Publications Library

Found 186 results
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2022
Schmidt A, Punches J, Leavell D, et al. A quantitative wildfire risk assessment using a modular approach of geostatistical clustering and regionally distinct valuations of assets—A case study in Oregon. Plos One. 2022;17(3).PDF icon Schmidt et al_2022_Quantitative Wildfire Risk Assessment Using a Modular Approach of Geostat Clustering_Case Study in OR.pdf (8.18 MB)
Ketchpaw AR, Li D, Khan SNawaz, et al. Using Structure Location Data to Map theWildland–Urban Interface in Montana, USA. Fire. 2022;5(129).PDF icon Ketchpaw et al_2022_Fire_Using location data to map the WUI in Montana USA.pdf (9.11 MB)
Ketchpaw AR, Li D, Khan SNawaz, et al. Using Structure Location Data to Map theWildland–Urban Interface in Montana, USA. Fire. 2022;5(129).PDF icon Ketchpaw et al_2022_Fire_Using location data to map the WUI in Montana USA.pdf (9.11 MB)
Linley GD, Jolly CJ, Doherty TS, et al. What do you mean, ‘megafire’?. Global Ecology and Biogeography . 2022;31:1906–1922.PDF icon Linley et al_2022_Global ecol and biogeog_What do you mean Megafire.pdf (3.72 MB)
Linley GD, Jolly CJ, Doherty TS, et al. What do you mean, ‘megafire’?. Global Ecology and Biogeography . 2022;31:1906–1922.PDF icon Linley et al_2022_Global ecol and biogeog_What do you mean Megafire.pdf (3.72 MB)
Wilmot TY, Mallia DV, Hallar AG, Lin JC. Wildfire plumes in the Western US are reaching greater heights and injecting more aerosols aloft as wildfire activity intensifies. Scientific Reports. 2022;12(12400).PDF icon Wilmot et al_2022_Wildfire Plumes in western US are reaching greater heights.pdf (1.76 MB)
D’Evelyn SM, Jung J, Alvarado E, et al. Wildfire, Smoke Exposure, Human Health, and Environmental Justice Need to be Integrated into Forest Restoration and Management. Current Environmental Health Reports. 2022;Online.PDF icon DEvelyn et al_2022_Wildfire Smoke Exposure Human Health and Enviro Justice Integration Needs.pdf (3.04 MB)
2021
Merschel AG, Beedlow PA, Shaw DC, et al. An ecological perspective on living with fire in ponderosa pine forests of Oregon and Washington: Resistance, gone but not forgotten. Trees, Forests and People. 2021;4.PDF icon An ecological perspective on living with fire in ponderosa pine forests of Oregon and Washington.pdf (9.05 MB)
Xiang J, Huang C-H, Shirai J, et al. Field measurements of PM2.5 infiltration factor and portable air cleaner effectiveness during wildfire episodes in US residences. Science of the Total Environment. 2021;773. Available at: https://doi.org/10.1016/j.scitotenv.2021.145642.
Xiang J, Huang C-H, Shirai J, et al. Field measurements of PM2.5 infiltration factor and portable air cleaner effectiveness during wildfire episodes in US residences. Science of the Total Environment. 2021;773. Available at: https://doi.org/10.1016/j.scitotenv.2021.145642.
Long JW, Lake FK, Goode RW. The importance of Indigenous cultural burning in forested regions of the Pacific West, USA. Forest Ecology and Management. 2021;500(119597).PDF icon Long et al_2021_Importance of Indegenous cultural burning_PNW.pdf (3.91 MB)
Long JW, Lake FK, Goode RW. The importance of Indigenous cultural burning in forested regions of the Pacific West, USA. Forest Ecology and Management. 2021;500(119597).PDF icon Long et al_2021_Importance of Indegenous cultural burning_PNW.pdf (3.91 MB)
Lake FKanawha. Indigenous Fire Stewardship: Federal/Tribal Partnerships for Wildland Fire Research and Management . Fire Management Today. 2021;79(No. 1). Available at: https://www.fs.usda.gov/sites/default/files/fire-management-today/00313%20FS%20Pubs%20FMT%2078%283%29_final%20508_c.pdf#page=30.
Hessburg PF, Prichard SJ, R. Hagmann K, Povak NA, Lake FK. Wildfire and climate change adaptation of western North American forests: a case for intentional management. Ecological Applications. 2021;31(8).PDF icon Hessburg et al 2021_Wildfire and Climate change adaptation western forests.pdf (2.84 MB)
2020
Brenkert-Smith H, Chambers C, Gibble K, et al. Living with wildfire in Ashland, Oregon: 2020 Data Report. USDA Forest Service, Rocky Mountian Research Station; 2020. Available at: https://www.fs.fed.us/rm/pubs_series/rmrs/rn/rmrs_rn088.pdf.PDF icon rmrs_rn088.pdf (11.76 MB)
Povak NA, Churchill DJ, Cansler CA, et al. Wildfire severity and postfire salvage harvest effects on long-term forest regeneration. Ecosphere. 2020;11(8).PDF icon pnw_2020_povak002-1.pdf (9.11 MB)
Povak NA, Churchill DJ, Cansler CA, et al. Wildfire severity and postfire salvage harvest effects on long-term forest regeneration. Ecosphere. 2020;11(8).PDF icon pnw_2020_povak002-1.pdf (9.11 MB)
2019
Liu Y. Fire behaviour and smoke modelling: model improvement and measurement needs for next-generation smoke research and forecasting systems Kochanski A, ed. International Journal of Wildland Fire. 2019;28(8).
Lesmeister DB. Mixed-severity wildfire and habitat of an old-forest obligate .G.Sovern S, ed. Ecosphere. 2019;e02696.
Buotte PC. Near-future forest vulnerability to drought and fire varies across the western United States Levis S, ed. Global Change Biology. 2019;25(1).
Buotte PC. Near-future forest vulnerability to drought and fire varies across the western United States Levis S, ed. Global Change Biology. 2019;25(1).
Ortiz MJLopez. Post-fire management affects species composition but not Douglas-fir regeneration in the Klamath Mountains Marcey T, ed. Forest Ecology and Management. 2019;432.
Spies TA. Twenty‐five years of the Northwest Forest Plan: what have we learned? Long JW, ed. Frontiers in Ecology and the Environment. 2019;17(9).
White EM. Use of Science and Modeling by Practitioners in Landscape-Scale Management Decisions Lindberg K, ed. Journal of Forestry. 2019;117(3).
2018
Hoffman CH, al. et. Advancing the Science of Wildland Fire Dynamics Using Process-Based Models Sieg CH, ed. Fire. 2018;1(2).

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