Publications Library
Anthropogenic climate change impacts exacerbate summer forest fires in California. PNAS. 2023;120.
Anthropogenic climate change impacts exacerbate summer forest fires in California.pdf (605.57 KB)

Anthropogenic climate change impacts exacerbate summer forest fires in California. PNAS. 2023;120.
Anthropogenic climate change impacts exacerbate summer forest fires in California.pdf (605.57 KB)

Building water resilience in the face of cascading wildfire risks. Science Advances. 2023;9(37). Available at: https://www.science.org/doi/10.1126/sciadv.adf9534.
sciadv.adf9534.pdf (825.23 KB)
. 
Burning trees in frozen soil: Simulating fire, vegetation, soil, and hydrology in the boreal forests of Alaska. Ecological Modelling. 2023;481.
Continental-scale Atmospheric Impacts of the 2020 Western U.S. Wildfires. Atmospheric Environment. 2023;294.
Continental-scale Atmospheric Impacts of the 2020 Western U.S. Wildfires.pdf (4.34 MB)

Cross-boundary cooperation in wildfire management during the custodial management period of the US Forest Service: A case study of the eastern Cascades of Oregon, USA, 1905–1945. Land Use Policy. 2023;127.
. A data‐driven analysis and optimization of the impact of prescribed fire programs on wildfire risk in different regions of the USA. Natural Hazards. 2023.
A data-driven analysis and optimization of the impact of prescribed fire programs on wildfire risk in different regions of the USA.pdf (2.13 MB)
. 
Different approaches make comparing studies of burn severity challenging: a review of methods used to link remotely sensed data with the Composite Burn Index. International Journal of Wildland Fire . 2023. Available at: https://www.publish.csiro.au/wf/pdf/WF22050.
Different approaches make comparing studies of burn severity challenging- a review of methods used to link remotely sensed data with the Composite Burn Index.pdf (2.49 MB)
. 
Downslope Wind-Driven Fires in the Western United States. Earth's Future. 2023;11(5).
Downslope Wind-Driven Fires in the Western United States.pdf (8.46 MB)

Downwind Fire and Smoke Detection during a Controlled Burn—Analyzing the Feasibility and Robustness of Several Downwind Wildfire Sensing Modalities through Real World Applications. Fire. 2023;6(9). Available at: https://www.mdpi.com/2571-6255/6/9/356.
fire-06-00356.pdf (5.95 MB)

DUET - Distribution of Understory using Elliptical Transport: A mechanistic model of leaf litter and herbaceous spatial distribution based on tree canopy structure. Ecological Modelling. 2023;483.
Exploring and Testing Wildfire Risk Decision-Making in the Face of Deep Uncertainty. Fire. 2023;6(7).
fire-06-00276-v3.pdf (6.02 MB)

Face-to-face with scorching wildfire: potential toxicant exposure and the health risks of smoke for wildland firefighters at the wildland-urban interface. PMC. 2023.
Face-to-face with scorching wildfire- potential toxicant exposure and the health risks of smoke for wildland firefighters at the wildland-urban interface.pdf (1.19 MB)

Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes. Forest Ecology and Management. 2023;534.
Forest water-use efficiency: Effects of climate change and management on the coupling of carbon and water processes.pdf (1 MB)

Fuel Profiles and Biomass Carbon Following Bark Beetle Outbreaks: Insights for Disturbance Interactions from a Historical Silvicultural Experiment. Ecosystems. 2023. Available at: https://www.fs.usda.gov/research/treesearch/65972.
rmrs_2023_morris_j001.pdf (2.15 MB)

How social and ecological characteristics shape transaction costs in polycentric wildfire governance: insights from the Sequoia-Kings Canyon Ecosystem, California, USA. Ecology and Society . 2023;28(1). Available at: https://ecologyandsociety.org/vol28/iss1/art34/.
How social and ecological characteristics shape transaction costs in polycentric wildfire governance- insights from the Sequoia-Kings Canyon Ecosystem, California, USA.pdf (971.08 KB)

Human and climatic influences on wildfires ignited by recreational activities in national forests in Washington, Oregon, and California. Environmental Research Communications. 2023;5.
Jenkins_2023_Environ._Res._Commun._5_095002.pdf (1.19 MB)
. 
Identifying building locations in the wildland–urban interface before and after fires with convolutional neural networks. International Journal of Wildland Fire. 2023.
. Identifying opportunity hot spots for reducing the risk of wildfire-caused carbon loss in western US conifer forests. Environmental Research Letters. 2023;18.
Peeler_2023_Environ._Res._Lett._18_094040.pdf (2.72 MB)

Lizards' response to the sound of fire is modified by fire history. Animal Behaviour. 2023;196:91-102.
1-s2.0-S0003347222003207-main.pdf (1.46 MB)
. 
Mesic mixed-conifer forests are resilient to both historical high-severity fire and contemporary reburns in the US Northern Rocky Mountains. Forest Ecology and Management. 2023;545.
Metrics and Considerations for Evaluating How Forest Treatments Alter Wildfire Behavior and Effects. Journal of Forestry. 2023:1-18.
Metrics and considerations for eval forest treatments.pdf (1.47 MB)

Metrics and Considerations for Evaluating How Forest Treatments Alter Wildfire Behavior and Effects. Journal of Forestry. 2023:1-18.
Metrics and considerations for eval forest treatments.pdf (1.47 MB)

Multiple Stories, Multiple Marginalities: The Labor-Intensive Forest and Fire Stewardship Workforce in Oregon. Fire. 2023;6(7):268.
fire-06-00268.pdf (317.97 KB)
. 
Proposing a Governance Model for Environmental Crises. Land. 2023;12(3). Available at: https://www.mdpi.com/2073-445X/12/3/597.
Proposing a Governance Model for Environmental Crises.pdf (328.05 KB)
