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You searched on: Author: gregory linteris

Displaying records 21 to 30 of 146 records.
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21. Cup-Burner Flame Structure and Extinguishment by C2HF5 in Microgravity
Published: 9/26/2012
Authors: Gregory T Linteris, Fumiaki Takahashi, Viswanath R Katta, Oliver Meier
Abstract: The effects of fire-extinguishing agent C2HF5 (pentafluoroethane, HFC-125) added to a coflowing airstream on the structure and extinguishing processes of microgravity cup-burner flames have been studied numerically. Propane and a propane-ethanol-wate ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910551

22. Unwanted Combustion Enhancement by C6F12O Fire Suppressant
Published: 8/7/2012
Authors: Gregory T Linteris, Valeri Ivan Babushok, Peter B. Sunderland, Fumiaki Takahashi, Viswanath R Katta, Oliver Meier
Abstract: Several agents are under consideration to replace CF3Br for use in suppressing fires in aircraft cargo bays. In a Federal Aviation Administration (FAA) performance test simulating the explosion of an aerosol can, however, the replacements, when add ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910550

23. Combustion Properties of Halogenated Fire Suppressants
Published: 8/1/2012
Authors: Gregory T Linteris, Valeri Ivan Babushok, Oliver Meier
Abstract: Previous experimental studies have shown that some halogenated fire suppressant agents added to hydrocarbon-air systems can enhance the combustion. For example, their addition to the air stream can widen the flammability limits of lean mixtures, and ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=911201

24. Absorption and Reflection of Infrared Radiation by Polymers in Fire-Like Environments
Published: 7/17/2012
Authors: Gregory T Linteris, Mauro Zammarano, Boris Wilthan, Leonard M Hanssen
Abstract: In large-scale fires, the input of energy to burning materials occurs predominantly by radiative transfer. The in-depth absorption of radiant energy by a polymer influences its ignition time and burning rate. The present investigation examines two ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=908058

25. Extinguishment of Cup Burner Flames of Propane and the Aerosol Can Simulator Fuel by CF3Br and C2HF5
Published: 4/24/2012
Authors: Gregory T Linteris, Fumiaki Takahashi, Viswanath R Katta, Oliver Meier
Abstract: Calculations have been performed for co-flow diffusion flames of propane and a propane-ethanol-water fuel mixture, prescribed for the Federal Aviation Administration (FAA) Aerosol Can Simulator, in the cup-burner configuration, with added CF3Br and C ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910819

26. Prediction of the mass loss rate of polymer materials: Impact of residue formation
Published: 4/21/2012
Authors: Gregory T Linteris, Bernhard Schartel, Florian Kempel, Stanislav Stoliarov, Richard E. Lyon, Richard N Walters, Anja Hofmann
Abstract: Two different numerical simulation tools, Fire Dynamic Simulator (FDS) and ThermaKin, are investigated with respect to their capability to predict the mass loss rate of polymer materials exposed to different fires. For validation, gasification appa ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910596

27. Influence of Flame Characteristics on Gas-Phase Fire Retardant Effectiveness
Published: 3/16/2012
Author: Gregory T Linteris
Abstract: n/a
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=911018

28. Understanding Unwanted Combustion Enhancement by Potential Halon Replacements
Published: 3/5/2012
Authors: Gregory T Linteris, Jeffrey A Manion, Donald R Burgess Jr.
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=908395

29. Annual Report to Sponsor: Understanding Unwanted Combustion Enhancement by Potential Halon Replacements
Series: OTHER
Published: 2/3/2012
Authors: Gregory T Linteris, Jeffrey A Manion, Donald R Burgess Jr., Iftikhar Ahmad Awan, Peter B. Sunderland, John Leonard Pagliaro
Abstract: This year, we continued work to numerically model the behavior of the Halon replacements in the FAA Aerosol Can Test (FAA-ACT) to understand why they are causing more overpressure rather than flame extinction. The goal is to understand the process t ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910376

30. Analysis of Suppressant-Enhanced Overpressure in the FAA Aerosol Can Simulator
Published: 1/18/2012
Authors: Gregory T Linteris, Donald R Burgess Jr., Jeffrey A Manion, Peter B. Sunderland, John Leonard Pagliaro, Viswanath R Katta, Fumiaki Takahashi, Oliver Meier
Abstract: n/a
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910375



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