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Author: gregory linteris

Displaying records 81 to 90 of 123 records.
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81. Flame inhibition by ferrocene and blends of inert and catalytic agents
Published: 8/1/2000
Authors: Gregory T Linteris, M D Rumminger, Valeri Ivan Babushok, Wing Tsang
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=906727

82. Extinction Conditions of Non-Premixed Flames With Fine Droplets of Water and Water-NaOH Solutions
Published: 7/20/2000
Authors: A K Lazzarini, R. H. Krauss, H K Chelliah, Gregory T Linteris
Abstract: Interactions of fine droplets of water and water-NaOH solutions with a steady, laminar counterflow methane-air flame are investigated, both experimentally and numerically. A water atomizer generating a polydisperse distribution of droplet sizes w ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914175

83. Extinction of Counterflow Diffusion Flames with Fine-Water Droplets
Series: Special Publication (NIST SP)
Report Number: 984-4
Published: 5/2/2000
Authors: A K Lazzarini, Harsha K Chelliah, R H Krauss, Gregory T Linteris
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=909184

84. Flame Inhibition by Ferrocene, Alone and with CO2 and Cf3H
Series: Special Publication (NIST SP)
Report Number: 984-4
Published: 5/2/2000
Authors: Gregory T Linteris, M D Rumminger
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=909055

85. Inhibition of Premixed Carbon Monoxide-Hydrogen-Oxygen-Nitrogen Flames by Iron Pentacarbonyl
Published: 3/1/2000
Authors: M D Rumminger, Gregory T Linteris
Abstract: This paper presents measurements of the burning velocity of premixed CO-H2-O2-N2 flames with and without the inhibitor Fe(CO)5 over a range of initial H2 and O2 mole fractions. A numerical model is used to simulate the flame inhibition using a ga ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914214

86. Premixed Carbon Monoxide-Nitrous Oxide-Hydrogen Flames: Measured and Calculated Burning Velocities With and Without Fe(CO)5
Published: 1/1/2000
Authors: Gregory T Linteris, M D Rumminger, Valeri Ivan Babushok
Abstract: The burning velocity of premixed carbon monoxide-nitrous oxide flames (background water levels of 5 to 15 ppm) has been determined experimentally for a range of fuel-oxidizer equivalence ratio phi from 0.6 to 3.2, with added nitrogen up to a mole ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914395

87. Flame Inhibition by Ferrocene, Carbon Dioxide, and Trifluoromethane Blends: Synergistic and Antagonistic Effects
Published: 10/11/1999
Authors: Gregory T Linteris, M D Rumminger
Abstract: The production of CF3Br has been banned. As a flame inhibitor, iron pentacarbonyl (Fe(CO)5) is about two orders of magnitude more efficient than CF3Br, but it is flammable and highly toxic, and its addition to premixed flames at mole fractions ab ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914176

88. Flame Inhibition by Ferrocene, Carbon Dioxide, and Trifluoromethane Blends: Synergistic and Antagonistic Effects (NISTIR 6359)
Series: NIST Interagency/Internal Report (NISTIR)
Report Number: 6359
Published: 10/1/1999
Authors: Gregory T Linteris, M D Rumminger
Abstract: The production of CF3Br has been banned. As a flame inhibitor, iron pentacarbonyl (Fe(CO)5) is about two orders of magnitude more efficient than CF3Br, but it is flammable and highly toxic, and its addition to premixed flames at mole fractions ab ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914177

89. Inhibition of Premixed Carbon Monoxide-Hydrogen-Oxygen-Nitrogen Flames by Iron Pentacarbonyl (NISTIR 6360)
Series: NIST Interagency/Internal Report (NISTIR)
Report Number: 6360
Published: 10/1/1999
Authors: M D Rumminger, Gregory T Linteris
Abstract: This paper presents measurements of the burning velocity of premixed CO-H2-O2-N2 flames with and without the inhibitor Fe(CO)5 over a range of initial H2 and O2 mole fractions. A numerical model is used to simulate the flame inhibition using a ga ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914213

90. Numerical Modeling of Counterflow Diffusion Flames Inhibited by Iron Pentacarbonyl (NISTIR 6213)
Series: NIST Interagency/Internal Report (NISTIR)
Report Number: 6243
Published: 10/1/1999
Authors: M D Rumminger, Gregory T Linteris
Abstract: This paper presents the first detailed numerical study of the extinction of methane-air counterflow diffusion flames by the super-effective agent iron pentacarbonyl. Calculations using a gas-phase chemical mechanism reproduce the magnitude of inh ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=914372



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