The oxidation of n-butane and n-heptane in a CFR engine; Isomerization reactions and delay of autoignition
Explore this paper's citation graph
- Type
- article
- Published
- 1990-03-01
- Cited by
- 26
- References
- 8
- OpenAlex
- https://openalex.org/W1977873137
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93835031
Keywords
Butane, Isomerization, Chemistry, Heptane, Alkane
References
- Thermokinetic interactions: Fundamentals of spontaneous ignition and cool flames
- On a Model for the Response of Unstable Premixed Flames to Turbulence
- The Mechanism of High Temperature Combustion of Propane and Butane
- Evaluation of Hydroperoxide Concentrations During the Delay of Autoignition in an Experimental Four Stroke Engine: Comparison with Cool Flame Studies in a Flow System
- Chemical aspects of the autoignition of hydrocarbonair mixtures
- Determination of the gas‐phase decomposition rate constants of heptyl‐1 and heptyl‐2 hydroperoxides C7H15OOH
- The autoignition of hydrocarbon fuels at high temperatures and pressures—Fitting of a mathematical model
- A Fundamentally Based Correlation Between Alkane Structure and Octane Number
Cited by
- Autoinflammation et cliquetis dans les moteurs : étude en machine à compression rapide de l'influence de la structure de l'hydrocarbure sur les délais d'autoinflammation
- Combustion Modeling of Soot Reduction in Diesel and Alternate Fuels using CHEMKIN
- A wide-range modeling study of n-heptane oxidation
- A Wide Range Modeling Study of Propane and n-Butane Oxidation
- The influence of fuel structure on combustion as demonstrated by the isomers of heptane: a rapid compression machine study
- Experimental study of cyclohexane and methylcyclohexane oxidation at low to intermediate temperature in a motored engine
- Low-temperature combustion: Automatic generation of primary oxidation reactions and lumping procedures
- The pyrolysis of organic hydroperoxides (ROOH)
- Experimental and modeling study of oxidation and autoignition of butane at high pressure
- A Comprehensive Modeling Study of n-Heptane Oxidation
- Autoignition of n-pentane and 1-pentene: Experimental data and kinetic modeling
- Hydroperoxides with zero, one, two or more carbonyl groups formed during the oxidation of N-dodecane
- Identification of the hydroperoxide formed by isomerization reactions during the oxidation of n-heptane in a reactor and CFR engine
- Reduced kinetic models and their application to practical combustion systems
- Autoignition of hydrocarbon/air mixtures in a CFR engine : experimental and modeling study
- Primary Reference Fuels (PRFs) as Surrogates for Low Sensitivity Gasoline Fuels
- Correlation of Knock with Engine Parameters for Ammonia/Nitrous Oxide Mixtures
- Development of multi-component diesel surrogate fuel models – Part II: Validation of the integrated mechanisms in 0-D kinetic and 2-D CFD spray combustion simulations
- Oxidation of Alkane Rich Gasoline Fuels and their Surrogates in a Motored Engine
- Flash Pyrolysis of t-Butyl Hydroperoxide and Di-t-butyl Peroxide: Evidence of Roaming in the Decomposition of Organic Hydroperoxides.
Related papers
- GROWTH RATE FOR C2- n-ALKANE CRYSTALS IN HEPTANE
- Propane and n-Butane Oxidation by Pseudomonas putida GPo1
- Compressions of liquids. II. Critical evaluation of new n‐alkane data: n‐Heptane to n‐tetracontane
- Shock-Tube Study of the Autoignition of n-Butane/Hydrogen Mixtures
- Autoignition of heptanes; experiments and modeling
- Auto-ignition temperatures of binary mixtures of alkanes in a closed vessel: Comparisons between experimental measurements and numerical predictions
- The effect of ammonia addition on the low-temperature autoignition of n-heptane: An experimental and modeling study
- Autoignition and combustion characteristics of heptane droplets with the addition of aluminium nanoparticles at elevated temperatures