Modeling fuel moisture dynamics under climate change in Spain's forests

被引:3
作者
Balaguer-Romano, Rodrigo [1 ]
Diaz-Sierra, Ruben [1 ]
De Caceres, Miquel [2 ]
Voltas, Jordi [3 ,4 ]
Boer, Matthias M. [5 ]
Resco de Dios, Victor [3 ,4 ,6 ]
机构
[1] Natl Distance Educ Univ UNED, Fac Sci, Math & Fluid Phys Dept, Madrid 28040, Spain
[2] Ecol & Forestry Applicat Res Ctr CREAF, Barcelona 08193, Spain
[3] Joint Res Unit CTFC AGROTECNIO CERCA, Lleida 25198, Spain
[4] Lleida Univ, Dept Crop & Forest Sci, Lleida 25198, Spain
[5] Western Sydney Univ, Hawkesbury Inst Environm, Penrith 2751, Australia
[6] Southwest Univ Sci & Technol, Sch Life Sci & Engn, Mianyang 621010, Peoples R China
关键词
Climate change; Drought; Fuel moisture; Plant hydraulics; Mediterranean; CHANGE IMPACTS; WILDFIRE RISK; DROUGHT; INVENTORY; RESPONSES; SCALES;
D O I
10.1186/s42408-023-00224-0
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
BackgroundCurrent assessments of the effects of climate change on future wildfire risk are based on either empirical approaches or fire weather indices. No study has yet used process-based models over national scales to understand how and where will increases in climate aridity affect the likelihood of fire activity through changes in the moisture content of live (LFMC) and of dead (DFMC) fuels. Here, we used process-based models to forecast changes in LFMC and DFMC under the 21st century climatic conditions projected from moderate and high greenhouse gas emission scenarios (RCP4.5 and RCP8.5). Predictions were performed across broad productivity gradients in peninsular Spain to understand how productivity mediates the effects of climate change on fuel moisture dynamics.ResultsLFMC and DFMC were predicted to decline under the climatic conditions projected for the coming decades. Increases in the annual frequency of days with fuel moisture content below wildfire occurrence thresholds were predicted to extend fire season lengths by 20 days under RCP4.5 and by 50 days under RCP8.5. The effects of climate change on LFMC and DFMC varied linearly and negatively with productivity (stronger fuel moisture decreases in least productive environments). Although we observed a significant mitigation effect from rising CO2 (via increases in water-use efficiency), it was not enough to offset LFMC declining trends induced by increased temperature and aridity.ConclusionsWe predicted that the warmer and more arid climatic conditions projected for the 21st century will lead to generalized declines in fuel moisture, lengthening fire seasons, and increasing wildfire danger. The use of process-based models to forecast LFMC dynamics allowed the consideration of plant species capabilities to buffer climate change impacts. Significant increases in the fire season length predicted in the most productive environments, currently with large fire return intervals, would pose an increase of fire danger in major Spanish carbon sinks. Finally, the CO2 mitigation effect would not be enough to offset climate change-driven declines in seasonal LFMC levels.
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页数:15
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共 66 条
  • [1] Global Emergence of Anthropogenic Climate Change in Fire Weather Indices
    Abatzoglou, John T.
    Williams, A. Park
    Barbero, Renaud
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (01) : 326 - 336
  • [2] The Spanish National Forest Inventory, a tool for the knowledge, management and conservation of forest ecosystems
    Alberdi, I.
    Sandoval, V.
    Condes, S.
    Canellas, I.
    Vallejo, R.
    [J]. ECOSISTEMAS, 2016, 25 (03): : 88 - 97
  • [3] Assessing Climate Change Impacts on Wildfire Risk in the United States
    An, Hyunjin
    Gan, Jianbang
    Cho, Sung Ju
    [J]. FORESTS, 2015, 6 (09): : 3197 - 3211
  • [4] Climate-driven risks to the climate mitigation potential of forests
    Anderegg, William R. L.
    Trugman, Anna T.
    Badgley, Grayson
    Anderson, Christa M.
    Bartuska, Ann
    Ciais, Philippe
    Cullenward, Danny
    Field, Christopher B.
    Freeman, Jeremy
    Goetz, Scott J.
    Hicke, Jeffrey A.
    Huntzinger, Deborah
    Jackson, Robert B.
    Nickerson, John
    Pacala, Stephen
    Randerson, James T.
    [J]. SCIENCE, 2020, 368 (6497) : 1327 - +
  • [5] [Anonymous], 2020, Global Forest Resources Assessment 2020: Main report, DOI [DOI 10.4060/CA8753EN, 10.4060/ca9825-n, DOI 10.4060/CA9825-N]
  • [6] Arnholt AT., 2022, BSDA BASIC STAT DATA
  • [7] A semi-mechanistic model for predicting daily variations in species-level live fuel moisture content
    Balaguer-Romano, Rodrigo
    Diaz-Sierra, Ruben
    De Caceres, Miquel
    Cunill-Camprubi, Angel
    Nolan, Rachael H.
    Boer, Matthias M.
    Voltas, Jordi
    Resco de Dios, Victor
    [J]. AGRICULTURAL AND FOREST METEOROLOGY, 2022, 323
  • [8] Fitting Linear Mixed-Effects Models Using lme4
    Bates, Douglas
    Maechler, Martin
    Bolker, Benjamin M.
    Walker, Steven C.
    [J]. JOURNAL OF STATISTICAL SOFTWARE, 2015, 67 (01): : 1 - 48
  • [9] A hydroclimatic model for the distribution of fire on Earth
    Boer, Matthias M.
    De Dios, Victor Resco
    Stefaniak, Elisa Z.
    Bradstock, Ross A.
    [J]. ENVIRONMENTAL RESEARCH COMMUNICATIONS, 2021, 3 (03):
  • [10] Boer Matthias M., 2017, EARTHS FUTURE, DOI [10.1002/eft2.274, DOI 10.1002/EFT2.274]