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State of the art review of flash-boiling atomization
Tali Bar-Kohany
*
, Moti Levy
*
Corresponding author for this work
School of Mechanical Engineering
Technion-Israel Institute of Technology
Research output
:
Contribution to journal
›
Review article
›
peer-review
85
Scopus citations
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Keyphrases
State-of-the-art Review
100%
Superheat Degree
100%
Flash Boiling Atomization
100%
Injector
40%
Orifice Injector
40%
Fine Spray
40%
Expansion Chamber
40%
Multicomponent Liquid
40%
Low Pressure
20%
Cavitation
20%
Physical Processes
20%
Optimal Degree
20%
Homogeneous nucleation
20%
Small Droplets
20%
Nucleation Rate
20%
Bubble Growth
20%
Bubble Coalescence
20%
Low Superheat
20%
Nucleation Growth
20%
Gasses
20%
Droplet Size Distribution
20%
Accidental Scenarios
20%
Single Orifice
20%
Atomization
20%
Depressurization Rate
20%
Spray Characteristics
20%
Spray Quality
20%
Two-phase Fluid
20%
Jet Atomization
20%
Transition Criteria
20%
Flow Stratification
20%
Relative Kinetic Energy
20%
Hazardous Scenario
20%
Fluid Discharge
20%
Breakup Length
20%
High Slip
20%
Relative Magnitude
20%
Engineering
Atomisation
100%
Flash Boiling
100%
Expansion Chamber
40%
Special Attention
20%
Upper Limit
20%
Homogeneous Nucleation
20%
Relative Magnitude
20%
Depressurization
20%
Bubble Growth
20%
Bubble Coalescence
20%
Surface Increase
20%
Nucleation Rate
20%
Phase Fluid
20%
Jet
20%