Fire risk assessment in a secondary forest with a floor dominated by ferns in the dry granite region of Japan
Author:
Affiliation:
1. Graduate School of Agriculture, Hokkaido University
2. Center for Sustainability Science, Hokkaido University
3. Environmental Geomatics Laboratory, Rakuno University
Publisher
The Japanese Society of Revegetation Technology
Link
https://www.jstage.jst.go.jp/article/jjsrt/40/1/40_120/_pdf
Reference13 articles.
1. 1) Duncan, B. W., Shao, G. and Adrian, F. W. (2009) Delineating a managed fire regime and exploring its relationship to the natural fire regime in East Central Florida, USA: a remote sensing and GIS approach. Forest Ecology and Management, 258(2): 132-145.
2. 2) Falkowski, M. J., Gessler, P. E., Morgan, P., Hudak, A. T. and Smith, A. (2005) Characterizing and mapping forest fire fuels using ASTER imagery and gradient modeling. Forest Ecology and Management, 217(2): 129-146.
3. 5) Lavoie, M., Starr, G., Mack, M. C., Martin, T. A. and Gholz, H. L. (2010) Effects of a prescribed fire on understory vegetation, carbon pools, and soil nutrients in a longleaf pine-slash pine forest in Florida. Natural Areas Journal, 30(1): 82-94.
4. 6) Miller, C. and Urban, D. L. (2000) Urban Connectivity of forest fuels and surface fire regimes. Landscape Ecology 15: 145.154.
5. 7) Morimoto, J., Hirabayashi, K., Mizumoto, E., Katsuno, T. and Morimoto, Y. (2011) Validation of treatments for conservation of native rhododendrons, the symbol of Satoyama, in the dry granite region of Japan. Landscape and Ecological Engineering, 7(2): 185-193.
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