Publications Library
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.
Tree resistance to drought and bark beetle-associated mortality following thinning and prescribed fire treatments.pdf (7.81 MB)
. 
Unprotected lands: A case study of a wildland-urban interface community in “No-Man's land”. Journal of Environmental Management. 2023;330.
. 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).
WF22056.pdf (3.84 MB)

Vertical and Horizontal Crown Fuel Continuity Influences Group-Scale Ignition and Fuel Consumption. Fire. 2023;6(8).
fire-06-00321.pdf (2.34 MB)
. 
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.
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)

Wildfire facilitates upslope advance in a shade-intolerant but not a shade-tolerant conifer. Ecological Applications. 2023.
Ecological Applications - 2023 - Brodie - Wildfire facilitates upslope advance in a shade%E2%80%90intolerant but not a-2.pdf (6.48 MB)

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.
fire-06-00343.pdf (1.68 MB)
. 
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)

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)

Cascadia Burning: The historic, but not historically unprecedented, 2020 wildfires in the Pacific Northwest, USA. Ecosphere. 2022;13.
Reilly et al_2022_Cascadia Burning_Historic but not historically unprecedented 2022 wildfires in PNW.pdf (9.62 MB)

A collaborative agenda for archaeology and fire science. Nature Ecology & Evolution. 2022.
Snitker_et_al_2022_NatureEcoEvo_A collaborative agenda for achaeology and fire science.pdf (2.99 MB)

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).
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)

Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns. International Journal of Wildland Fire. 2022;32. Available at: https://www.publish.csiro.au/wf/pdf/WF22079.
Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns.pdf (2.65 MB)

Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns. International Journal of Wildland Fire. 2022;32. Available at: https://www.publish.csiro.au/wf/pdf/WF22079.
Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns.pdf (2.65 MB)

Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns. International Journal of Wildland Fire. 2022;32. Available at: https://www.publish.csiro.au/wf/pdf/WF22079.
Comparing two methods to measure oxidative pyrolysis gases in a wind tunnel and in prescribed burns.pdf (2.65 MB)

The complexity of biological disturbance agents, fuels heterogeneity, and fire in coniferous forests of the western United States. Forest Ecology and Management. 2022;525.
Shaw et al_2022_ForEcolMgmt_Complexity of BDAs fuels heterogenity and fire in conifer forests of West US.pdf (1.25 MB)

The Construction of Probabilistic Wildfire Risk Estimates for Individual Real Estate Parcels for the Contiguous United States. Fire. 2022;5(117).
Kearns et al_2022_Fire_The Construction of ProbabilisticWildfire Risk Estimates for Individual Real Estate Parcels for US.pdf (7.09 MB)

Converging and diverging burn rates in North American boreal forests from the Little Ice Age to the present. International Journal of Wildland Fire. 2022;31(12):1184-1193.
Chavardes et al 2022_IJWF_Converging and diverging burn rates in N American boreal forests from little ice age to present.pdf (2.54 MB)

Cultivating Collaborative Resilience to Social and Ecological Change: An Assessment of Adaptive Capacity, Actions, and Barriers Among Collaborative Forest Restoration Groups in the United States. Journal of Forestry. 2022.
Beeton et al_2022_Collaborative Resilience CFLR Groups.pdf (9.88 MB)
. 
Designing forest restoration projects to optimize the application of broadcast burning. Ecological Economics. 2022.
Belavenutti et al_2022_Ecological Econ_Designing forest restoration projects to optimize the application of broadcast burning.pdf (3.12 MB)
. 
Engagement in local and collaborative wildfire risk mitigation planning across the western U.S.—Evaluating participation and diversity in Community Wildfire Protection Plans. Plos One. 2022;17(2).
Palsa et al 2022_Engagement_in_local_collaborative_wf_risk.pdf (1.3 MB)
. 
Exposures and behavioural responses to wildfire smoke. Nature Human Behavior. 2022.
Burke et al_2022_Nature Human Behavior_Exposures and behavioural responses to wildfire smoke.pdf (8.57 MB)

Exposures and behavioural responses to wildfire smoke. Nature Human Behavior. 2022.
Burke et al_2022_Nature Human Behavior_Exposures and behavioural responses to wildfire smoke.pdf (8.57 MB)

Exposures and behavioural responses to wildfire smoke. Nature Human Behavior. 2022.
Burke et al_2022_Nature Human Behavior_Exposures and behavioural responses to wildfire smoke.pdf (8.57 MB)
