Fuel molecular structure effect on autoignition of highly branched iso-alkanes at low-to-intermediate temperatures: Iso-octane versus iso-dodecane
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- Type
- article
- Published
- 2020-04-01
- Cited by
- 51
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W3011139687
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:216313322
Keywords
Autoignition temperature, Shock tube, Dodecane, Ignition system, Chemistry
References
- Detailed Kinetic Modeling of Low-Temperature Heat Release for PRF Fuels in an HCCI Engine
- Critical Evaluation of Thermochemical Properties of C 1 -C 4 Species: Updated Group-Contributions to Estimate Thermochemical Properties
- Comparison of oxidation and autoignition of the two primary reference fuels by rapid compression
- Ignition Delay Study of Moist Hydrogen/Oxidizer Mixtures Using a Rapid Compression Machine
- A shock tube study of iso-octane ignition at elevated pressures: The influence of diluent gases
- Laminar flame speeds and oxidation kinetics of iso-octane-air and n-heptane-air flames
- Kinetic modeling of gasoline surrogate components and mixtures under engine conditions
- Experimental data and kinetic modeling of primary reference fuel mixtures
- Shock tube measurements of branched alkane ignition times and OH concentration time histories
- SHOCK TUBE MEASUREMENTS OF ISO-OCTANE IGNITION TIMES AND OH CONCENTRATION TIME HISTORIES
- Shock tube ignition measurements of iso-octane/air and toluene/air at high pressures
- Using rapid compression machines for chemical kinetics studies
- Extents of alkane combustion during rapid compression leading to single and two stage ignition
- The experimental evaluation of a methodology for surrogate fuel formulation to emulate gas phase combustion kinetic phenomena
- Site-specific reaction rate constant measurements for various secondary and tertiary H-abstraction by OH radicals
- A jet fuel surrogate formulated by real fuel properties
- Self-ignition of S.I. engine model fuels: A shock tube investigation at high pressure ☆
- Computer-aided design of gas-phase oxidation mechanisms—Application to the modeling of n-heptane and iso-octane oxidation
- A RAPID COMPRESSION MACHINE FOR CHEMICAL KINETICS STUDIES AT ELEVATED PRESSURES AND TEMPERATURES
- Detailed chemical kinetic models for the low-temperature combustion of hydrocarbons with application to gasoline and diesel fuel surrogates
Cited by
- The influence of iso-butene kinetics on the reactivity of di-isobutylene and iso-octane
- Probing the antiknock effect of anisole through an ignition, speciation and modeling study of its blends with isooctane
- Oxidation of 2,6-dimethylheptane at low temperature: Kinetic modeling and experimental study
- Autoignition and preliminary heat release of gasoline surrogates and their blends with ethanol at engine-relevant conditions: Experiments and comprehensive kinetic modeling
- Construction and derivation of a series of skeletal chemical mechanisms for n-alkanes with uniform and decoupling structure based on reaction rate rules
- Effect of nitric oxide and exhaust gases on gasoline surrogate autoignition: iso-octane experiments and modeling
- Is ortho-Cresol a Viable Lignocellulosic Blendstock? A Kinetic Study of Its Co-Oxidation within a Surrogate Fuel
- A Rapid Compression Machine Study of 2-Phenylethanol Autoignition at Low-To-Intermediate Temperatures
- A new detailed kinetic model for surrogate fuels: C3MechV3.3
- A comprehensive experimental and modeling study of n-propylcyclohexane oxidation
- A combined experimental and modeling study of combustion properties of an isoparaffinic alcohol-to-jet fuel
- Exploring low temperature oxidation of iso-octane under atmospheric pressure
- Experimental Investigation of the Pressure Dependence of Iso-Octane Combustion
- Investigating the kinetic effect of prenol on iso-octane auto-ignition by means of an experimental and modeling study
- A comprehensive experimental and kinetic modeling study of di-isobutylene isomers: Part 1
- Replicating HCCI-like autoignition behavior: What gasoline surrogate fidelity is needed?
- Effects of Carbon Chain Length on N-Alkane Counterflow Cool Flames: A Kinetic Analysis
- An experimental auto-ignition and kinetic modelling study of binary and ternary cyclopentane/toluene/diisobutylene/iso-octane mixtures
- An experimental and modeling study on autoignition of 2-phenylethanol and its blends with n-heptane
- Autoignition of iso-octane at ultra-lean and lean conditions
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