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Real Gas Effects in High-Pressure Ignition of n-Dodecane/Air Mixtures
Yuanxinxin Cao
, Wenkai Liang
,
Chung K. Law
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
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Dive into the research topics of 'Real Gas Effects in High-Pressure Ignition of n-Dodecane/Air Mixtures'. Together they form a unique fingerprint.
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Keyphrases
Air Mixture
100%
High Pressure
100%
Ignition
100%
Real Gas Effect
100%
N-Dodecane
100%
Real Gas
66%
Reaction Pathway
33%
Polycyclic Aromatic Hydrocarbons
33%
Work Study
33%
Ideal Gas
33%
Ignition Delay Time
33%
Autoignition
33%
Hydrocarbon Fuel
33%
Negative Temperature Coefficient
33%
Strong Dependence
33%
Dodecane
33%
Low Temperature Regime
33%
Soot Generation
33%
Molecular Volume
33%
Attractive Potential
33%
Low Temperature Reaction
33%
Compressibility Factor
33%
Redlich-Kwong Equation of State
33%
Real Gas Behavior
33%
Engineering
Ignition
100%
Air Mixture
100%
Real Gas Effect
100%
Real Gas
100%
Low-Temperature
66%
Delay Time
33%
Aromatics
33%
Fossil Fuel
33%
Reactant
33%
Ignition Delay
33%
Autoignition
33%
Temperature Coefficient
33%
Compressibility Factor
33%
Ideal Gas
33%
Equations of State
33%
Chemistry
Dodecane
100%
Polycyclic Aromatic Hydrocarbons
50%
Compressibility
50%
Molecular Volume
50%
formation
50%
Spontaneous Combustion
50%
Equations of State
50%
Material Science
Compressibility
100%
Fossil Fuel
100%
Chemical Engineering
Polycyclic Aromatic Hydrocarbon
100%
Negative Temperature Coefficient
100%