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Combustion of fine aluminum and magnesium powders in water
Amy Corcoran
, Stefano Mercati
, Hongqi Nie
, Massimo Milani
, Luca Montorsi
,
Edward L. Dreizin
Chemical and Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
87
Scopus citations
Overview
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Dive into the research topics of 'Combustion of fine aluminum and magnesium powders in water'. Together they form a unique fingerprint.
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Keyphrases
Aluminum Powder
100%
Atmospheric Pressure
33%
Burning Particles
33%
Burning Time
100%
Combustion
100%
Computational Fluid Dynamics
33%
Diffusion Flame
33%
Large Particle
33%
Laser Light Scattering
33%
Low Angle
33%
Magnesium
33%
Magnesium Powder
100%
Metal Powder
66%
Micron-sized
33%
Micron-sized Powder
33%
Nitrogen Flow
33%
Optical Emission
33%
Oxidizing Species
33%
Oxygen Diffusion
33%
Oxygen Effect
33%
Oxyhydrogen
33%
Particle Emission
33%
Particle Size
33%
Particle Size Distribution
33%
Photomultiplier Tube
33%
Time Bin
33%
Water Vapor
33%
Material Science
Aluminum
100%
Computational Fluid Dynamics
33%
Magnesium
33%
Magnesium Powder
100%
Particle Size Analysis
33%
Powder
33%
Water Vapor
33%
Engineering
Assuming
33%
Atmospheric Pressure
33%
Burn Time
100%
Computational Fluid Dynamics
33%
Diffusion Flame
33%
Individual Particle
33%
Laser Light
33%
Particle Diameter
33%
Particle Emission
33%