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2023
Lucash MS, Marshall AM, Weiss SA, et al. Burning trees in frozen soil: Simulating fire, vegetation, soil, and hydrology in the boreal forests of Alaska. Ecological Modelling. 2023;481.
Stephens SL, Steel ZL, Collins BM, et al. Climate and fire impacts on tree recruitment in mixed conifer forests in Northwestern Mexico and California. Ecological Applications. 2023. Available at: https://esajournals.onlinelibrary.wiley.com/doi/epdf/10.1002/eap.2844.PDF icon Ecological Applications - 2023 - Stephens - Climate and fire impacts on tree recruitment in mixed conifer forests in.pdf (3.74 MB)
MacDonald G, Wall T, Enquist CAF, et al. Drivers of California’s changing wildfires: a state-of-the-knowledge synthesis. International Journal of Wildland Fire. 2023.PDF icon Drivers of California’s changing wildfires- a state-of-the-knowledge synthesis.pdf (3.08 MB)
MacDonald G, Wall T, Enquist CAF, et al. Drivers of California’s changing wildfires: a state-of-the-knowledge synthesis. International Journal of Wildland Fire. 2023.PDF icon Drivers of California’s changing wildfires- a state-of-the-knowledge synthesis.pdf (3.08 MB)
Finney MA, Grumstrup TP. Effect of flame zone depth on the correlation of flame length with fireline intensity. International Journal of Wildland Fire. 2023.PDF icon Effect of flame zone depth on the correlation of flame length with fireline intensity.pdf (2.94 MB)
Hino M, Field CB. Fire frequency and vulnerability in California. Plos One. 2023;2(2).PDF icon journal.pclm_.0000087.pdf (1.21 MB)
Hill AP, Nolan CJ, Hemes KS, Cambron TW, Field CB. Low-elevation conifers in California’s Sierra Nevada are out of equilibrium with climate. PNAS Nexus. 2023;2(2).PDF icon Hill et al_2023_Low elevation conifers in CA Sierra Nevada are out of equilibrium with climate.pdf (719.85 KB)
Whelton AJ, Seidel C, Wham BP, et al. The Marshall Fire: Scientific and policy needs for water system disaster response. AWWA Water Science. 2023;5(1).PDF icon AWWA_2023_Whelton_Marshall_Fire.pdf (2.23 MB)
Carter SK, Haby TS, Meineke JK, et al. Prioritizing science efforts to inform decision making on public lands. Frontiers in Ecology and the Environment. 2023. Available at: https://doi.org/10.1002/fee.2672.PDF icon Frontiers in Ecol Environ - 2023 - Carter.pdf (1.9 MB)
Francis EJ, Pourmohammadi P, Steel ZL, Collins BM, Hurteau MD. Proportion of forest area burned at high-severity increases with increasing forest cover and connectivity in western US watersheds. Landscape Ecology. 2023;38:2501–2518. Available at: https://link.springer.com/article/10.1007/s10980-023-01710-1.PDF icon s10980-023-01710-1.pdf (2.7 MB)
Huang X, Ding K, Liu J, et al. Smoke-weather interaction affects extreme wildfires in diverse coastal regions. Science. 2023;379(6631). Available at: https://www.science.org/doi/epdf/10.1126/science.add9843.PDF icon Smoke-weather interaction affects extreme wildfires in diverse coastal regions .pdf (3.59 MB)
Fillmore SD, Paveglio TB. Use of the Wildland Fire Decision Support System (WFDSS) for full suppression and managed fires within the Southwestern Region of the US Forest Service . International Journal of Wildland Fire. 2023.PDF icon Fillmore et al_2023 Use of WFDSS for full suppression and managed fires in SW region of USFS.pdf (866.04 KB)
Fertel HM, Collins BM, Lydersen JM, Stephens SL. Vegetation type change in California’s Northern Bay Area: A comparison of contemporary and historical aerial imagery. Forest Ecology and Management. 2023;542.
Barnard DM, Green TR, Mankin KR, et al. Wildfire and climate change amplify knowledge gaps linking mountain source-water systems and agricultural water supply in the western United States. Agricultural Water Management. 2023;286.PDF icon Wildfire and climate change amplify knowledge gaps linking mountain source-water systems and agricultural water supply in the western United States.pdf (1.41 MB)
2022
Li C, Handwerger AL, Wang J, et al. Augmentation of WRF-Hydro to simulate overland-flow- and streamflow-generated debris flow susceptibility in burn scars. Natural Hazards and Earth System Sciences. 2022;22:2317–2345.PDF icon Li et al_2022_NatHazards_Augmentation of WRF Hydro to simulate debris flow susceptibility in burn scars.pdf (1.36 MB)
Hamilton M, Salerno J, Fischer APaige. Cognition of feedback loops in a fire-prone social-ecological system. Global Environmental Change. 2022;74.PDF icon Hamilton et al 2022_Cognition of feedback loops in fire-prone social-ecol system.pdf (2.78 MB)
Iniguez JM, Evans AM, Dadashi S, et al. Comparing Geography and Severity of Managed Wildfires in California and the Southwest USA before and after the Implementation of the 2009 Policy Guidance. Forests. 2022;13(793).PDF icon Iniguez et al_2022_Comparing geography and severity of managed wildfires in CA and SW USA before and after 2009 policy guidance.pdf (1.64 MB)
Kearns EJ, Saah D, Levine CR, et al. The Construction of Probabilistic Wildfire Risk Estimates for Individual Real Estate Parcels for the Contiguous United States. Fire. 2022;5(117).PDF icon Kearns et al_2022_Fire_The Construction of ProbabilisticWildfire Risk Estimates for Individual Real Estate Parcels for US.pdf (7.09 MB)
Simon B, Crowley C, Franco F. The Costs and Costs Avoided From Wildfire Fire Management—A Conceptual Framework for a Value of Information Analysis. Frontiers in Environmental Science. 2022;10(804958). Available at: https://doi.org/10.3389/fenvs.2022.804958.PDF icon Simon et al_2022_The_Costs_and_Costs_Avoided_From_Wildfire_Fire_Mgmt.pdf (2.23 MB)
Jones GM, Vraga EK, Hessburg PF, et al. Counteracting wildfire misinformation. Frontiers in Ecology and the Environment. 2022;20(7):392-390.PDF icon Jones et al_2022_Front in Ecol Env_Counteracting wildfire misinformation.pdf (79.58 KB)
Leduc C, Giga SI, Fletcher IJ, Young M, Dorman SC. Effectiveness of fitness training and psychosocial education intervention programs in wildland firefighting: a cluster randomised control trial. International Journal of Wildland Fire. 2022;31:799-815.PDF icon Leduc et al_2022_IJWF_Effectiveness of fitness traning and phychosocial education intervention in wildland firefighters.pdf (1.14 MB)
Anderegg WRL, Chegwidden OS, Badgley G, et al. Future climate risks from stress, insects and fire across US forests. Ecology letters. 2022;25:1510–1520.PDF icon Anderegg et al_2022_Future climate risks from stress, insects, and fire across US forests.pdf (3.12 MB)
Sehrsweeney M, Fischer APaige. Governing ecosystem adaptation: An investigation of adaptive capacity within environmental governance networks. Environmental Science and Policy. 2022;134:46-56.PDF icon Sehrsweeney and Fischer_2022_Governing EcosystemAdaptation_Investigation of Adaptive Capacity within Enviro gov networks.pdf (6.71 MB)
Coogan SCP, Aftergood O, Flannigan MD. Human- and lightning-caused wildland fire ignition clusters in British Columbia, Canada. International Journal of Wildland Fire. 2022;31(11). Available at: https://doi.org/10.1071/WF21177.PDF icon Coogan et al_2022_IJWF_Human and Lightning caused wildland fire ignition clusters in BC Canada.pdf (10.13 MB)
Wickham SB, Augustine S, Forney A, et al. Incorporating place-based values into ecological restoration. Ecology and Society. 2022;27(3).PDF icon Wickham et al_2022_Ecol and Soc_Incorporating place-based values into ecological restoration.pdf (2.01 MB)

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