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2023
Albores IS, Buchholz RR, Ortega I, et al. Continental-scale Atmospheric Impacts of the 2020 Western U.S. Wildfires. Atmospheric Environment. 2023;294.PDF icon Continental-scale Atmospheric Impacts of the 2020 Western U.S. Wildfires.pdf (4.34 MB)
McDanold JS, Linn RR, Jonko AK, et al. 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.
McDanold JS, Linn RR, Jonko AK, et al. 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.
Ott JE, Kilkenny FF, Jain TB. Fuel treatment effectiveness at the landscape scale: a systematic review of simulation studies comparing treatment scenarios in North America. Fire Ecology. 2023;19. Available at: https://fireecology.springeropen.com/articles/10.1186/s42408-022-00163-2.PDF icon Fuel treatment effectiveness at the landscape scale: a systematic review of simulation studies comparing treatment scenarios in North America.pdf (5.01 MB)
Kieta KA, Owens PN, Petticrew EL. Post-wildfire contamination of soils and sediments by polycyclic aromatic hydrocarbons in north-central British Columbia, Canada. International Journal of Wildland Fire. 2023.PDF icon Post-wildfire contamination of soils and sediments by polycyclic aromatic hydrocarbons in north-central British Columbia, Canada.pdf (4.19 MB)
Dahl KA, Abatzoglou JT, Phillips CA, et al. Quantifying the contribution of major carbon producers to increases in vapor pressure deficit and burned area in western US and southwestern Canadian forests. Environmental Research Letters. 2023;18.PDF icon Quantifying the contribution of major carbon producers to increases in vapor pressure deficit and burned area in western US and southwestern Canadian forests .pdf (6.65 MB)
Pau M, Gauthier S, Boulanger Y, et al. Response of forest productivity to changes in growth and fire regime due to climate change. Canadian Journal of Forest Research. 2023.PDF icon Response of forest productivity to changes in growth and fire regime due to climate change.pdf (3.98 MB)
Chuvieco E, Yebra M, Martino S, et al. Towards an Integrated Approach to Wildfire Risk Assessment: When, Where, What and How May the Landscapes Burn. Fire. 2023;6.PDF icon fire-06-00215-v2.pdf (9.73 MB)
Chuvieco E, Yebra M, Martino S, et al. Towards an Integrated Approach to Wildfire Risk Assessment: When, Where, What and How May the Landscapes Burn. Fire. 2023;6.PDF icon fire-06-00215-v2.pdf (9.73 MB)
Krueger ES, Levi MR, Achieng KO, et al. 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).PDF icon WF22056.pdf (3.84 MB)
2021
Ellison A, Huber-Stearns H, Frederick SS, et al. Perceptions of wildland fire smoke. Northwest Fire Science Consortium; 2021. Available at: http://ewp.uoregon.edu/sites/ewp.uoregon.edu/files/WP_103.pdf.PDF icon WP_103.pdf (7.73 MB)
2020
Owen SM, Sieg CH, Fulé PZ, et al. Persistent effects of fire severity on ponderosa pine regeneration niches and seedling growth. Forest Ecology and Management. 2020;477.PDF icon rmrs_2020_owen_s001.pdf (2.07 MB)
Hiers JK, al. et. Prescribed fire science: the case for a refined research agenda O'Brien JJ, ed. Fire Ecology. 2020;16(11). Available at: https://fireecology.springeropen.com/articles/10.1186/s42408-020-0070-8.
Harley GL, Heyerdahl EK, Johnston JD, Olson DL. Riparian and adjacent upland forests burned synchronously during dry years in eastern Oregon (1650-1900 CE), USA. International Journal of Wildland Fire. 2020;29(7).
Dunn CJ. Wildfire risk science facilitates adaptation of fire-prone social-ecological systems to the new fire reality O'Connor CD, ed. Environmental Research Letters. 2020;15(2). Available at: https://iopscience.iop.org/article/10.1088/1748-9326/ab6498.

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