FireDOC Search

displaying 81 - 90 results in total 138

  • Huang, Z.; Burgess, I. W.; Plank, R. J.
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    Non-Linear Structural Modelling of a Fire Test Subject to High Restraint.
    University of Sheffield, UK
    Fire Safety Journal, Vol. 36, No. 8, 795-814, November 2001

  • Lamont, S.; Usmani, A. S.; Drysdale, D. D.
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    Heat Transfer Analysis of the Composite Slab in the Cardington Frame Fire Tests.
    Edinburgh Univ., Scotland
    Fire Safety Journal, Vol. 36, No. 8, 815-839, November 2001

  • Gillie, M.; Usmani, A.; Rotter, M.; O'Connor, M.
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    Modelling of Heated Composite Floor Slabs With Reference to the Cardington Experiments.
    Edinburgh Univ., Scotland; CORUS plc, Rotherham, UK
    Fire Safety Journal, Vol. 36, No. 8, 745-767, November 2001

  • Bailey, C.
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    Steel Structures Supporting Composite Floor Slabs: Design for Fire.
    Building Research Establishment, Garston, England
    Digest 462
    Digest 462
    December 2001
    12 p.

  • British Cement Association
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    Prefabricated Punching Shear Reinforcement for Reinforced Concrete Flat Slabs.
    British Cement Association, Berkshire, UK
    ['Best Practice Guides', '97.505']
    Best Practice Guides; 97.505
    2001
    4 p.

  • Lim, L.; Wade, C.
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    Experimental Fire Tests of Two-Way Concrete Slabs.
    University of Canterbury, Christchurch, New Zealand; Building Research Association of New Zealand, Judgeford
    Fire Engineering Research Report 02/12
    Fire Engineering Research Report 02/12
    September 2002
    104 p.

  • Usmani, A.
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    Simulation of Cardington Fire Tests.
    University of Edinburgh, Scotland
    NISTIR 6890
    NISTIR 6890
    September 2002
    Fire Resistance Determination and Performance Prediction Research Needs Workshop: Proceedings. Appendix III. Presentations: G. February 19-20, 2002, Gaithersburg, MD, Grosshandler, W. L., Editors, 59-69 p., 2002

  • Benmokrane, B.; Rahman, H.; Mukhopadhyaya, P.; Masmoudi, R.; Chekired, M.; Nicole, J. F.; El-Safty, A.
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    Use of Fiber Reinforced Polymer Reinforcement Integrated With Fiber Optic Sensors for Concrete Bridge Deck Slab Construction.
    National Research Council of Canada, Ottawa, Ontario
    NRCC-44719
    Canadian Journal of Civil Engineering, Vol. 27, No. 5, 928-940, October 2000
    NRCC-44719

  • Popoff, A., Jr.
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    Stability of Precast Concrete Systems Buildings.
    ABAM Engineers, Inc., Tacoma, WA
    Planning and Design of Tall Buildings International Conference. Proceedings. Volume 3. Structural Design of Tall Concrete and Masonry Buildings. Technical Committee No. 23. State of Art Report No. 5. American Society of Civil Engineers-International Association for Bridge and Structural Engineering (ASCE-IABSE). Sponsored by U.S. National Science Foundation. August 21-26, 1972, Bethlehem, PA, Reese, R. C.; Wastlund, G.; Lyse, I. M., Editors, 571-583 p., 1972

  • Gillie, M.; Usmani, A. S.; Rotter, J. M.
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    Structural Analysis of the First Cardington Test.
    University of Edinburgh, UK
    Journal of Construction Steel Research, Vol. 57, 581-601, 2001