FireDOC Search

displaying 31 - 38 results in total 38

  • Koo, E.; Pagni, P.; Woycheese, J.; Stephens, S.; Weise, D.; Huff, J.
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    Simple Physical Model for Forest Fire Spread Rate.
    California Univ., Berkeley; Worcester Polytechnic Inst., MA; Pacific Southwest Research Station USDA Forest Service, Riverside, CA
    Fire Safety Science. Proceedings. Eighth (8th) International Symposium. International Association for Fire Safety Science (IAFSS). September 18-23, 2005, Intl. Assoc. for Fire Safety Science, Boston, MA, Beijing, China, Gottuk, D. T.; Lattimer, B. Y., Editors, 851-862 p., 2005

  • Catchpole, E. A.; Alexander, M. E.; Gill, A. M.
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    Elliptical-Fire Perimeter- and Area-Intensity Distributions.
    New South Wales Univ., Canberra, Australia; Australian National Univ., Canberra, Australia; Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia
    Canadian Journal of Forest Research, Vol. 22, No. 7, 968-972, July 1992

  • Pitts, W. M.
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    Ignition of Cellulosic Fuels by Heated and Radiative Surfaces.
    National Institute of Standards and Technology, Gaithersburg, MD
    ['NIST Technical Note 1481', 'NIST TN 1481']
    NIST Technical Note 1481; NIST TN 1481
    March 2007
    105 p.

  • Sullivan, A. L.
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    Convective Froude Number and Byram's Energy Criterion of Australian Experimental Grassland Fires.
    Australian National University, Canberra, ACT 0200, Australia
    ['Volume 31', 'Part 2']
    Volume 31; Part 2
    Combustion Institute, Symposium (International) on Combustion, 31st. Proceedings. Volume 31. Part 2. August 5-11, 2006, Combustion Institute, Pittsburgh, PA, Heidelberg, Germany, Barlow, R. S.; Sick, V.; Glarborg, P.; Yetter, R. A., Editors, 2557-2564 p., 2007

  • Rehm, R. G.
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    Effects of Winds From Burning Structures on Ground-Fire Propagation at the Wildland-Urban Interface.
    National Institute of Standards and Technology, Gaithersburg, MD
    Combustion Theory and Modelling, Vol. 12, No. 3, 477-496, June 2008
    National Institute of Standards and Technology, Gaithersburg, MD,

  • Morvan, D.; Meradji, S.; Accary, G.
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    Physical Modeling of Fire Spread in Grasslands.
    UNIMECA Technopôle de Château Gombert, 60 rue Joliot Curie, 13453 Marseille cedex 13, France; UMR CNRS 6181 IMT La Jetée 38 rue Joliot Curie 13451 Marseille cedex 13, France; Université Saint Esprit de Kaslik, BP 446, Jounieh, Lebanon
    Fire Safety Journal, Vol. 44, No. 1, 50-61, January 2009

  • Dold, J.; Zinoviev, A.; Weber, R.
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    Nonlocal Flow Effects in Bushfire Spread Rates.
    Manchester Univ., M60 1QD, UK; UNSW at ADFA, Canberra 2600, Australia
    Forest Fire Research, V International Conference. Proceedings. Fire Behavior. Poster Presentations. November 27-30, 1006, Coimbra, Portugal, Viegas, D. X., Editors, 1-8 p., 2006

  • Mell, W. E.; Jenkins, M. A.; Gould, J.; Cheney, P.
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    Physics-Based Approach to Modeling Grassland Fires.
    National Institute of Standards and Technology, Gaithersburg, MD; York University, Toronto, ON M3J 1P3, Canada; Commonwealth Scientific and Industrial Research Organization, Melbourne, Australia; Bushfire Cooperative Research Centre, East Melbourne, Vic. 3002, Australia
    International Journal of Wildland Fire, Vol. 16, No. 1, 1-22, 2007
    Department of Agriculture, Washington, DC,