displaying 1341 - 1350 results in total 4589
McGrattan, K. B.; Stroup, D. W.
view article (1.0)Large Eddy Simulations of Sprinkler, Vent and Draft Curtain Performance.National Institute of Standards and Technology, Gaithersburg, MDFire Suppression and Detection Research Application Symposium. Research and Practice: Bridging the Gap. Proceedings. National Fire Protection Research Foundation. February 12-14, 1997, Orlando, FL, 59-68 p., 1997Packham, D.
view article (1.0)Fire Behavior Prediction: Information in Anticipation, Through Coupled Meso-Meteorological Models.Monash Univ., AustraliaPaper 10Paper 10Fire Information for the 21st Century. inFIRE (international network for Fire Information and Reference Exchange. Conference Proceedings. May 4-8, 1998, Melbourne, Australia, 10/1-11 p., 1998Carrier, G. F.; Fendell, F. E.; Fink, S. F., IV
view article (1.0)Air Dilution, Under Calm, of Spreading Dense Vapor From an Instantaneous Spill of Volatile Liquid.TRW Space and Electronics Group, Redondo Beach, CACombustion and Flame, Vol. 114, No. 1/2, 178-191, July 1998Yuen, R. K. K.; Lo, S. M.; Yeoh, G. H.
view article (1.0)Heat Isolation Scenario for a Double Fire Shutter System.City University of Hong Kong, Kowloon Tong; Commonwealth Scientific and Industrial Research Organization, Melbourne, AustraliaJournal of Applied Fire Science, Vol. 7, No. 2, 129-144, 1997/1998Kellogg, D. S.; Waymack, B. E.; McRae, D. D.; Chen, P.; Dwyer, R. W.
view article (1.0)Initiation of Smoldering Combustion in Cellulosic Fabrics.Philip Morris U.S.A., Richmond, VAJournal of Fire Sciences, Vol. 16, No. 2, 90-104, March/April 1998Atreya, A.; Agrawal, S.
view article (1.0)Effect of Radiative Heat Loss on Diffusion Flames in Quiescent Microgravity Atmosphere.University of Michigan, Ann ArborCombustion and Flame, Vol. 115, No. 3, 372-382, November 1998National Aeronautics and Space Administration, Washington, DC; National Science Foundation, Washington, DC,Kazakov, A.; Frenklach, M.
view article (1.0)Dynamic Modeling of Soot Particle Coagulation and Aggregation: Implementation With the Method of Moments and Application to High-Pressure Laminar Premixed Flames.University of Wisconsin-Madison, Madison; California Univ., BerkeleyCombustion and Flame, Vol. 114, No. 3/4, 484-501, August/September 1998Figliola, R. S.
view article (1.0)Active-Film Heat Flux Sensors. Appendix D. Overheads From Summary Presentations by Gauge Manufacturers and Designers.Clemson Univ., SCNIST/NSF Workshop on Heat Flux Transducers Calibration. Final Report. Proceedings. January 23-24, 1995, Gaithersburg, MD, D/1-4 p., 1995Khalturinskij, N. A.; Reshetnikov, I. S.; Yablokova, M. Y.; Rudakova, T. A.; Svistunov, V. S.
view article (1.0)Microkinetics of High-Temperature Pyrolysis.Semenov Institute of Chemical Physics, Moscow, Russia; Institute of Synthetic Polymeric Materials, Moscow, RussiaFire and Materials, Vol. 22, No. 2, 47-54, March/April 1998Numajiri, F.; Furukawa, K.
view article (1.0)Short Communication: Mathematical Expression of Heat Release Rate Curve and Proposal of 'Burning Index'.Japan Electric CableTechnology Center, Shizuoka, JapanFire and Materials, Vol. 22, No. 1, 39-42, January/February 1998