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Type: Journal Article
Author(s): Jay D. Miller; Shelley R. Danzer; Joseph M. Watts; Sheridan Stone; Stephen R. Yool
Publication Date: 2003

Geospatial information technology is changing the nature of fire mapping science and management. Geographic information systems (GIS) and global positioning system technology coupled with remotely sensed data provide powerful tools for mapping, assessing, and understanding the complex spatial phenomena of wildland fuels and fire hazard. The effectiveness of these technologies for fire management still depends on good baseline fuels data since techniques have yet to be developed to directly interrogate understory fuels with remotely sensed data. We couple field data collections with GIS, remote sensing, and hierarchical clustering to characterize and map the variability of wildland fuels within and across vegetation types. One hundred fifty six fuel plots were sampled in eight vegetation types ranging in elevation from 1150 to 2600 m surrounding a Madrean 'sky island' mountain range in the southwestern US. Fuel plots within individual vegetation types were divided into classes representing various stages of structural development with unique fuel load characteristics using a hierarchical clustering method. Two Landsat satellite images were then classified into vegetation/fuel classes using a hybrid unsupervised/supervised approach. A back-classification accuracy assessment, which uses the same pixels to test as used to train the classifier, produced an overall Kappa of 50% for the vegetation/fuels map. The map with fuel classes within vegetation type collapsed into single classes was verified with an independent dataset, yielding an overall Kappa of 80%. © 2003 Elesier Science Ltd. All rights reserved.

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Citation: Miller, J. D., S. R. Danzer, J. M. Watts, S. Stone, and S. R. Yool. 2003. Cluster analysis of structural stage classes to map wildland fuels in a Madrean ecosystem. Journal of Environmental Management 68(3):239-252.

Cataloging Information

Topics:
Regions:
Keywords:
  • Arizona
  • coniferous forests
  • deserts
  • duff
  • elevation
  • fire management
  • forest management
  • fuel management
  • GIS - geographic information system
  • GPS - global positioning system
  • herbaceous vegetation
  • hierarchal cluster analysis
  • litter
  • Madrean habitats
  • Madrean vegetation
  • military lands
  • montane forests
  • population density
  • range management
  • remote sensing
  • remote sensing
  • scrub
  • shrublands
  • shrubs
  • size classes
  • sloping terrain
  • statistical analysis
  • structural stage
  • vegetation surveys
  • wildfires
  • wildland fuels
  • woody plants
Tall Timbers Record Number: 26999Location Status: Not in fileCall Number: Not in FileAbstract Status: Fair use, Okay, Reproduced by permission
Record Last Modified:
Record Maintained By: FRAMES Staff (https://www.frames.gov/contact)
FRAMES Record Number: 50399

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.