Publications Library

Found 1096 results
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2014
Ottmar RD. Wildland fire emissions, carbon, and climate: Modeling fuel consumption. Forest Ecology and Management. 2014;317.
B.W.Butler . Wildland firefighter safety zones: a review of past science and summary of future needs. International Journal of Wildland Fire. 2014;23(3).
Committee NWCGWUIM. Wildland Urban Interface Wildfire Mitigation Desk Reference Guide. 2014;PMS 051. Available at: http://www.nwcg.gov/.PDF icon pms051.pdf (1.26 MB)
2015
Martinuzzi S. The 2010 wildland-urban interface of the conterminous United States. (Stewart SI, ed.).; 2015. Available at: http://www.nrs.fs.fed.us/pubs/48642.
Hamilton BAllen. 2014 Quadrennial Fire Review Final Report.; 2015:1-96. Available at: http://www.forestsandrangelands.gov/QFR/documents/2014QFRFinalReport.pdf.
Baker WL. Are high-severity fires burning at much higher rates recently than historically in dry-forest landscapes of the Western USA. PLOS ONE. 2015;10(9).
Hart SJ. Area burned in the western United States is unaffected by recent mountain pine beetle outbreaks Schoennagel T, ed. Proceedings of the National Academy of Sciences . 2015;Online early.
Stevens-Rumann C. Bark beetles and wildfires: How does forest recovery change with repeated disturbances in mixed conifer forests? Morgan P, ed. Ecosphere. 2015;6(6).
Bennett M. Before Wildfire Strikes: A Handbook for Homeowners and Communities in Southwest Oregon. Oregon State University; 2015. Available at: https://catalog.extension.oregonstate.edu/em9131.
Oliver M. A bird’s-eye view: Land-use planning and assessments in Oregon and Washington. (Gray A, ed.).; 2015. Available at: http://www.fs.fed.us/pnw/sciencef/scifi172.pdf.
Wiechmann ML. The carbon balance of reducing wildfire risk and restoring process: an analysis of 10-year post-treatment carbon dynamics in a mixed-conifer forest Hurteau MD, ed. Climatic Change. 2015;132(4). Available at: http://link.springer.com/article/10.1007%2Fs10584-015-1450-y.
Dickinson K. Catching Fire? Social Interactions, Beliefs, and Wildfire Risk Mitigation Behaviors Brenkert-Smith H, ed. Society & Natural Resources. 2015;28(8).
Paveglio TB. Categorizing the social context of the wildland urban interface: Adaptive capacity for wildfire and community "archetypes" Moseley C, ed. Forest Science. 2015;61(2).
Kent LLYocom. Climate Change and Fire in the Southwest.; 2015. Available at: http://swfireconsortium.org/wp-content/uploads/2015/06/Yocom_Climate_Fire_SW.pdf.
Falke JA. Climate change and vulnerability of bull trout (Salvelinus confluentus) in a fire-prone landscape Flitcroft RL, ed. Canadian Journal of Fisheries and Aquatic Sciences. 2015;72.
Barbero R. Climate change presents increased potential for very large fires in the contiguous United States Abatzoglou JT, ed. International Journal of Wildland Fire. 2015;Online early.
Whitman E. The climate space of fire regimes in north-western North America Batllori E, ed. Journal of Biogeography. 2015;Online early.
W Jolly M. Climate-induced variations in global wildfire danger from 1979 to 2013 Cochrane MA, ed. Nature Commuications. 2015;6.
Nowell B. Communication under Fire: The Role of Embeddedness in the Emergence and Efficacy of Disaster Response Communication Networks Steelman T, ed. Journal of Public Administration Research and Theory. 2015;25(3).
Ellison A. Community Experiences with Wildfires: Actions, Effectiveness, Impacts, and Trends. (Knapp M, ed.).; 2015. Available at: http://ewp.uoregon.edu/sites/ewp.uoregon.edu/files/WP_56.pdf.PDF icon WP_56-1.pdf (3.46 MB)
McCaffrey S. Community wildfire preparedness: a global state-of-the-knowledge summary of social science research. Current Forestry Reports. 2015;1(2).
Lee C. The cost of climate change: Ecosystem services and wildland fires Schlemme C, ed. Ecological Economics. 2015;116.
Johnson MC. Developing a post-processor to link the Forest Vegetation Simulator (FVS) and the Fuel Characteristic Classification System (FCCS).; 2015:9 p.PDF icon JFSP 12-1-02-35_final_report.pdf (448.9 KB)
Thompson MP. Development and application of a probabilistic method for wildfire suppression cost modeling Haas JR, ed. Forest Policy and Economics. 2015;50.
Meigs GW. Does wildfire likelihood increase following insect outbreaks in conifer forests? Campbell JL, ed. Ecosphere. 2015;6(7).

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