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Found 928 results
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An Evaluation of Fire Regime Reconstruction Methods.; 2014.
doc.pdf (1.14 MB)
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Examining fire-prone forest landscapes as coupled human and natural systems Ecology and Society. 2014;19(3).
ES-2014-6584.pdf (2.12 MB)
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Fire and fuels. ( ).; 2014. Available at: http://www.fs.fed.us/psw/publications/documents/psw_gtr247/chapters/psw_gtr247_chapter4_1.pdf.
. Fire behavior in masticated fuels: A review. Forest Ecology and Management. 2014;314.
Fire severity and tree regeneration following bark beetle outbreaks: the role of outbreak stage and burning conditions Ecological Applications. 2014;24.
. Five-year legacy of wildfire and salvage logging impacts on nutrient runoff and aquatic plant, invertebrate, and fish productivity Ecohydrology. 2014;7.
. Fuel treatments and landform modify landscape patterns of burn severity in an extreme fire event Ecological Applications. 2014;24(3). Available at: http://www.fs.fed.us/pnw/pubs/journals/pnw_2014_prichard001.pdf.
. Historic Variability: Informing Restoration Strategies, Not Prescribing Targets. Journal of Sustainable Forestry. 2014;33.
. 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)
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Hydrologic and erosion responses to wildfire along the rangeland-xeric forest continuum in the western US: a review and model of hydrologic vulnerability. International Journal of Wildland Fire. 2014;On-line early.
. The influence of experimental wind disturbance on forest fuels and fire characteristics Forest Ecology and Management. 2014;330. Available at: http://www.srs.fs.usda.gov/pubs/46459.
. Integrating Social, Economic, and Ecological Values Across Large Landscapes. ( ).; 2014. Available at: http://www.treesearch.fs.fed.us/pubs/47219.
pnw_gtr896.pdf (8 MB)
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Is fire exclusion in mountain big sagebrush communities prudent? Soil nutrient, plant diversity and arthropod response to burning. International Journal of Wildland Fire. 2014;23(3).
. Landsat time series and lidar as predictors of live and dead basal area across five bark beetle-affected forests IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing. 2014;7(8). Available at: http://www.treesearch.fs.fed.us/pubs/49638.
. Landscape restoration of a forest with a historically mixed-severity fire regime: What was the historical landscape pattern of forest and openings?. Forest Ecology and Management. 2014;331.
FEM-HRV.pdf (934.26 KB)
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Large airtanker use and outcomes in suppressing wildland fires in the United States. International Journal of Wildland Fire. 2014;On-line early.
. . Making a World of Difference in Fire and Climate Change. Fire Ecology . 2014;10(3).
. Management for Mountain Pine Beetle Outbreak Suppression: Does Relevant Science Support Current Policy? Forests. 2014;5(1).
. Managing burned landscapes: Evaluating future management strategies for resilient forests under a warming climate International Journal of Wildland Fire. 2014;23.
. Mapping day-of-burning with coarse-resolution satellite fire-detection data. International Journal of Wildland Fire. 2014;On-line early.
. Mapping the daily progression of large wildland fires using MODIS active fire data. International Journal of Wildland Fire. 2014;On-line early.
Mathematical model and sensor development for measuring energy transfer from wildland fires. International Journal of Wildland Fire. 2014;On-line early.
. Modeling Regional-Scale Wildland Fire Emissions with the Wildland Fire Emissions Information System Earth Interactions. 2014;18.
ei-d-14-0002%2E1.pdf (1.8 MB)
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Modifying the Canadian Fine Fuel Moisture Code for masticated surface fuels International Journal of Wildland Fire. 2014;Online early. Available at: http://dx.doi.org/10.1071/WF14041.
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