Publications Library

Found 1216 results
2023
Zaiats A, Cattau ME, Pilliod DS, et al. Forecasting natural regeneration of sagebrush after wildfires using population models and spatial matching. Landscape Ecology . 2023. Available at: https://link.springer.com/article/10.1007/s10980-023-01621-1.PDF icon Forecasting natural regeneration of sagebrush after wildfires using population models and spatial matching.pdf (1.13 MB)
Zhang Z, Zhang L, Xu H, et al. Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes. Forest Ecology and Management. 2023;534.PDF icon Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes.pdf (1 MB)
Morris JE, Buonanduci MS, Agne MC, et al. Fuel Profiles and Biomass Carbon Following Bark Beetle Outbreaks: Insights for Disturbance Interactions from a Historical Silvicultural Experiment. Ecosystems. 2023. Available at: https://www.fs.usda.gov/research/treesearch/65972.PDF icon rmrs_2023_morris_j001.pdf (2.15 MB)
Ott JE, Kilkenny FF, Jain TB. Fuel treatment effectiveness at the landscape scale: a systematic review of simulation studies comparing treatment scenarios in North America. Fire Ecology. 2023;19. Available at: https://fireecology.springeropen.com/articles/10.1186/s42408-022-00163-2.PDF icon Fuel treatment effectiveness at the landscape scale: a systematic review of simulation studies comparing treatment scenarios in North America.pdf (5.01 MB)
McGinnis S, Kessenich L, Mearns L, et al. Future regional increases in simultaneous large Western USA wildfires. International Journal of Wildland Fire. 2023.PDF icon McGinnis et al_2023_Future regional increases in simulatneous large western USA fires.pdf (944.95 KB)
Birch JD, Dickinson MB, Reiner A, et al. Heading and backing fire behaviours mediate the influence of fuels on wildfire energy. International Journal of Wildland Fire. 2023. Available at: https://www.publish.csiro.au/WF/WF22010.PDF icon Birch et al_2023_heading and backing fire behavior.pdf (2.46 MB)
Williams JN, Safford HD, Enstice N, Steel ZL, Paulson AK. High-severity burned area and proportion exceed historic conditions in Sierra Nevada, California, and adjacent ranges. Ecosphere. 2023;14(1).PDF icon Ecosphere - 2023 - Williams - High‐severity burned area and proportion exceed historic conditions in Sierra Nevada .pdf (1.96 MB)
Weeks JM, Miller JED, Steel ZL, Batzer EE, Safford HD. High-severity fire drives persistent floristic homogenization in human-altered forests. Ecosphere. 2023.PDF icon Ecosphere - 2023 - Weeks - High‐severity fire drives persistent floristic homogenization in human‐altered forests.pdf (1.33 MB)
Wolters EAllen. Homeowner firewise behaviors in fire-prone central Oregon: An exploration of the attitudinal, situational, and cultural worldviews impacting pre-fire mitigation actions Author links open overlay panel. Journal of Environmental Management. 2023;327.
R. Bixler P, Epanchin-Niell RS, Brunson MW, et al. How social and ecological characteristics shape transaction costs in polycentric wildfire governance: insights from the Sequoia-Kings Canyon Ecosystem, California, USA. Ecology and Society . 2023;28(1). Available at: https://ecologyandsociety.org/vol28/iss1/art34/.PDF icon How social and ecological characteristics shape transaction costs in polycentric wildfire governance- insights from the Sequoia-Kings Canyon Ecosystem, California, USA.pdf (971.08 KB)
Jenkins JS, Abatzoglou JT, Rupp DE, Fleishman E. Human and climatic influences on wildfires ignited by recreational activities in national forests in Washington, Oregon, and California. Environmental Research Communications. 2023;5.PDF icon Jenkins_2023_Environ._Res._Commun._5_095002.pdf (1.19 MB)
A NKKasraee, Hawbaker TJ, Radeloff VC. Identifying building locations in the wildland–urban interface before and after fires with convolutional neural networks. International Journal of Wildland Fire. 2023.
Peeler JL, McCauley L, Metlen KL, et al. Identifying opportunity hot spots for reducing the risk of wildfire-caused carbon loss in western US conifer forests. Environmental Research Letters. 2023;18.PDF icon Peeler_2023_Environ._Res._Lett._18_094040.pdf (2.72 MB)
Singh A, Ziazi RM, Simeoni A. Intermittent fireline behaviour over porous vegetative media in different crossflow conditions. International Journal of Wildland Fire. 2023.PDF icon Intermittent fireline behaviour over porous vegetative media in different crossflow conditions.pdf (4.68 MB)
Urza AK, Hanberry BB, Jain TB. Landscape‑scale fuel treatment effectiveness: lessons learned from wildland fire case studies in forests of the western United States and Great Lakes region. Fire Ecology. 2023;19(1).PDF icon Urza et al_2023_FireEcol_Landscape‑scale fuel treatment effectiveness- lessons learned from wildland fire case studies in forests of the western United States and Great Lakes region.pdf (1.27 MB)
Braziunas KH, Kiel NG, Turner MG. Less fuel for the next fire? Short-interval fire delays forest recovery and interacting drivers amplify effects. Ecology . 2023.PDF icon Ecology - 2023 - Braziunas - Less fuel for the next fire Short%E2%80%90interval fire delays forest recovery and interacting.pdf (2.97 MB)
Alvarez-Ruiz L, Pausas JG, Blumstein DT, Putman BJ. Lizards' response to the sound of fire is modified by fire history. Animal Behaviour. 2023;196:91-102.PDF icon 1-s2.0-S0003347222003207-main.pdf (1.46 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)
Woinarski JCZ, McCormack PC, McDonald J, et al. Making choices: prioritising the protection of biodiversity in wildfires. International Journal of Wildland Fire. 2023.PDF icon Making choices- prioritising the protection of biodiversity in wildfires.pdf (983.35 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)
Jaffe MR, Kreider MR, Affleck DLR, et al. Mesic mixed-conifer forests are resilient to both historical high-severity fire and contemporary reburns in the US Northern Rocky Mountains. Forest Ecology and Management. 2023;545.
Vorster AG, Stevens-Rumann C, Young N, et al. Metrics and Considerations for Evaluating How Forest Treatments Alter Wildfire Behavior and Effects. Journal of Forestry. 2023:1-18.PDF icon Metrics and considerations for eval forest treatments.pdf (1.47 MB)
Davis EJ, Wilmsen C, Machado MA, Alessi GM. Multiple Stories, Multiple Marginalities: The Labor-Intensive Forest and Fire Stewardship Workforce in Oregon. Fire. 2023;6(7):268.PDF icon fire-06-00268.pdf (317.97 KB)
Cova G, Kane VR, Prichard S, North M, Cansler A. The outsized role of California’s largest wildfires in changing forest burn patterns and coarsening ecosystem scale. Forest Ecology and Management. 2023;528.PDF icon 1-s2.0-S0378112722006144-main.pdf (7.12 MB)
Baig J, Gavin DG. Postglacial vegetation and fire history with a high-resolution analysis of tephra impacts, High Cascade Range, Oregon, USA. Quaternary Science Reviews. 2023;303. Available at: https://www.sciencedirect.com/science/article/abs/pii/S0277379123000185?via%3Dihub.

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