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том 16 издание 8 страницы 3601-3685

State of Wildfires 2023–2024

M W Jones 1
Douglas I. Kelley 2
Chantelle Burton 3
F. Di Giuseppe 4
Maria Lucia Ferreira Barbosa 5, 6
Esther Brambleby 1
A. Hartley 3
Anna Lombardi 7
Guilherme A. V. Mataveli 1, 8
Joe McNorton 4
Fiona R. Spuler 9
Jakob Benjamin Wessel 10, 11
Niels Andela 14
Sally Archibald 15
Emilio Chuvieco 18
Hamish Clarke 19
Stefan H. Doerr 20
Paulo M Fernandes 21
Louis Giglio 22
Douglas S. Hamilton 23
Stijn Hantson 24
Sarah Harris 25
Piyush Jain 26
Crystal A. Kolden 27
Tiina Kurvits 28
Seppe Lampe* 29
Sarah Meier 30
Stacey L. New 3
Morgane M. G. Perron 32
Yuquan Qu 33, 34
Yuquan Qu 33, 34
Natasha S Ribeiro 35
Bambang H. Saharjo 36
Jesús San-Miguel-Ayanz 37
Jacquelyn K. Shuman 38
Veerachai Tanpipat 39
G. R. van der Werf 40
Sander Veraverbeke 1, 33
Gavriil Xanthopoulos 41
13
 
Cemaden/MCTI, Estrada Doutor Altino Bondensan, 500 – Distrito de Eugênio de Melo, São José dos Campos – São Paulo, Brazil
14
 
BeZero Carbon, 25 Christopher Street, London, EC2A 2BS, UK
25
 
Fire Risk, Research and Community Preparedness, Country Fire Authority, Burwood East, Victoria, Australia
28
 
GRID-Arendal, P.O. Box 183, 4802, Arendal, Norway
31
 
Atmospheric Composition Section, Research Department, European Centre for Medium-range Weather Forecasts, Robert-Schuman-Platz 3, 53175 Bonn, Germany
37
 
European Commission Joint Research Centre, European Commission, Rue du Champ de Mars 21, 1050 Brussels, Belgium
39
 
Upper ASEAN Wildland Fire Special Research Unit, Kasetsart University, 50 Ngamwongwan Rd, Lat Yao, Chatuchak, Bangkok 10900, Thailand
41
 
Forest Fire Laboratory, Institute of Mediterranean Forest Ecosystems, Hellenic Agricultural Organization (DIMITRA), Terma Alkmanos, Ilisia, 11528, Athens, Greece
Тип публикацииJournal Article
Дата публикации2024-08-14
scimago Q1
wos Q1
БС1
SJR4.066
CiteScore20.6
Impact factor11.6
ISSN18663508, 18663516
Краткое описание

Abstract. Climate change contributes to the increased frequency and intensity of wildfires globally, with significant impacts on society and the environment. However, our understanding of the global distribution of extreme fires remains skewed, primarily influenced by media coverage and regionalised research efforts. This inaugural State of Wildfires report systematically analyses fire activity worldwide, identifying extreme events from the March 2023–February 2024 fire season. We assess the causes, predictability, and attribution of these events to climate change and land use and forecast future risks under different climate scenarios. During the 2023–2024 fire season, 3.9×106 km2 burned globally, slightly below the average of previous seasons, but fire carbon (C) emissions were 16 % above average, totalling 2.4 Pg C. Global fire C emissions were increased by record emissions in Canadian boreal forests (over 9 times the average) and reduced by low emissions from African savannahs. Notable events included record-breaking fire extent and emissions in Canada, the largest recorded wildfire in the European Union (Greece), drought-driven fires in western Amazonia and northern parts of South America, and deadly fires in Hawaii (100 deaths) and Chile (131 deaths). Over 232 000 people were evacuated in Canada alone, highlighting the severity of human impact. Our analyses revealed that multiple drivers were needed to cause areas of extreme fire activity. In Canada and Greece, a combination of high fire weather and an abundance of dry fuels increased the probability of fires, whereas burned area anomalies were weaker in regions with lower fuel loads and higher direct suppression, particularly in Canada. Fire weather prediction in Canada showed a mild anomalous signal 1 to 2 months in advance, whereas events in Greece and Amazonia had shorter predictability horizons. Attribution analyses indicated that modelled anomalies in burned area were up to 40 %, 18 %, and 50 % higher due to climate change in Canada, Greece, and western Amazonia during the 2023–2024 fire season, respectively. Meanwhile, the probability of extreme fire seasons of these magnitudes has increased significantly due to anthropogenic climate change, with a 2.9–3.6-fold increase in likelihood of high fire weather in Canada and a 20.0–28.5-fold increase in Amazonia. By the end of the century, events of similar magnitude to 2023 in Canada are projected to occur 6.3–10.8 times more frequently under a medium–high emission scenario (SSP370). This report represents our first annual effort to catalogue extreme wildfire events, explain their occurrence, and predict future risks. By consolidating state-of-the-art wildfire science and delivering key insights relevant to policymakers, disaster management services, firefighting agencies, and land managers, we aim to enhance society's resilience to wildfires and promote advances in preparedness, mitigation, and adaptation. New datasets presented in this work are available from https://doi.org/10.5281/zenodo.11400539 (Jones et al., 2024) and https://doi.org/10.5281/zenodo.11420742 (Kelley et al., 2024a).

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ГОСТ |
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Jones M. W. et al. State of Wildfires 2023–2024 // Earth System Science Data. 2024. Vol. 16. No. 8. pp. 3601-3685.
ГОСТ со всеми авторами (до 50) Скопировать
Jones M. W. et al. State of Wildfires 2023–2024 // Earth System Science Data. 2024. Vol. 16. No. 8. pp. 3601-3685.
RIS |
Цитировать
TY - JOUR
DO - 10.5194/essd-16-3601-2024
UR - https://essd.copernicus.org/articles/16/3601/2024/
TI - State of Wildfires 2023–2024
T2 - Earth System Science Data
AU - Jones, M W
AU - Kelley, Douglas I.
AU - Burton, Chantelle
AU - Di Giuseppe, F.
AU - Ferreira Barbosa, Maria Lucia
AU - Brambleby, Esther
AU - Hartley, A.
AU - Lombardi, Anna
AU - Mataveli, Guilherme A. V.
AU - McNorton, Joe
AU - Spuler, Fiona R.
AU - Wessel, Jakob Benjamin
AU - Abatzoglou, John T.
AU - Anderson, Liana O.
AU - Andela, Niels
AU - Archibald, Sally
AU - Armenteras, Dolors
AU - Burke, Eleanor J.
AU - Carmenta, Rachel
AU - Chuvieco, Emilio
AU - Clarke, Hamish
AU - Doerr, Stefan H.
AU - Fernandes, Paulo M
AU - Giglio, Louis
AU - Hamilton, Douglas S.
AU - Hantson, Stijn
AU - Harris, Sarah
AU - Jain, Piyush
AU - Kolden, Crystal A.
AU - Kurvits, Tiina
AU - Lampe*, Seppe
AU - Meier, Sarah
AU - New, Stacey L.
AU - Parrington, Mark
AU - Perron, Morgane M. G.
AU - Qu, Yuquan
AU - Qu, Yuquan
AU - Ribeiro, Natasha S
AU - Saharjo, Bambang H.
AU - San-Miguel-Ayanz, Jesús
AU - Shuman, Jacquelyn K.
AU - Tanpipat, Veerachai
AU - van der Werf, G. R.
AU - Veraverbeke, Sander
AU - Xanthopoulos, Gavriil
PY - 2024
DA - 2024/08/14
PB - Copernicus
SP - 3601-3685
IS - 8
VL - 16
SN - 1866-3508
SN - 1866-3516
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2024_Jones,
author = {M W Jones and Douglas I. Kelley and Chantelle Burton and F. Di Giuseppe and Maria Lucia Ferreira Barbosa and Esther Brambleby and A. Hartley and Anna Lombardi and Guilherme A. V. Mataveli and Joe McNorton and Fiona R. Spuler and Jakob Benjamin Wessel and John T. Abatzoglou and Liana O. Anderson and Niels Andela and Sally Archibald and Dolors Armenteras and Eleanor J. Burke and Rachel Carmenta and Emilio Chuvieco and Hamish Clarke and Stefan H. Doerr and Paulo M Fernandes and Louis Giglio and Douglas S. Hamilton and Stijn Hantson and Sarah Harris and Piyush Jain and Crystal A. Kolden and Tiina Kurvits and Seppe Lampe* and Sarah Meier and Stacey L. New and Mark Parrington and Morgane M. G. Perron and Yuquan Qu and Yuquan Qu and Natasha S Ribeiro and Bambang H. Saharjo and Jesús San-Miguel-Ayanz and Jacquelyn K. Shuman and Veerachai Tanpipat and G. R. van der Werf and Sander Veraverbeke and Gavriil Xanthopoulos and others},
title = {State of Wildfires 2023–2024},
journal = {Earth System Science Data},
year = {2024},
volume = {16},
publisher = {Copernicus},
month = {aug},
url = {https://essd.copernicus.org/articles/16/3601/2024/},
number = {8},
pages = {3601--3685},
doi = {10.5194/essd-16-3601-2024}
}
MLA
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Jones, Matthew W., et al. “State of Wildfires 2023–2024.” Earth System Science Data, vol. 16, no. 8, Aug. 2024, pp. 3601-3685. https://essd.copernicus.org/articles/16/3601/2024/.