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You searched on: Author: kuldeep prasad

Displaying records 71 to 75.
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71. Localized Ignition and Subsequent Flame Spread Over Solid Fuels in Microgravity
Published: Date unknown
Authors: Takashi Kashiwagi, Y NA Nakamura, Kuldeep R Prasad, Howard Richard Baum, S L Olson, O - Fujita, K K Nishizawa, K. Ito
Abstract: Ignition and subsequent flame spread over a paper sample and a PMMA sheet in microgravity are studied experimentally and theoretically. New results obtained during last two years are described.

72. Real Fire Performance of Partition Assemblies: Insulated and Non-Insulated Assemblies
Published: Date unknown
Authors: Samuel L Manzello, Richard George Gann, S R. Kukuck, Kuldeep R Prasad, Walter William Jones
Abstract: Two gypsum wall assemblies were exposed to intense real-scale compartment fires, from the time of ignition to beyond flashover. The construction of each assembly (2.44 m by 2.44 m) was identical, with the exception that one of the wall assemblies wa ...

73. Research Needs for Predicting Structural Collapse Under Fire Loading: A Brain Storming Session During the Fourth International Workshop on Structures in Fire (SiF 06)
Series: NIST Interagency/Internal Report (NISTIR)
Published: Date unknown
Authors: Kuldeep R Prasad, Dat Duthinh
Abstract: This report describes the results of a brain storming session conducted by the National Institute of Standards and Technology s Building and Fire Research Laboratory. The session was held as part of the Fourth International Workshop Structures in Fir ...

74. Simulating Fire Dynamics and Thermal Response of Structural Elements
Published: Date unknown
Authors: Kuldeep R Prasad, Howard Richard Baum
Abstract: Simulation of the effects of severe fires on the structural integrity of builings requires a close coupling between the gas phase energy release andtransport phenomena and the stress analysis in the load bearing materials. The connection between the ...

75. Structural Analysis of a High-Rise Composite Frame Exposed to Fire
Published: Date unknown
Authors: Dat Duthinh, Kuldeep R Prasad
Abstract: This paper presents a simplified, planar analysis of World Trade Center Tower 1 (WTC1), starting from a computer simulation of the fire using computational fluid dynamics, and progressing through a thermal and a structural analysis of the damaged str ...

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