Publications Library

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2015
Dunn CJ. Modeling the direct effect of salvage logging on long-term temporal fuel dynamics in dry-mixed conifer forests Bailey JD, ed. Forest Ecology and Management. 2015;341.
McKenzie D. Modeling wildfire regimes in forest landscapes: abstracting a complex reality. In: Perera AH, ed. Simulation modeling of forest landscape disturbances. Simulation modeling of forest landscape disturbances. Switzerland: Springer International Publishing; 2015:73-92. Available at: https://www.treesearch.fs.fed.us/pubs/53095.
Hartter J. Modelling Associations between Public Understanding, Engagement and Forest Conditions in the Inland Northwest, USA Stevens FR, ed. PLOS ONE. 2015;10(2).
Underwood E. Models predict longer, deeper U.S. droughts. Science. 2015;13.
2014
Huffman MR. Making a World of Difference in Fire and Climate Change. Fire Ecology . 2014;10(3).
Six DL. Management for Mountain Pine Beetle Outbreak Suppression: Does Relevant Science Support Current Policy? Biber E, ed. Forests. 2014;5(1).
Shive KL. Managing burned landscapes: Evaluating future management strategies for resilient forests under a warming climate Fule PZ, ed. International Journal of Wildland Fire. 2014;23.
Parks SA. Mapping day-of-burning with coarse-resolution satellite fire-detection data. International Journal of Wildland Fire. 2014;On-line early.
Veraverbeke S, Sedano F, Hook SJ, et al. Mapping the daily progression of large wildland fires using MODIS active fire data. International Journal of Wildland Fire. 2014;On-line early.
Sullivan EA, McDonald AG. Mathematical model and sensor development for measuring energy transfer from wildland fires. International Journal of Wildland Fire. 2014;On-line early.
Heyerdahl EK, Loehman RA, Falk DA. Mixed-severity fire in lodgepole-dominated forests: Are historical regimes sustainable on Oregon's Pumice Plateau, USA?. Canadian Journal of Forest Research. 2014;On-line early. Available at: http://www.nrcresearchpress.com/doi/abs/10.1139/cjfr-2013-0413.PDF icon cjfr-2013-0413.pdf (2.25 MB)
French NHF. Modeling Regional-Scale Wildland Fire Emissions with the Wildland Fire Emissions Information System McKenzie D, ed. Earth Interactions. 2014;18.PDF icon ei-d-14-0002%2E1.pdf (1.8 MB)
Schiks TJ. Modifying the Canadian Fine Fuel Moisture Code for masticated surface fuels Wotton BM, ed. International Journal of Wildland Fire. 2014;Online early. Available at: http://dx.doi.org/10.1071/WF14041.
2013
Larson AJ, Belote TR, Williamson MA, Aplet GH. Making monitoring count: project design for active adaptive management. Journal of Forestry. 2013;111(5):9.PDF icon s9.pdf (693.62 KB)
Link SO. Management of cheatgrass fuel loading in the shrub-steppe. 2013.Office presentation icon link5-29-13-1.ppt (7.9 MB)
Stephens SL, Agee JK, Fule PZ, et al. Managing Forests and Fire in Changing Climates. AAAS; 2013.PDF icon ScienceVol342Stephens.pdf (613.65 KB)
Kline JD, Kerns BK, Day MA, Hammer RB. Mapping multiple forest threats in the northwestern United States. Journal of Forestry. 2013;111(3).
Anon. The merits of prescribed fire outweigh potential carbon emission effects.; 2013.PDF icon AFEs-Prescribed-Fire-Position-Paper-2013.pdf (2.71 MB)
Ziesler PS, Rideout DB, Reich R. Modelling conditional burn probability patterns for large wildland fires. International Journal of Wildland Fire. 2013.
Wright CS. Models for predicting fuel consumption in sage-brush-dominated ecosystems. Rangeland ecology and management. 2013;66(3):12.

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