Register      Login
International Journal of Wildland Fire International Journal of Wildland Fire Society
Journal of the International Association of Wildland Fire
FOREWORD

Wildland–urban interface fire behaviour and fire modelling in live fuels

David R. Weise A and B. Mike Wotton B
+ Author Affiliations
- Author Affiliations

A Forest Fire Laboratory, Pacific Southwest Research Station, USDA Forest Service, 4955 Canyon Crest Driver, Riverside, CA 92507, USA. Email: dweise@fs.fed.us

B Great Lakes Forestry Centre, Canadian Forest Service, 1219 Queen Street East, Sault Ste. Marie, ON, P6A 2E5, Canada. Email: mwotton@nrcan.gc.ca

International Journal of Wildland Fire 19(2) 149-152 https://doi.org/10.1071/WF09107
Published: 31 March 2010


References


Butler BW, Cook W (2007) The fire environment – innovations, management, and policy; conference proceedings. USDA Forest Service, Rocky Mountain Research Station, Proceedings RMRS-P-46CD. (Fort Collins, CO) Available at http://treesearch.fs.fed.us/pubs/28545 [Verified 25 June 2009]

Cary G, Lindenmayer D, Dovers S (Eds) (2003) ‘Australia Burning: Fire Ecology, Policy and Management Issues.’ (CSIRO Publishing: Melbourne)

Chandler C, Cheney P, Thomas P, Trabaud L, Williams D (1983) ‘Fire in Forestry. Vol. I. Forest Fire Behavior and Effects.’ (Wiley: New York)

Chandler C, Cheney P, Thomas P, Trabaud L, Williams D (1991) ‘Fire in Forestry: Vol. II. Forest Fire Management and Organization.’ (Krieger Publishing Company: Malabar, FL)

Clark RE, Hope AS, Tarantola S, Gatelli D, Dennison PE , Moritz MA (2008) Sensitivity analysis of a fire spread model in a chaparral landscape. Fire Ecology  4, 1–13.
Crossref | GoogleScholarGoogle Scholar | Cohen JD, Finney MA, Yedinak KM (2006) Active spreading crown fire characteristics: implications for modeling. In ‘Proceedings of the 5th International Conference on Forest Fire Research’, 27–30 November 2006, Figueira da Foz, Portugal. (Ed. DX Viegas) (CD-ROM)

Committee on Fire Research (1969) ‘A proposed national fire research program.’ (National Academy of Sciences: Washington, DC) Available at http://books.google.com/books?id=zGArAAAAYAAJ&printsec=frontcover&dq=proposed+national+fire+research+program&as_brr=1 [Verified 25 June 2009]

Davis JB (1990) The wildland–urban interface: paradise or battleground? Journal of Forestry  88, 26–31.
Finney MA (1998) FARSITE: Fire Area Simulator-Model development and evaluation. USDA Forest Service, Rocky Mountain Research Station, Research Paper RMRS-RP-4. (Ogden, UT) Available at http://www.fs.fed.us/rm/pubs/rmrs_rp004.pdf [Verified 16 March 2010]

Finney MA, Cohen JD, Grenfell IC , Yedinak KM (2010) An examination of fire spread thresholds in discontinuous fuel beds. International Journal of Wildland Fire  19, 163–170.
Crossref | GoogleScholarGoogle Scholar | Fons WL (1940) Analytical considerations of model forest fires. MSc thesis, University of California, Berkeley.

Gisborne HT (1936) Measuring fire weather and forest inflammability. USDA Circular No. 398. (Washington, DC)

Jolly WM (2007) Sensitivity of a surface fire spread model and associated fire behaviour fuel models to changes in live fuel moisture. International Journal of Wildland Fire  16, 503–509.
Crossref | GoogleScholarGoogle Scholar | Koo E, Pagni P, Woycheese J, Stephens S, Weise D, Huff J (2005) A simple physical model for forest fire spread. In ‘Fire Safety Science – Proceedings of the Eighth International Symposium’, 18–23 September 2005, Tsinghua University, Beijing, China. (Eds DT Gottuk, BY Lattimer) pp. 851–862. (International Association of Fire Safety Science)

Koo E, Pagni P, Linn R (2007) Using FIRETEC to describe firebrand behaviour in wildfires. In ‘Tenth International Conference on Fire and Materials’. (Interscience Communications, London)

Koo E, Pagni P, Weise DR, Woycheese J, Firebrands and spotting ignition in large-scale fires. International Journal of Wildland Fire, in press. doi:10.1071/WF07119

Linn R, Reisner J, Colman JJ , Winterkamp J (2002) Studying wildfire behavior using FIRETEC. International Journal of Wildland Fire  11, 233–246.
Crossref | GoogleScholarGoogle Scholar | Meroney RN (2007) Fires in porous media: natural and urban canopies. In ‘Flow and transport processes with complex obstructions: Applications to cities, vegetative canopies and industry’. (Eds YA Gayev, JCR Hunt) pp. 271–310. (Springer: Dordrecht, the Netherlands)

Moreno JM, Oechel WC (Eds) (1994) ‘The Role of Fire in Mediterranean-type Ecosystems.’ Ecological Studies, vol. 107. (Springer-Verlag: New York)

Peterson SH, Morais ME, Carlson JM, Dennison PE, Roberts DA, Moritz MA, Weise DR (2009) Using HFire for spatial modeling of fire in shrublands. USDA Forest Service, Pacific Southwest Research Station, Research Paper PSW-RP-259. Available at http://treesearch.fs.fed.us/pubs/31914 [Verified 25 June 2009]

Pickett BM, Isackson C, Wunder R, Fletcher TH, Butler BW , Weise DR (2010) Experimental measurements during combustion of moist individual foliage samples. International Journal of Wildland Fire  19, 153–162.
Crossref | GoogleScholarGoogle Scholar | Rothermel RC (1972) A mathematical model for predicting fire spread in wildland fuels. USDA Forest Service, Intermountain Forest and Range Experiment Station, Research Paper INT-115. (Ogden, UT)

Sommers WT (2008) The emergence of the wildland–urban interface concept. Forest History Today F08, 12–18. Available at http://www.foresthistory.org/Publications/FHT/FHTFall2008/Sommers.pdf [Verified 25 June 2009]

Stephens SL, Weise DR, Fry DL, Keiffer RJ, Dawson J, Koo E, Potts J , Pagni PJ (2008) Measuring the rate of spread of chaparral prescribed fires in northern California. Fire Ecology  4, 74–86.
Crossref | GoogleScholarGoogle Scholar | Williams FA (1969) ‘Scaling mass fires.’ Fire Research Abstracts and Reviews 11, 1–23. (Committee on Fire Research, National Academy of Sciences: Washington, DC)

Williams FA (2008) Modeling of combustion phenomena. In ‘Progress in Scale Modeling’. (Ed. K Saito) pp. 179–195. (Springer)

Wilson R (1962) The Los Angeles Conflagration of 1961 – the devil wind and wood shingles. In ‘NFPA Quarterly’. pp. 242–289. (National Fire Protection Association: Boston, MA)

Wright RN (2003) Building and fire research at NBS/NIST 1975–2000. National Institute of Standards and Technology, Building Science Series 179. (Gaithersburg, MD) Available at http://www2.bfrl.nist.gov/info/bfrl%5Fhistory/ [Verified 25 June 2009]

Yedinak K, Cohen J, Forthofer J , Finney M (2010) An examination of flame shape related to convection heat transfer in deep-fuel beds. International Journal of Wildland Fire  19, 171–178.
Crossref | GoogleScholarGoogle Scholar |

Zhou X, Mahalingam S , Weise D (2007) Experimental study and large eddy simulation of effect of terrain slope on marginal burning in shrub fuel beds. Proceedings of the Combustion Institute  31, 2547–2555.
Crossref | GoogleScholarGoogle Scholar |