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Type: Journal Article
Author(s): Ellen Whitman; Enric Batllori; Marc-André Parisien; Carol L. Miller; Jonathan D. Coop; Meg A. Krawchuk; Geneva W. Chong; Sandra L. Haire
Publication Date: September 2015

Aim Studies of fire activity along environmental gradients have been undertaken, but the results of such studies have yet to be integrated with fire-regime analysis. We characterize fire-regime components along climate gradients and a gradient of human influence. Location We focus on a climatically diverse region of north-western North America extending from northern British Columbia, Canada, to northern Utah and Colorado, USA. Methods We used a multivariate framework to collapse 12 climatic variables into two major climate gradients and binned them into 73 discrete climate domains. We examined variation in fire-regime components (frequency, size, severity, seasonality and cause) across climate domains. Fire-regime attributes were compiled from existing databases and Landsat imagery for 1897 large fires. Relationships among the fire-regime components, climate gradients and human influence were examined through bivariate regressions. The unique contribution of human influence was also assessed. Results A primary climate gradient of temperature and summer precipitation and a secondary gradient of continentality and winter precipitation in the study area were identified. Fire occupied a distinct central region of such climate space, within which fire-regime components varied considerably. We identified significant interrelations between fire-regime components of fire size, frequency, burn severity and cause. The influence of humans was apparent in patterns of burn severity and ignition cause. Main conclusions Wildfire activity is highest where thermal and moisture gradients converge to promote fuel production, flammability and ignitions. Having linked fire-regime components to large-scale climate gradients, we show that fire regimes -- like the climate that controls them -- are a part of a continuum, expanding on models of varying constraints on fire activity. The observed relationships between fire-regime components, together with the distinct role of climatic and human influences, generate variation in biotic communities. Thus, future changes to climate may lead to ecological changes through altered fire regimes. © 2015 Her Majesty the Queen in Right of Canada 2015.

Citation: Whitman, E., E. Batllori, M.-A. Parisien, C. Miller, J. D. Coop, M. A. Krawchuk, G. W. Chong, and S. L. Haire. 2015. The climate space of fire regimes in north-western North America. Journal of Biogeography, v. 42, no. 9, p. 1736-1749. 10.1111/jbi.12533.

Cataloging Information

Topics:
Regions:
Keywords:
  • British Columbia
  • burn severity
  • Canada
  • Colorado
  • fire cause
  • fire frequency
  • fire frequency
  • fire intensity
  • fire management
  • fire regime
  • fire regimes
  • fire season
  • fire size
  • forest management
  • human influence
  • ignition
  • pyrogeography
  • remote sensing
  • season of fire
  • Utah
  • wildfire
  • wildfires
Tall Timbers Record Number: 32065Location Status: Not in fileCall Number: AvailableAbstract Status: Fair use, Okay, Reproduced by permission
Record Last Modified:
Record Maintained By: FRAMES Staff (https://www.frames.gov/contact)
FRAMES Record Number: 54372

This bibliographic record was either created or modified by Tall Timbers and is provided without charge to promote research and education in Fire Ecology. The E.V. Komarek Fire Ecology Database is the intellectual property of Tall Timbers.