Publications Library
ArcFuels: Integrating Wildfire Models and Risk Analysis into Landscape Fuels Management. Joint Fire Science Program; 2009:11. Available at: http://www.firescience.gov/projects/briefs/03-4-1-04_FSBrief43.pdf.
Advancing effects analysis for integrated, large-scale wildfire risk assessment. Environmental Monitoring and Assessment. 2011;179:23. Available at: http://www.fs.fed.us/rm/pubs_other/rmrs_2011_thompson_m003.pdf.
. Evaluating Soil Risks Associated With Severe Wildfire and Ground-Based Logging. Portland, OR: US Department of Agriculture, Forest Service, Pacific Northwest Research Station; 2011:27. Available at: http://www.fs.fed.us/pnw/pubs/pnw_gtr840.pdf.
. Reducing hazardous fuels on nonindustrial private forests: factors influencing landowner decisions. Journal of Forestry. 2011;(July/August):7. Fischer_2011_JoF_factorsinNIPFhazfuelred.pdf (310.18 KB)
. Responding to Climate Change in National Forests: A Guidebook for Developing Adaptation Options. Portland, OR: US Department of Agriculture, Forest Service, Pacific Northwest Research Station; 2011:109. Available at: http://www.fs.fed.us/pnw/pubs/pnw_gtr855.pdf.
Comparative Hazard Assessment for Protected Species in a Fire-Prone Landscape. Forest Ecology and Management. 2012;277:10. Available at: http://ir.library.oregonstate.edu/xmlui/bitstream/handle/1957/31588/BaileyJohnForestryComparativeHazardAssessment.pdf?sequence=1.
. Estimation of Wildfire Size and Risk Changes Due to Fuels Treatments. International Journal of Wildland Fire. 2012:11. Available at: http://www.fs.fed.us/rm/pubs_other/rmrs_2012_cochrane_m001.pdf.
A Review of Recent Advances in Risk Analysis for Wildfire Management. International Journal of Wildland Fire. 2012:14.
. Risk and cooperation: managing hazardous fuel in mixed ownership landscapes. Environmental Management. 2012;49.
. Wildfire exposure to analysis on the national forests in the Pacific Northwest, USA. Society for Risk Analysis. 2012:21.
. Living in a tinderbox: wildfire risk perceptions and mitigating behaviors. International Journal of Wildland Fire. 2013;On-line early.
. Modelling conditional burn probability patterns for large wildland fires. International Journal of Wildland Fire. 2013.
. Optimising fuel treatments over time and space. International Journal of Wildland Fire. 2013;On-line early.
. How risk management can prevent future wildfire disasters in the wildland-urban interface. USDA Forest Service, Rocky Mountain Research Station; 2014. Available at: www.pnas.org/cgi/doi/10.1073/pnas.1315088111. PNAS Calkin Final.pdf (686.46 KB)
. Mapping day-of-burning with coarse-resolution satellite fire-detection data. International Journal of Wildland Fire. 2014;On-line early.
. Catching Fire? Social Interactions, Beliefs, and Wildfire Risk Mitigation Behaviors Society & Natural Resources. 2015;28(8).
. An empirical wildfire risk analysis: the probability of a fire spreading to the urban interface in Sydney, Australia International Journal of Wildland Fire. 2015;Online early.
. . Assessing Landscape Vulnerability to Wildfire in the USA Current Forestry Reports. 2016;2(3).
. Is seeing believing? Perceptions of wildfire risk over time Risk Analysis. 2016;36(4).
. Progress in wilderness fire science: Embracing complexity Journal of Forestry. 2016;114(3).
. Risk terminology primer: Basic principles and a glossary for the wildland fire management community. ( ). Fort Collins: US Department of Agriculture, Forest Service, Rocky Mountain Research Station; 2016:13 p. Available at: http://www.treesearch.fs.fed.us/pubs/50912.
. An empirical machine learning method for predicting potential fire control locations for pre-fire planning and operational fire management International Journal of Wildland Fire. 2017;26(7).
. A review of challenges to determining and demonstrating efficiency of large fire management International Journal of Wildland Fire. 2017;26(7).
. Rethinking the wildland fire management system Journal of Forestry. 2018;fvy020.
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