Publications Library
Drought, Tree Mortality, and Wildfire in Forests Adapted to Frequent Fire BioScience. 2018;68(2).
. Land surveys show regional variability of historical fire regimes and dry forest structure of the western United States Ecological Applications. 2018;28(2).
. Long-Term Effects of Fire on Vegetation Structure and Predicted Fire Behavior in Wyoming Big Sagebrush Ecosystems Ecosystems. 2018;(Online ISSN 1435-0629).
. Beyond red crowns: complex changes in surface and crown fuels and their interactions 32 years following mountain pine beetle epidemics in south-central Oregon, USA Fire Ecology. 2019;15(4).
. Designing Operationally Relevant Daily Large Fire Containment Strategies Using Risk Assessment Results Forests. 2019;10(4).
. Influence of fire refugia spatial pattern on post-fire forest recovery in Oregon’s Blue Mountains Landscape Ecology. 2019. Available at: https://link.springer.com/article/10.1007%2Fs10980-019-00802-1.
. Influence of fire refugia spatial pattern on post-fire forest recovery in Oregon’s Blue Mountains Landscape Ecology. 2019. Available at: https://link.springer.com/article/10.1007%2Fs10980-019-00802-1.
. Policy tools to address scale mismatches: insights from U.S. forest governance Ecology and Society. 2019;24(1).
. Predicting increasing high severity area burned for three forested regions in the western United States using extreme value theory Forest Ecology and Management. 2019;432.
. Predicting post-fire attack of red turpentine or western pine beetle on ponderosa pine and its impact on mortality probability in Pacific Northwest forests Forest Ecology and Management. 2019;434.
. Risk Management and Analytics in Wildfire Response Current Forestry Reports. 2019. Available at: https://link.springer.com/article/10.1007/s40725-019-00101-7.
Thompson_etal_2019_CFR_Risk_Management_and_Analytics_in_Wildfire_Response.pdf (887.23 KB)
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A System Dynamics Model Examining Alternative Wildfire Response Policies Systems. 2019;7(4).
. Traditional knowledge of fire use by the Confederated Tribes of Warm Springs in the eastside Cascades of Oregon Share via EmailShare on FacebookShare on LinkedIn Forest Ecology and Management. 2019;450.
. Use of Science and Modeling by Practitioners in Landscape-Scale Management Decisions Journal of Forestry. 2019;117(3).
. The 1994 Eastside screens large-tree harvest limit: review of science relevant to forest planning 25 years later. 2020. Available at: https://www.fs.usda.gov/pnw/node/41842.
pnw_gtr990.pdf (8.96 MB)

The 1994 Eastside screens large-tree harvest limit: review of science relevant to forest planning 25 years later. 2020. Available at: https://www.fs.usda.gov/pnw/node/41842.
pnw_gtr990.pdf (8.96 MB)

The 1994 Eastside screens large-tree harvest limit: review of science relevant to forest planning 25 years later. 2020. Available at: https://www.fs.usda.gov/pnw/node/41842.
pnw_gtr990.pdf (8.96 MB)

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.
rmrs_rn088.pdf (11.76 MB)

Climate and wildfire adaptation of inland Northwest US forests. Frontiers in Ecology and the Environment . 2021.
Climate and wildfire adaptation of inland Northwest US forests.pdf (3.39 MB)

Climate and wildfire adaptation of inland Northwest US forests. Frontiers in Ecology and the Environment . 2021.
Climate and wildfire adaptation of inland Northwest US forests.pdf (3.39 MB)
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Actionable social science can guide community level wildfire solutions. An illustration from North Central Washington, US. International Journal of Disaster Risk Reduction. 2022;82.
1-s2.0-S2212420922006070-main.pdf (2.48 MB)

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.
Li et al_2022_NatHazards_Augmentation of WRF Hydro to simulate debris flow susceptibility in burn scars.pdf (1.36 MB)
