Publications Library

Found 249 results
Filters: First Letter Of Last Name is A  [Clear All Filters]
2017
Ager AA. Effects of accelerated wildfire on future fire regimes and implications for the United States federal fire policy Barros AMG, ed. Ecology and Society. 2017;22(4).
Gergel DR. Effects of climate change on snowpack and fire potential in the western USA Nijssen B, ed. Climate Change. 2017;141(2).
Aurell J. Emissions from prescribed burning of timber slash piles in Oregon Gullett BK, ed. Atmospheric Environment. 2017;150.
Shaw DC. Fire and dwarf mistletoe (Viscaceae: Arceuthobium species) in western North America: contrasting Arceuthobium tsugense and Arceuthobium americanum Agne MC, ed. Botany. 2017;95(3).
Forrestel AB. Fire History and Forest Structure along an Elevational Gradient in the Southern Cascade Range, Oregon, USA Andrus RA, ed. Fire Ecology. 2017;13(1).
Steen-Adams MM. Historical perspective on the influence of wildfire policy, law, and informal institutions on management and forest resilience in a multiownership, frequent-fire, coupled human and natural system in Oregon, USA Charnley S, ed. Ecology and Society. 2017;22(3).
Heinsch FA. How to generate and interpret fire characteristics charts for the U.S. fire danger rating system. (Andrews PL, ed.). Fort Collins: Department of Agriculture, Forest Service, Rocky Mountain Research Station; 2017:62 p. Available at: https://www.fs.usda.gov/treesearch/pubs/54597.
Bowman DMJS. Human exposure and sensitivity to globally extreme wildfire events Williamson GJ, ed. Nature Ecology & Evolution. 2017;1.
Balch JK. Human-started wildfires expand the fire niche across the United States Bradley BA, ed. Proceedings of the National Academy of Sciences. 2017;Online early.
Gharun M. Improving forest sampling strategies for assessment of fuel reduction burning Possell M, ed. Forest Ecology and Management. 2017;392.
Agne MC. Interactions of predominant insects and diseases with climate change in Douglas-fir forests of western Oregon and Washington, U.S.A. Beedlow PA, ed. Forest Ecology and Management. 2017;409.
Rogeau M-P. Quantifying the effect of elevation and aspect on fire return intervals in the Canadian Rocky Mountains Armstrong GW, ed. Forest Ecology and Management. 2017;384.
Jones KW. Return on investment from fuel treatments to reduce severe wildfire and erosion in a watershed investment program in Colorado Cannon JB, ed. Journal of Environmental Management. 2017;198(Part 2).
Agriculture USDepartment. Smoke in a New Era of Fire. Portland, OR: U.S. Department of Agriculture, PNW Station; 2017:16.PDF icon smoke science-update-24-1.pdf (2.96 MB)
Urgenson LS. Social perspectives on the use of reference conditions in restoration of fire-adapted forest landscapes Nelson CR, ed. Restoration Ecology. 2017;Online early.
Barros AMG. Spatiotemporal dynamics of simulated wildfire, forest management, and forest succession in central Oregon, USA. Ager AA, ed. Ecology and Society. 2017;22(1).
Barros AMG. Spatiotemporal dynamics of simulated wildfire, forest management, and forest succession in central Oregon, USA. Ager AA, ed. Ecology and Society. 2017;22(1).
Association WGovernors'. Special Report: Western Governors' National Forest and Rangeland Management Initiative. Denver: Western Governors' Association; 2017:32p.PDF icon 2017_NFRMI_Report_for_Web.pdf (1.68 MB)
Spies TA. Using an agent-based model to examine forest management outcomes in a fire-prone landscape in Oregon, USA. White E, ed. Ecology and Society. 2017;22(1).
Spies TA. Using an agent-based model to examine forest management outcomes in a fire-prone landscape in Oregon, USA. White E, ed. Ecology and Society. 2017;22(1).

Pages