FireDOC Search

displaying 671 - 680 results in total 690

  • Hetrick, T. M.; Rangwals, A. S.
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    Modified Hold Time Model for Total Flooding Fire Suppression.
    Exponent Failure Analysis Associates, Lisle, IL; Worcester Polytechnic Inst., MA
    Fire Safety Journal, Vol. 45, No. 1, 12-20, January 2010

  • Pastor, E.; Perez, Y.; Agueda, A.; Miralles, M.; Planas, E.
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    Pile Burning of Cutting Debris in Stands of Hazel (Corylus avellana): An Experimental Study of Smoldering Combustion Towards the Validation of a Burning Protocol.
    Universitat Politècnica de Catalunya, Diagonal 647, 08028 Barcelona, Catalonia, Spain; GRAF, Divisió Operativa de la DGPEIS, 08290 Cerdanyola del Vallès, Spain
    Fire Safety Journal, Vol. 45, No. 1, 69-81, January 2010

  • Tang, S.; Chernovsky, M. K.; Im, H. G.; Atreya, A.
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    Computational Study of Spherical Diffusion Flames in Microgravity With Gas Radiation. Part 1. Model Development and Validation.
    Michigan Univ., Ann Arbor
    Combustion and Flame, Vol. 157, No. 1, 118-126, January 2010

  • Lopes, N.; Real, P. V.; Simoes da Silva, L.; Franssen, J. M.
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    Numerical Modeling of Thin-Walled Stainless Steel Structural Elements in Case of Fire.
    University of Aveiro, 3810-193 Aveiro, Portugal; University of Coimbra, 3030 Coimbra, Portugal; University of Liege, Liege, Belgium
    Fire Technology, Vol. 46, No. 1, 91-108, January 2010

  • Dwaikat, M.; Kodur, V.
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    Effect of Location of Restraint on Fire Response of Steel Beams.
    Michigan State Univ., East Lansing
    Fire Technology, Vol. 46, No. 1, 109-128, January 2010

  • Chang, J. J.; Moss, P. J.; Dhakal, R. P.; Buchanan, A. H.
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    Effect of Aspect Ratio on Fire Resistance of Hollow Core Concrete Floors.
    Holmes Fire and Safety, Christchurch, 8144, New Zealand; University of Canterbury, Christchurch, New Zealand
    Fire Technology, Vol. 46, No. 1, 201-216, January 2010

  • Dwaikat, M. B.; Kodur, V. K. R.
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    Fire Induced Spalling in High Strength Concrete Beams.
    Michigan State Univ., East Lansing
    Fire Technology, Vol. 46, No. 1, 251-274, January 2010

  • Abad, A.; Adanez, J.; Garcia-Labiano, F.; deDiego, L. F.; Gayan, P.
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    Modeling of the Chemical-Looping Combustion of Methane Using a Cu-Based Oxygen-Carrier.
    Instituto de Carboquímica (CSIC), Miguel Luesma Castán 4, 50018 Zaragoza, Spain
    Combustion and Flame, Vol. 157, No. 3, 602-615, March 2010

  • Zhang, J.; Delichatsios, M.
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    Further Validation of a Numerical Model for Prediction of Pyrolysis of Polymer Nanocomposites in the Cone Calorimeter.
    University of Ulster, Newtownabbey, BT37 0QB, Northern Ireland, UK
    Fire Technology, Vol. 46, No. 2, 307-319, April 2010

  • Strelkova, M. I.; Safonov, A. A.; Sukhanov, L. P.; Umanski, S. Ya.; Kirillov, I. A.; Potapkin, B. V.; Pasman, H. J.; Tentner, A. M.
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    Low Temperature n-Butane Oxidation Skeletal Mechanism, Based on Mutilevel Approach.
    RRC Kurchatov Institute, Kurchatov Sq.1, 123182 Moscow, Russia; Kintech Lab., Kurchatov Sq.1, 123182 Moscow, Russia; Photochemistry Center, Novatorov Str. 7a, 119421 Moscow, Russia; N.N.Semenov Institute of Chemical Physics, Kosygin Str. 4, 119991 Moscow, Russia; Delft University of Technology, Postbus 5, 2600 AA Delft, Netherlands; Argonne National Laboratories, 9700 S. Cass Avenue, Argonne, IL
    Combustion and Flame, Vol. 157, No. 4, 641-652, April 2010