displaying 251 - 260 results in total 374
Saastamoninen, J. J.; Taipale, R.; Horttanainen, M.; Sarkomaa, P.
view article (1.0)Propagation of the Ignition Front in Beds of Wood Particles.VTT Energy, Jyvdaskyla, FinlandCombustion and Flame, Vol. 123, No. 1/2, 214-226, October 2000Gagnon, R. M.; Mosman, T.
view article (1.0)Smoke-Detection Evaluation in Enclosures With High-Velocity Airflow.Gagnon Engineering; CCG ConsultantsFire Protection Engineering, No. 8, 25,28-30, Fall 2000Hiwatashi, K.; Kasahara, I.; Morikawa, Y.; Harimoto, K.; Watanabe, Y.; Yamada, T.; Matsushima, S.
view article (1.0)Movement of Smoke Under Soffit Against an Airflow.Taisei Corp., Yokohama, Japan; National Research Institute of Fire and Disaster, Tokyo, JapanU.S./Japan Government Cooperative Program on Natural Resources (UJNR). Fire Research and Safety. 14th Joint Panel Meeting. Proceedings. May 28-June 3, 1998, ['Tsukuba, Japan', 'Tokyo, Japan'], 56-64 p., 1998Hall, T.; Anderson, G.
view article (1.0)Figuring Flow.Mechanical Engineering, Vol. 122, No. 2, 72-73, February 2000Schifiliti, R.
view article (1.0)Fire Detection Modeling: The Research-Application Gap.R.P. Schifiliti Associates, Inc., Reading, PANIST SP 965NIST SP 965
February 2001International Conference on Automatic Fire Detection "AUBE '01", 12th. Proceedings. National Institute of Standards and Technology. March 25-28, 2001, Gaithersburg, MD, Beall, K.; Grosshandler, W. L.; Luck, H., Editors, 529-560 p., 2001Persily, A. K.; Ivy, E. M.
view article (1.0)Input Data for Multizone Airflow and IAQ Analysis.National Institute of Standards and Technology, Gaithersburg, MDNISTIR 6585NISTIR 6585
January 2001
36 p.Chew, M. Y. L.; Lim, S. H.
view article (1.0)Computational Fluid Dynamic Simulation Study of a Smoke Extract System in an Underground Transit Station.National University of SingaporeJournal of Applied Fire Science, Vol. 9, No. 3, 251-273, 1999-2000Olson, S. L.; Kashiwagi, T.; Fujita, O.; Kikuchi, M.; Ito, K.
view article (1.0)Experimental Observations of Spot Radiative Ignition and Subsequent Three-Dimensional Flame Spread Over Thin Cellulose Fuels.NASA John H. Glenn Research Center at Lewis Field, Cleveland, OH; National Institute of Standards and Technology, Gaithersburg, MD; Hokkaido Univ., JapanCombustion and Flame, Vol. 125, No. 1/2, 852-864, April 2001National Aeronautics and Space Administration, Washington, DC,Huang, J.; Bruining, J.; Wolf, K. H. A. A.
view article (1.0)Modeling of Gas Flow and Temperature Fields in Underground Coal Fires.Chinese Academy of Sciences, China; Delft University of Technology, The NetherlandsFire Safety Journal, Vol. 36, No. 5, 477-489, July 2001Chew, M. Y. L.; Liew, P. H.
view article (1.0)Smoke Movement in Atrium Buildings.National University of SingaporeInternational Journal on Engineering Performance-Based Fire Codes, Vol. 2, No. 2, 68-76, 2000