Engineering
Ignition
100%
Nanosecond
69%
Methane
17%
Equivalence Ratio
15%
Low-Temperature
15%
Pulse Repetition Frequency
15%
Air Mixture
13%
Pulse Energy
13%
Oxidizer
12%
Ignition Delay
11%
Combustor
11%
Energy Distribution
8%
Schlieren
8%
Ignitability
7%
Air Flow
7%
Nonequilibrium
7%
Flow Reactor
6%
Spark Ignition
6%
Experimental Investigation
6%
Experimental Result
6%
Thermal Diffusion
5%
Flame Stability
5%
Hydrodynamics
5%
Thruster
5%
Rocket Engine
5%
Delay Time
5%
Diffusion Flame
5%
Flow Velocity
5%
Ignition Time
5%
Stagnation Temperature
5%
Capacitive
5%
Density Polyethylene
5%
Light Emission
5%
Keyphrases
Nanosecond Discharge
19%
Ignition
17%
Nanosecond Pulsed Plasma
14%
Inter-pulse Coupling
10%
Discharge Ignition
10%
Combustion
9%
Ignition Probability
9%
Pulsed Discharge Plasma
8%
Interpulse
8%
Partially Coupled
7%
Pulse Time
7%
Pulsed Power
7%
Ignition Kernel
6%
Ignition Delay Time
6%
Ethylene
6%
Cavity Ignition
5%
Scramjet Cavity
5%
Plasma-activated
5%
Energy Pulse
5%
Simultaneous Measurement
5%
Hypergolic Ignition
5%
Energy Distribution
5%
Faraday Rotation Spectroscopy
5%
Laser-induced Spark Ignition
5%
Thermal Diffusion
5%
Hall Thruster
5%
Strut
5%
Equivalence Ratio
5%
Methane-air Mixture
5%
Plasma-assisted
5%
Pulse Repetition Frequency
5%