Engineering
Air Mixture
35%
Alkane
13%
Aspect Ratio
11%
Atmospheric Pressure
22%
Autoignition
21%
Axisymmetric
16%
Boundary Condition
10%
Boundary Layer
44%
Burning Rate
15%
Computational Fluid Dynamics
10%
Computer Simulation
42%
Control Law
16%
Control System
17%
Current Drive
13%
Deflagration
11%
Delay Time
15%
Dielectrics
26%
Diffusion Flame
42%
Diffusive
18%
Dilution
16%
Direct Numerical Simulation
27%
Electric Field
40%
Electron Temperature
14%
Electronic Excitation
10%
Electrostatics
12%
Elevated Pressure
38%
Energy Engineering
100%
Engineering
17%
Equivalence Ratio
30%
Experimental Investigation
18%
Experimental Measurement
15%
Experimental Observation
11%
Experimental Result
35%
Feedback Control System
11%
Femtosecond Laser
20%
Flame Front
12%
Flame Propagation
34%
Flame Temperature
14%
Flow Field
17%
Flow Rate
12%
Flow Velocity
13%
Fluid Viscosity
17%
Gas-Phase
10%
Good Agreement
35%
Hall Thruster
43%
Heat Losses
15%
Heptane
18%
High Resolution
10%
High Reynolds Number
21%
Hydrodynamics
30%
Hypersonic Flows
14%
Ignition
97%
Ignition Delay
20%
Ignition Temperature
12%
Illustrates
14%
Imaging Contrast
12%
Internals
11%
Kinetic Model
25%
Large Eddy Simulation
22%
Laser Beam
14%
Laser Induced Forward Transfer
10%
Length Scale
20%
Lewis Number
27%
Limitations
16%
Liquid Films
12%
Low-Temperature
56%
Mach Number
15%
Magnetic Field
32%
Magnetohydrodynamic Generator
19%
Magnetohydrodynamics
14%
Methane
54%
Metrics
10%
Microchannel
11%
Microstructure
12%
Mole Fraction
10%
Multiphoton Ionization
11%
Multiscale
11%
Nanoscale
15%
Nanosecond
35%
Nonequilibrium
29%
Number Density
12%
Numerical Study
20%
One Dimensional
29%
Pipeline Fluid Flow
26%
Premixed Flame
45%
Reynolds' Number
45%
Similarities
20%
Strain Rate
17%
Streamwise
21%
Supersonic Flow
22%
Tension Surface
11%
Thin Films
11%
Thruster
49%
Tokamak Device
12%
Transients
14%
Turbulent Boundary Layer
39%
Turbulent Flow
18%
Two Dimensional
44%
Velocity Profile
12%
Vortex
20%
Keyphrases
Acetylene
7%
Air Mixture
6%
Alpha Particles
6%
Argon
9%
Atmospheric Air
9%
Atmospheric Pressure
8%
Atomic Oxygen
7%
Avalanche Ionization
6%
Bessel Beam
7%
Blunt Body
5%
Boundary Layer
7%
Chalcogenide Glasses
7%
Coherent anti-Stokes Raman Scattering
8%
Coherent anti-Stokes Raman Scattering (CARS) Microscopy
7%
Combustion
10%
Cool Flame
18%
Coronagraph
7%
Counterflow
6%
Cylindrical Hall Thruster
7%
Deflagration-to-detonation Transition
7%
Deformable Mirror
8%
Diffusion Flame
8%
DIII-D
5%
Dimethyl Ether
13%
Direct numerical Simulation
6%
Electric Field (E-field)
9%
Electron Beam
9%
Electron Temperature
5%
Electronic Excitation
5%
Elevated Pressure
18%
Equivalence Ratio
9%
Ethylene
9%
Extinction Limit
7%
Faraday Rotation Spectroscopy
8%
Femtosecond
8%
Femtosecond Laser
8%
Flame Propagation
7%
Flame Speed
12%
Flame Structure
7%
Flammability Limits
7%
Hall Thruster
15%
Heptane
8%
High Contrast
6%
High Contrast Imaging
7%
High Pressure
17%
High Reynolds number
7%
Hypersonic Flow
8%
Hyperuniform
9%
Hyperuniformity
5%
Ignition
23%
Ignition Temperature
8%
Jet-stirred Reactor
8%
Kinetic Model
6%
Laminar Flame Speed
12%
Laser Beams
8%
Laser Pulse
13%
Laser-induced
6%
Laser-induced Forward Transfer
7%
Lasing
15%
Lewis number
7%
Low Temperature
13%
Low-temperature Chemistry
7%
Mach number
6%
Magnetic Field
13%
Magnetized Plasma
6%
Microwave Scattering
12%
Multiphoton Ionization
7%
Nanopatterning
7%
Non-equilibrium
8%
Non-premixed
15%
Numerical Modeling
6%
Numerical Simulation
9%
Optical Lattice
10%
Optical Trapping
7%
Orbital-free Density Functional Theory
6%
Physical Review
8%
Plasma Density
6%
Plasma-assisted
6%
Premixed Cool Flame
7%
Premixed Flame
12%
Princeton
6%
Radar REMPI
6%
Rayleigh-Brillouin Scattering
6%
Reactor
10%
Reduced Mechanism
8%
REMPI
7%
Reynolds number
9%
Self-sustaining
6%
Standoff Detection
7%
Stimulated Emission
6%
Streamer
6%
Supersonic Flow
8%
Supersonic Turbulent Boundary Layer
10%
Thruster
8%
Tokamak
8%
Tunable Acoustics
6%
Turbulence
17%
Turbulent Boundary Layers
13%
Turbulent pipe Flow
6%
Two Dimensional
9%