial accuracy in fire occurrence data
Vilar del Hoyo Lara, Martín Isabel M. Pilar, Martínez Vega F. Javier
European Journal of Forest Research. 2011 130(6). p.983
A comprehensive spatial-temporal analysis of driving factors of human-caused wildfires in Spain using Geographically Weighted Logistic Regression
Rodrigues Marcos, Jiménez-Ruano Adrián, Peña-Angulo Dhais, de la Riva Juan
Journal of Environmental Management. 2018 225 p.177
Forest fire occurrence modeling in Southwest Turkey using MaxEnt machine learning technique
Göltas M, Ayberk H, Kücük O
iForest - Biogeosciences and Forestry. 2024 17(1). p.10
Forest fire occurrence and climate change in Canada
Wotton B. M., Nock C. A., Flannigan M. D.
International Journal of Wildland Fire. 2010 19(3). p.253
Multi‐temporal Mapping of Burned Forest over Canada Using Satellite‐based Change Metrics
Fraser R. H., Fernandes R., Latifovic R.
Geocarto International. 2003 18(2). p.37
Guidelines for effective evaluation and comparison of wildland fire occurrence prediction models
Phelps Nathan, Woolford Douglas G.
International Journal of Wildland Fire. 2021 30(4). p.225
Developing Models to Predict the Number of Fire Hotspots from an Accumulated Fuel Dryness Index by Vegetation Type and Region in Mexico
Vega-Nieva D., Briseño-Reyes J., Nava-Miranda M., Calleros-Flores E., López-Serrano P., Corral-Rivas J., Montiel-Antuna E., Cruz-López M., Cuahutle M., Ressl R., Alvarado-Celestino E., González-Cabán A., Jiménez E., Álvarez-González J., Ruiz-González A., Burgan R., Preisler H.
Forests. 2018 9(4). p.190
Modeling the spatial pattern of farmland using GIS and multiple logistic regression: a case study of Maotiao River Basin, Guizhou Province, China
Huang Qiu-Hao, Cai Yun-Long, Peng Jian
Environmental Modeling & Assessment. 2007 12(1). p.55
GIS analysis of spatial and temporal patterns of human-caused wildfires in the temperate rain forest of Vancouver Island, Canada
Pew K.L, Larsen C.P.S
Forest Ecology and Management. 2001 140(1). p.1
Predicting the number of daily human-caused bushfires to assist suppression planning in south-west Western Australia
Plucinski M. P., McCaw W. L., Gould J. S., Wotton B. M.
International Journal of Wildland Fire. 2014 23(4). p.520
Modelling the Meteorological Forest Fire Niche in Heterogeneous Pyrologic Conditions
De Angelis Antonella, Ricotta Carlo, Conedera Marco, Pezzatti Gianni Boris, Jones Julia A.
PLOS ONE. 2015 10(2). p.e0116875
Indexing the vegetated surfaces within WUI by their wildfire ignition and spreading capacity, a comparative case from developing metropolitan areas
Hysa Artan
International Journal of Disaster Risk Reduction. 2021 63 p.102434
Modelling temporal variation of fire-occurrence towards the dynamic prediction of human wildfire ignition danger in northeast Spain
Martín Yago, Zúñiga-Antón María, Rodrigues Mimbrero Marcos
Geomatics, Natural Hazards and Risk. 2019 10(1). p.385
Stand-specific litter moisture content calibrations for the Canadian Fine Fuel Moisture Code
Wotton B. Mike, Beverly Jennifer L.
International Journal of Wildland Fire. 2007 16(4). p.463
Wildland fire risk research in Canada
Johnston Lynn M., Wang Xianli, Erni Sandy, Taylor Stephen W., McFayden Colin B., Oliver Jacqueline A., Stockdale Chris, Christianson Amy, Boulanger Yan, Gauthier Sylvie, Arseneault Dominique, Wotton B. Mike, Parisien Marc-André, Flannigan Mike D.
Environmental Reviews. 2020 28(2). p.164
The development and implementation of a human-caused wildland fire occurrence prediction system for the province of Ontario, Canada
Woolford Douglas G., Martell David L., McFayden Colin B., Evens Jordan, Stacey Aaron, Wotton B. Michael, Boychuk Dennis
Canadian Journal of Forest Research. 2021 51(2). p.303
Modeling wildfire drivers in Chinese tropical forest ecosystems using global logistic regression and geographically weighted logistic regression
Su Zhangwen, Zheng Lujia, Luo Sisheng, Tigabu Mulualem, Guo Futao
Natural Hazards. 2021 108(1). p.1317
Science, technology, and human factors in fire danger rating: the Canadian experience.
Taylor Stephen W., Alexander Martin E.
International Journal of Wildland Fire. 2006 15(1). p.121
Urban-Rural Interfaces (2012)
Mercer D. Evan, Zipperer Wayne
Integration of Lightning- and Human-Caused Wildfire Occurrence Models
Vilar L., Nieto H., Martín M. P.
Human and Ecological Risk Assessment: An International Journal. 2010 16(2). p.340
Advances in Earth Observation of Global Change (2010)
Chuvieco Emilio, Justice Chris
Predicting the regime shift of coastal wetlands based on the bistability features in the intertidal zone: A case study in the Liaohe estuary
Jia Xin, Yang Juan, Wang Chen, Liu Baolin, Zheng HouYi, Zou Yu, Wang Heng, Zhao Huan
Frontiers in Marine Science. 2023 10
Integration of socio-economic and environmental variables for modelling long-term fire danger in Southern Europe
Sebastián-López Ana, Salvador-Civil Raymond, Gonzalo-Jiménez Julián, SanMiguel-Ayanz Jesús
European Journal of Forest Research. 2008 127(2). p.149
A model for predicting human-caused wildfire occurrence in the region of Madrid, Spain
Vilar Lara, Woolford Douglas. G., Martell David L., Martín M. Pilar
International Journal of Wildland Fire. 2010 19(3). p.325
Improvement of fire danger modelling with geographically weighted logistic model
Zhang Haijun, Qi Pengcheng, Guo Guangmeng
International Journal of Wildland Fire. 2014 23(8). p.1130
Daily prediction modeling of forest fire ignition using meteorological drought indices in the Mexican highlands
Vilchis-Francés AY, Díaz-Delgado C, Becerril Piña R, Mastachi Loza CA, Gómez-Albores M, Bâ KM
iForest - Biogeosciences and Forestry. 2021 14(5). p.437

Committee on Publication Ethics


Abstract Export Citation Get Permission