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Volumn 155, Issue 4, 2008, Pages 651-674
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A comprehensive skeletal mechanism for the oxidation of n-heptane generated by chemistry-guided reduction
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Author keywords
Chemical lumping; n Heptane; Oxidation; Reduced mechanism; Skeletal mechanism
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Indexed keywords
APPLICATIONS;
CHEMICAL ANALYSIS;
CHEMICAL OXYGEN DEMAND;
CONCENTRATION (PROCESS);
FUEL ADDITIVES;
FUELS;
HEPTANE;
HYDROCARBONS;
IGNITION;
ORGANIC COMPOUNDS;
OXIDATION;
PARAFFINS;
POWDERS;
SENSITIVITY ANALYSIS;
ANALYSIS METHODS;
BACKWARD REACTIONS;
CHEMICAL MODELS;
COMBUSTION CONDITIONS;
DEGREE OF REDUCTIONS;
EFFICIENT CONTROLS;
FLAME SPEEDS;
FUEL COMPONENTS;
FUEL SIZES;
GLOBAL PARAMETERS;
HCCI ENGINES;
HIGH TEMPERATURES;
HYDROCARBON OXIDATIONS;
IGNITION DELAYS;
IGNITION TIMINGS;
INPUT DATUMS;
N HEPTANES;
N-HEPTANE;
OXIDATION MODELS;
PARAMETER VARIATIONS;
PLUG FLOWS;
PRIMARY REFERENCE FUELS;
REACTION FLOWS;
REACTION SENSITIVITIES;
REDUCED MECHANISM;
REDUCTION PROCESSES;
REMOVAL METHODS;
RICH MIXTURES;
SENSITIVITY COEFFICIENTS;
SKELETAL MECHANISM;
SKELETAL MECHANISMS;
SKELETAL MODELS;
SPECIES CONCENTRATIONS;
STIRRED REACTORS;
TEMPERATURE OXIDATIONS;
TETRADECANE;
VALIDATION PROCESSES;
MODAL ANALYSIS;
HEPTANE;
ARTICLE;
CHEMICAL REACTION;
COMBUSTION;
FLOW MEASUREMENT;
OXIDATION;
PRIORITY JOURNAL;
REACTION ANALYSIS;
REACTOR;
REDUCTION;
SENSITIVITY ANALYSIS;
VALIDATION PROCESS;
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EID: 56049126629
PISSN: 00102180
EISSN: None
Source Type: Journal
DOI: 10.1016/j.combustflame.2008.05.007 Document Type: Article |
Times cited : (125)
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References (49)
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