Earth and Planetary Sciences
Experimental Study
100%
Synthesis Gas
100%
Combustion
100%
Surface Pressure
100%
Air
100%
Speed
100%
Ammonia
70%
Mixture
40%
Jet Flow
30%
Flame Temperature
20%
Datum
20%
Addition
20%
Hydrogen
10%
Anisotropy
10%
Collision
10%
Oxidation
10%
Diffusion
10%
Power Law
10%
Heat Flux
10%
Power Generation
10%
Reactivity
10%
Equivalence
10%
Carbon Monoxide
10%
Thermal Diffusion
10%
Gasification
10%
Chemical Effect
10%
Increasing
10%
Species
10%
Prediction
10%
Fuel
10%
Condition
10%
Pool
10%
Ratio
10%
Correlation
10%
Exhibit
10%
Sensitivity
10%
Proving
10%
Information
10%
Fraction
10%
Variation
10%
Decomposition
10%
Cycle
10%
Consumption
10%
Mole
10%
Chemistry
Premixed Flame
100%
Kinetic Method
100%
Burning Velocity
100%
Syngas
100%
Pressure
100%
Ammonia
100%
Ammonia
70%
Mixture
40%
Chemical Reaction
40%
Flame
30%
Decomposition
10%
Hydrogen
10%
Carbon Monoxide
10%
Collision
10%
Adiabatic Flame Temperature
10%
Flame Speed
10%
Gas Turbine
10%
Thermal Diffusion
10%
Flux Method
10%
Gasification
10%
Reaction Temperature
10%
Fuel
10%
Heat
10%
Chemical Kinetics Characteristics
10%
Reactivity
10%
Oxidation Reaction
10%
Pool
10%
Correlation
10%
Combined Cycle
10%
Physics
Pressure
100%
Combustion
100%
Air
100%
Kinetics
100%
Speed
100%
Ammonia
70%
Exponents
20%
Flames
20%
Flame Temperature
20%
Hydrogen
10%
Oxidation
10%
Carbon Monoxide
10%
Collisions
10%
Thermal Diffusion
10%
Increasing
10%
Fuel
10%
Ratios
10%
Information
10%
Variations
10%
Cycles
10%
Heat
10%
Fractions
10%
Moles
10%
Correlation
10%
INIS
kinetics
100%
air
100%
velocity
100%
flames
100%
ammonia
100%
mixtures
23%
experimental data
11%
flame temperature
11%
design
5%
variations
5%
comparative evaluations
5%
fuels
5%
information
5%
modeling
5%
power
5%
pools
5%
hydrogen
5%
combustors
5%
mixing
5%
increasing
5%
decomposition
5%
oxidation
5%
speed
5%
power generation
5%
prediction
5%
carbon monoxide
5%
correlations
5%
validation
5%
collisions
5%
reactivity
5%
gas turbines
5%
sensitivity analysis
5%
hydroxyl radicals
5%
blending
5%
heat flux
5%
reaction mechanisms
5%
combined cycles
5%
thermal diffusion
5%
gasification
5%