Wada, A.; Ohi, K.; Suzuki, H.; Sakumoto, Y.; Fusimi, M.; Kamura, H.
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Study on the Redundancy of High-Rise Steel Buildings Due to the Effect of Induced Heat and Loss of Vertical Structural Members.
Tokyo Institute of Technology, Yokohama, Japan; University of Tokyo, Japan; Tsukuba Univ., Japan; Nippon Steel Corp., Tokyo, Japan; JFE NKKCorp., Kawasaki, Japan
Strategies for Performance in the Aftermath of the World Trade Center. CIB-CTBUH Conference on Tall Buildings. Proceedings. Task Group on Tall Buildings: CIB TG50. CIB Publication No. 290. October 20-23, 2003,
Kuala Lumpur, Malaysia,
Shafii, F.; Bukowski, R.; Klemencic, R., Editors,
251-259 p.,
2003
Beyler, C.; White, D.; Peatross, M.; Trellis, J.; Li, S.; Luers, A.; Hopkins, D.
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Assessment of the Fire Exposure in the Airplane Impact Areas of the Two World Trade Center Towers.
Hughes Associates, Inc., Baltimore, MD
Designing Structures for Fire. Proceedings. Co-Sponsored by: Society of Fire Protection Engieners and Structural Engineering Institute. September 30-October 1, 2003,
DEStech Publications, Inc.,
Baltimore, MD,
65-74 p.,
2003
Taylor, J.
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2-D Analysis of the Performance of Connections With Unprotected Steel Structural Members Exposed to Parametric Fire.
University of Canterbury, Christchurch, New Zealand
Fire Engineering Research Report 03/7,
June 2003,
244 p.
Harada, K.; Yusa, S.; Ohmiya, Y.; Suzuki, J.; Ishihara, T.; Shimamura, M.; Wakamatsu, T.
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Simple Formula to Predict Temperature Rise of Protected and Unprotected Structural Steel Elements.
Kyoto Univ., Japan; Building Research Institute, Ibaraki, Japan; Tokyo University of Science, Chiba, Japan
Fire Safety Science. Proceedings. Seventh (7th) International Symposium. International Association for Fire Safety Science (IAFSS). POSTER ABSTRACTS. June 16-21, 2003,
Intl. Assoc. for Fire Safety Science, Boston, MA,
Worcester, MA,
Evans, D. D., Editors,
1209-1209 p.,
2003
Liew, J. Y. R.; Ma, K. Y.
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Advanced Analysis of 3D steel Framework Exposed to Compartment Fire.
National University of Singapore, Singapore
Fire and Materials,
Vol. 28,
No. 2/4,
253-267,
March/August 2004
Murakami, Y.; Fushimi, M.; Suzuki, H.
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Thermal Deformation Analyses of High-Rise Steel Buildings.
JFE Steel Corp.; Nippon Steel Corp.; Tsukuba Univ., Japan
TS 2-4-5 Structural Analysis and Design Consideration (1),
Tall Buildings in Historical Cities: Culture and Technology for Sustainable Cities. Volume 1. Proceedings. Council on Tall Buildings and Urban Habitat (CTBUH) 2004 Seoul Conference. October 10-13, 2004,
Seoul, Korea,
Lee, L. H.; Klemencic, R.; Kim, S. D., Editors,
318-325 p.,
2004
Lennon, T.
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Steel Framed Buildings: Design Investigation.
Fire Research Station, Borehamwood, England
Fire Safety Engineering,
Vol. 10,
No. 2,
17-19,
March 2003
Landesmann, A.; Batista, E.
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Implementation of Advanced Analysis Method for Steel-Framed Structures Under Fire Conditiions.
Federal University of Rio de Janeiro (UFRJ), Rio de Janeiro/RJ, Brazil; Federal University of Rio de Janeiro (COPPE/UFRJ), Rio de Janeiro/RJ, Brazil
Fire Safety Journal,
Vol. 40,
No. 4,
339-366,
June 2005
Morris, P.
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Steel Determination.
Fire Engineers Journal, Vol. 65, No. 265 / Fire Prevention, No. 392,
31-35,
May 2005
Iqbal, N.; Salley, M. H.
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Fire Dynamics Tools (FDTs) Quantitative Fire Hazard Analysis Methods for the U.S. Nuclear Regulatory Commission Fire Protection Inspection Program. Final Report.
U.S. Nuclear Regulatory Commission, Washington, DC
NUREG-1805,
December 2004,
1016 p.
Fire Dynamics Tools (FDTs) Quantitative Fire Hazard Analysis Methods for the U.S. Nuclear Regulatory Commission Fire Protection Inspection Program. Final Report,
U.S. Nuclear Regulatory Commission, Washington, DC,
2004