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Spray breakup and structure of spray flames for low-volatility wet fuels
José E. Madero
, Richard L. Axelbaum
Department of Energy, Environmental & Chemical Engineering
Institute of Clinical and Translational Sciences (ICTS)
Research output
:
Contribution to journal
›
Article
›
peer-review
12
Scopus citations
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Dive into the research topics of 'Spray breakup and structure of spray flames for low-volatility wet fuels'. Together they form a unique fingerprint.
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Keyphrases
Ethanol
100%
Low Volatility
100%
Spray Flame
100%
Spray Breakup
100%
Spray Structure
100%
Glycerol
66%
Nozzle
22%
Ignition
22%
Water Mixtures
22%
Fine Droplet
22%
Stable Combustion
22%
Spray Dynamics
22%
High Concentration
11%
High Activity
11%
Concentration of Measure
11%
Water Concentration
11%
Recirculation
11%
High Water
11%
Activity Coefficient
11%
Diameter Two
11%
Combustion
11%
Number Concentration
11%
Vaporization
11%
Swirling Flow
11%
Vapor Pressure
11%
Droplet Spray
11%
Spray Pattern
11%
Flux Concentration
11%
High Water Content
11%
Adiabatic Flame Temperature
11%
Stable Flame
11%
Inner Recirculation Zone
11%
Droplet Breakup
11%
Phase Doppler Particle Analyzer
11%
Hollow Cone Spray
11%
Sauter Mean Diameter
11%
Rapid Vaporization
11%
Breakup Dynamics
11%
Engineering
Ignition
100%
Vaporization
100%
Fine Droplet
100%
Spray Flame
100%
Swirling Flow
50%
Recirculation Zone
50%
Adiabatic Flame Temperature
50%
Activity Coefficient
50%
High Vapor Pressure
50%
High Water Content
50%
Stabilisation Additive
50%
Chemical Engineering
Water Content
100%