A wide-range modeling study of n-heptane oxidation
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- Type
- article
- Published
- 1995-10-01
- Cited by
- 214
- References
- 13
- OpenAlex
- https://openalex.org/W1964375458
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94051262
Keywords
Heptane, Shock tube, Kinetic energy, Kinetic scheme, Pyrolysis
References
- The oxidation of n-butane and n-heptane in a CFR engine; Isomerization reactions and delay of autoignition
- A Wide Range Modeling Study of Propane and n-Butane Oxidation
- Prediction of Kinetic Parameters for Hydrogen Abstraction Reactions
- Kinetic study of N-pentane oxidation
- Chemical aspects of the autoignition of hydrocarbonair mixtures
- Shock-tube investigation of self-ignition of n-heptane - Air mixtures under engine relevant conditions
- A new comprehensive reaction mechanism for combustion of hydrocarbon fuels
- High Pressure Oxidation of Liquid Fuels From Low to High Temperature. 1. n-Heptane and iso-Octane.
- A Fundamentally Based Correlation Between Alkane Structure and Octane Number
- Experimental study of the oxidation of n-heptane in a jet stirred reactor from low to high temperature and pressures up to 40 atm
- PREDICTION OF INITIAL PRODUCT DISTRIBUTIONS FROM PYROLYSIS OF NORMAL PARAFFINIC HYDROCARBONS
- Shock-tube investigation of comparative ignition delay times for C1-C5 alkanes
- Thermal Decomposition of Hydrocarbons, Resonance Stabilization and Isomerization of Free Radicals1
Cited by
- Diesel spray mixing limited vaporization with non-ideal and multi-component fuel thermophysical property effects
- Potentiel de la combustion HCCI et injection précoce
- Modélisation de la combustion du gaz naturel par réseaux de réacteurs avec cinétique chimique détaillée
- OXIDATION OF FUELS IN THE COOL FLAME REGIME FOR COMBUSTION AND REFORMING FOR FUEL CELLS.
- Chemical kinetics modelling study on fuel autoignition in internal combustion engines
- The Scramjet Engine: List of Acronyms
- Development of Reduced NOx Models for Flameless Combustion
- A Multizone approach to the detailed kinetic modeling of HCCI combustion
- Numerical Study of HCCI Combustion in Diesel Engines Using Reduced Chemical Kinetics of N-Heptane With Multidimensional CFD Code
- Reduced Kinetic Schemes of Complex Reaction Systems: Fossil and Biomass‐Derived Transportation Fuels
- Kinetic Modeling of Knock Properties in Internal Combustion Engines
- Comparison of Simulated and Experimental Combustion of Biodiesel Blends in a Single Cylinder Diesel HCCI Engine
- Autoignition Chemistry of the Hexane Isomers: An Experimental and Kinetic Modeling Study
- PREMIXED COMBUSTION IN A LIGHT DUTY COMPRESSION IGNITION ENGINE THROUGH FUEL AND INJECTION SYSTEM DESIGN: AN EXPERIMENTAL APPROACH
- Detailed Chemical Kinetic Modeling of Diesel Spray Combustion with Oxygenated Fuels
- Development of an Experimental Database and Chemical Kinetic Models for Surrogate Gasoline Fuels
- The Scramjet Engine: Processes and Characteristics
- An experimental and kinetic modeling study of n-hexane oxidation
- Progress in Understanding Low-Temperature Organic Compound Oxidation Using a Jet-Stirred Reactor
- Chemical kinetics modeling of n-nonane oxidation in oxygen/argon using excited-state species time histories
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