Search Results - "Biet, Joffrey"
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Modeling of the oxidation of methyl esters—Validation for methyl hexanoate, methyl heptanoate, and methyl decanoate in a jet-stirred reactor
Published in Combustion and flame (01-11-2010)“…The modeling of the oxidation of methyl esters was investigated and the specific chemistry, which is due to the presence of the ester group in this class of…”
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2
Ignition by Electric Spark and by Laser-Induced Spark of Ultra-Lean CH4/Air and CH4/CO2/Air Mixtures at High Pressure
Published in Combustion science and technology (02-01-2014)“…This study investigates the lean flammable limit (LFL) of CH 4 /air and CH 4 /CO 2 /air mixtures, using two different ignition devices: electrical discharge…”
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3
An Experimental and Kinetic Modeling Study of the Oxidation of the Four Isomers of Butanol
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (30-10-2008)“…Butanol, an alcohol which can be produced from biomass sources, has received recent interest as an alternative to gasoline for use in spark ignition engines…”
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4
Experimental and Modeling Study of the Low-Temperature Oxidation of Large Alkanes
Published in Energy & fuels (01-07-2008)“…This paper presents an experimental and modeling study of the oxidation of large linear akanes (from C10) representative from diesel fuel from low to…”
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5
Modeling Study of the Low-Temperature Oxidation of Large Methyl Esters from C 11 to C 19
Published in Proceedings of the Combustion Institute (01-01-2011)“…The modeling of the low temperature oxidation of large saturated methyl esters really representative of those found in biodiesel fuels has been investigated…”
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6
An experimental and kinetic modeling study of the autoignition of α-methylnaphthalene/air and α-methylnaphthalene/ n-decane/air mixtures at elevated pressures
Published in Combustion and flame (01-10-2010)“…The autoignition of α-methylnaphthalene (AMN), the bicyclic aromatic reference compound for the cetane number (CN), and AMN/ n-decane blends, potential diesel…”
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7
Modeling study of the low-temperature oxidation of large methyl esters from C11 to C19
Published in Proceedings of the Combustion Institute (2011)“…The modeling of the low-temperature oxidation of large saturated methyl esters really representative of those found in biodiesel fuels has been investigated…”
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8
Ignition by Electric Spark and by Laser-Induced Spark of Ultra-Lean CH 4 /Air and CH 4 /CO 2 /Air Mixtures at High Pressure
Published in Combustion science and technology (02-01-2014)Get full text
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9
Ignition by Electric Spark and by Laser-Induced Spark of Ultra-Lean CH sub(4)/Air and CH sub(4)/CO sub(2)/Air Mixtures at High Pressure
Published in Combustion science and technology (02-01-2014)“…This study investigates the lean flammable limit (LFL) of CH sub(4)/air and CH sub(4)/CO sub(2)/air mixtures, using two different ignition devices: electrical…”
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10
Ignition by Electric Spark and by Laser-Induced Spark of Ultra-Lean CH^sub 4^/Air and CH^sub 4^/CO^sub 2^/Air Mixtures at High Pressure
Published in Combustion science and technology (01-01-2014)“…This study investigates the lean flammable limit (LFL) of CH^sub 4^/air and CH^sub 4^/CO2/air mixtures, using two different ignition devices: electrical…”
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11
Oxidation of methyl and ethyl butanoates
Published in International journal of chemical kinetics (01-04-2010)“…This paper describes an experimental and modeling study of the oxidation of methyl and ethyl butanoates in a shock tube. The ignition delays of these two…”
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12
Experimental and numerical study of premixed, lean ethylene flames
Published in Proceedings of the Combustion Institute (2007)“…Ethylene is a key intermediate in the combustion mechanisms of most practical fuels. It plays also an important role in the formation of aromatic hydrocarbons…”
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13
A comparative study of the formation of aromatics in rich methane flames doped by unsaturated compounds
Published in Fuel (Guildford) (01-08-2009)“…For a better modeling of the importance of the different channels leading to the first aromatic ring, we have compared the structures of laminar rich premixed…”
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14
Experimental and modeling study of lean premixed atmospheric-pressure propane/O2/N2 flames
Published in Combustion and flame (01-08-2005)Get full text
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15
Experimental and modeling study of lean premixed atmospheric-pressure propane/O 2/N 2 flames
Published in Combustion and flame (01-08-2005)“…A better knowledge of the combustion chemistry in very lean flames is required to improve flame stability and control the presence of oxygenated species as…”
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16
An experimental and kinetic modeling study of the autoignition of a-methylnaphthalene/air and a-methylnaphthalene/n-decane/air mixtures at elevated pressures
Published in Combustion and flame (15-10-2010)“…The autoignition of a-methylnaphthalene (AMN), the bicyclic aromatic reference compound for the cetane number (CN), and AMN/n-decane blends, potential diesel…”
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17
An Experimental and Kinetic Modeling Study of the Oxidation of the Four Isomers of Butanol
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (2008)“…Butanol, an alcohol which can be produced from biomass sources, has received recent interest as an alternative to gasoline for use in spark ignition engines…”
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Journal Article -
18
Experimental and modeling study of lean premixed atmospheric-pressure propane/O sub(2)/N sub(2) flames
Published in Combustion and flame (01-08-2005)“…A better knowledge of the combustion chemistry in very lean flames is required to improve flame stability and control the presence of oxygenated species as…”
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19
Experimental and modeling study of lean premixed atmospheric-pressure propane/O{sub 2}/N{sub 2} flames
Published in Combustion and flame (01-08-2005)“…A better knowledge of the combustion chemistry in very lean flames is required to improve flame stability and control the presence of oxygenated species as…”
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20
Experimental Autoignition of C4-C6 Saturated and Unsaturated Methyl and Ethyl Esters
Published 22-04-2009“…Autoignition delay times, ?, of methyl crotonate, methyl acrylate, ethyl butanoate, ethyl crotonate, and ethyl acrylate were studied in shock tube experiments…”
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