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Landscape-scale quantification of fire-induced change in canopy cover following mountain pine beetle outbreak and timber harvest

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Publication Date

Citation

T. Ryan McCarley, Crystal A. Kolden, Nicole M. Vaillant, Andrew T. Hudak, Alistair M.S. Smith, and Jason R Kreitler, 2017-05-01, Landscape-scale quantification of fire-induced change in canopy cover following mountain pine beetle outbreak and timber harvest: Forest Ecology and Management, v. 391, 164–175 p.

Summary

Abstract (from http://www.sciencedirect.com/science/article/pii/S0378112716308532): Across the western United States, the three primary drivers of tree mortality and carbon balance are bark beetles, timber harvest, and wildfire. While these agents of forest change frequently overlap, uncertainty remains regarding their interactions and influence on specific subsequent fire effects such as change in canopy cover. Acquisition of pre- and post-fire Light Detection and Ranging (LiDAR) data on the 2012 Pole Creek Fire in central Oregon provided an opportunity to isolate and quantify fire effects coincident with specific agents of change. This study characterizes the influence of pre-fire mountain pine beetle (MPB; Dendroctonus ponderosae) [...]

Contacts

Attached Files

Communities

  • National and Regional Climate Adaptation Science Centers
  • Northwest CASC

Tags

Categories
Organization
Drought, Fire and Extreme Weather
Landscapes
Science Themes
NCCWSC Science Themes
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Additional Information

Citation Extension

journalForest Ecology and Management
parts
typeVolume
value391
typePages
value164–175

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