Publications Library

Found 1216 results
2023
Chuvieco E, Yebra M, Martino S, et al. Towards an Integrated Approach to Wildfire Risk Assessment: When, Where, What and How May the Landscapes Burn. Fire. 2023;6.PDF icon fire-06-00215-v2.pdf (9.73 MB)
Bernal AA, Kane JM, Knapp EE, Zald HSJ. Tree resistance to drought and bark beetle-associated mortality following thinning and prescribed fire treatments. Forest Ecology and Management. 2023;530. Available at: https://www.sciencedirect.com/science/article/pii/S0378112722007526.PDF icon Tree resistance to drought and bark beetle-associated mortality following thinning and prescribed fire treatments.pdf (7.81 MB)
Billings M, Carroll M, Paveglio T. Unprotected lands: A case study of a wildland-urban interface community in “No-Man's land”. Journal of Environmental Management. 2023;330.
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)
Krueger ES, Levi MR, Achieng KO, et al. Using soil moisture information to better understand and predict wildfire danger: a review of recent developments and outstanding questions. International Journal of Wildland Fire. 2023;32(2).PDF icon WF22056.pdf (3.84 MB)
Paveglio TB, Edgeley CM. Variable Support and Opposition to Fuels Treatments for Wildfire Risk Reduction: Melding Frameworks for Local Context and Collaborative Potential . Journal of Forestry. 2023.PDF icon Variable Support and Opposition to Fuels Treatments for Wildfire Risk Reduction- Melding Frameworks for Local Context and Collaborative Potential.pdf (1.17 MB)
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.
Ritter SM, Hoffman CM, Battaglia MA, Linn R, Mell WE. Vertical and Horizontal Crown Fuel Continuity Influences Group-Scale Ignition and Fuel Consumption. Fire. 2023;6(8).PDF icon fire-06-00321.pdf (2.34 MB)
Hoecker TJ, Parks SA, Krosby M, Dobrowski SZ. Widespread exposure to altered fire regimes under 2 °C warming is projected to transform conifer forests of the Western United States. Nature. 2023;4(295).PDF icon s43247-023-00954-8.pdf (5.38 MB)
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)
Brodie EG, Stewart JAE, Winsemius S, et al. Wildfire facilitates upslope advance in a shade-intolerant but not a shade-tolerant conifer. Ecological Applications. 2023.PDF icon Ecological Applications - 2023 - Brodie - Wildfire facilitates upslope advance in a shade%E2%80%90intolerant but not a-2.pdf (6.48 MB)
Taccaliti F, Marzano R, Bell TL, Lingua E. Wildland–Urban Interface: Definition and Physical Fire Risk Mitigation Measures, a Systematic Review. Fire. 2023;6(9). Available at: https://doi.org/10.3390/fire6090343.PDF icon fire-06-00343.pdf (1.68 MB)
2022
Champ PA, Brenkert-Smith H, Riley JP, et al. Actionable social science can guide community level wildfire solutions. An illustration from North Central Washington, US. International Journal of Disaster Risk Reduction. 2022;82.PDF icon 1-s2.0-S2212420922006070-main.pdf (2.48 MB)
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)
Halpern CB, Antos JA. Burn severity and pre-fire seral state interact to shape vegetation responses to fire in a young, western Cascade Range forest. Forest Ecology and Management. 2022.PDF icon Halpern and Antos_2022_Burn Severity and veg responses_West Cascade Range forest.pdf (8.63 MB)
Thomas AS, Escobedo FJ, Sloggy MR, Sánchez JJ. A burning issue: Reviewing the sociodemographic and environmental justice aspects of the wildfire literature. Plos One. 2022;17(7).PDF icon Thomas et al_2022_PlosOne_A burning issue_Reviewing sociodemographic and enviro justice aspects of the wildfire literature.pdf (1.2 MB)
Reilly MJ, Zuspan A, Halofsky JS, et al. Cascadia Burning: The historic, but not historically unprecedented, 2020 wildfires in the Pacific Northwest, USA. Ecosphere. 2022;13.PDF icon Reilly et al_2022_Cascadia Burning_Historic but not historically unprecedented 2022 wildfires in PNW.pdf (9.62 MB)
Airey-Lauvaux C, Pierce AD, Skinner CN, Taylor AH. Changes in fire behavior caused by fire exclusion and fuel build-up vary with topography in California montane forests, USA. Journal of Environmental Management. 2022.PDF icon Airey-Lauvaux et al_2022_Changes in fire behavior caused by fire exclusion and fuel buildup vary with topo in CA montane forests.pdf (7.93 MB)
Neger C, Rosas-Paz LDaniel. A Characterization of Fire-Management Research: A Bibliometric Review of Global Networks and Themes. Fire. 2022;5(89).PDF icon Neger and Rosas-Paz_2022_Characterization of Fire-Management Research_A bibliometric review of global networks and themes.pdf (6.02 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)
Snitker G, Roos CI, Sullivan, III AP, et al. A collaborative agenda for archaeology and fire science. Nature Ecology & Evolution. 2022.PDF icon Snitker_et_al_2022_NatureEcoEvo_A collaborative agenda for achaeology and fire science.pdf (2.99 MB)
Santo AR, Huber-Stearns H, Smith H. Communicating with the public about wildland fire preparation, response, and recovery: a review of recent literature. Applied Environmental Education & Communication . 2022;21(4).
Copes-Gerbitz K, Dickson-Hoyle S, Ravensbergen SL, et al. Community Engagement With Proactive Wildfire Management in British Columbia, Canada: Perceptions, Preferences, and Barriers to Action. Frontiers in Forests and Global Change. 2022;5(829125).PDF icon Copes-Gerbitz et al_2022_Community Engagement with Proactive Wildfire Management in BC_Perceptions Preferences and Barriers.pdf (9.61 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)
Suzuki S, Manzello SL. Comparing particulate morphology generated from human- made cellulosic fuels to natural vegetative fuels. International Journal of Wildland Fire. 2022;31. Available at: https://doi.org/10.1071/WF22093.PDF icon Suzuki and Manzello_2022_IJWF_Comparing particulate morphology generated from human-made cellulosic fuels to natural vegetative fuels.pdf (2.79 MB)

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