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Keyphrases
Deflagration-to-detonation Transition
100%
Dimethyl Ether
100%
Plasma-assisted
100%
Ozone-assisted
100%
Active Species
28%
Fast Heating
28%
Slow Heating
28%
Low Temperature
14%
Rotational Energy
14%
Atmospheric Pressure
14%
Energy Transfer
14%
Electronic Excitation
14%
Low Temperature Ignition
14%
Advanced Engine
14%
Kinetic Effects
14%
Atomic Oxygen
14%
Non-equilibrium Plasma
14%
Dissociation
14%
Vibration-rotation
14%
Ignition Process
14%
Chemical Reactivity
14%
High Temperature Oxidation
14%
Oxygen Molecule
14%
Engine Knock
14%
Nitrogen Molecule
14%
Chemical Sensitization
14%
Dielectric Barrier Discharge
14%
Pre-excitation
14%
Radial Addition
14%
Excited Nitrogen
14%
Chemistry
Dimethyl Ether
100%
Deflagration
100%
Transition to Detonation
100%
Ozone
100%
Dioxygen
28%
Energy Transfer
14%
Electronic Excitation
14%
Nonequilibrium
14%
Chemical Kinetics Characteristics
14%
Dielectric Material
14%
Sensitization
14%
Thermooxidation
14%
Chemical Reactivity
14%
Nitrogen
14%
Engineering
Microchannel
100%
Transition to Detonation
100%
Deflagration
100%
Low-Temperature
28%
Ignition
28%
Nonequilibrium
14%
Electronic Excitation
14%
Engine Knock
14%
Oxygen Molecule
14%
Generated Plasma
14%
Nitrogen Molecule
14%
Atmospheric Pressure
14%
Thermooxidation
14%
Dielectric barrier discharge
14%
Chemical Engineering
Deflagration
100%
Transition to Detonation
100%
Ozone
100%
Chemical Kinetics Characteristics
14%
Nitrogen
14%
Physics
Deflagration
100%
Ozone
100%
Energy Transfer
14%
Nonequilibrium plasmas
14%
Atmospheric Pressure
14%
Ignition Temperature
14%
Dielectric Barrier Discharge
14%
Engine Control
14%
Nitrogen
14%