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Modeling dispersant interactions with oil spills
James W. Weaver,
Michel Boufadel
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peer-review
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Keyphrases
Automated Reasoning
14%
Buoy
14%
Buoy Data
14%
Changes in Physical Properties
14%
Chemical Properties
28%
Cincinnati
14%
Compositional Changes
28%
Compositional Properties
14%
Computer Code
14%
Current Velocity
14%
Dispersal Effectiveness
14%
Dispersant
100%
Diurnal Variation
14%
Environment Canada
14%
Graphical User Interface
14%
Henry's Constant
14%
Historical Climate Data
14%
Implicit Function Theorem
14%
Interfacial Currents
14%
Interfacial Tension
14%
Interfacing Techniques
14%
New York
14%
Numerical Solver
14%
Numerical Techniques
14%
Object-oriented
14%
Object-oriented Method
14%
Object-oriented Programming
14%
Oil Composition
28%
Oil Slick
71%
Oil Spill
100%
Oil Spill Model
14%
Physical Properties
14%
Polymorphism
28%
Simulated Conditions
14%
Site-specific Data
14%
Slick
28%
Solution Technique
14%
SPARC
42%
Spill
14%
Temperature Effect
14%
Temperature Variation
14%
Testing Protocol
14%
Tidal Marsh
14%
University of Georgia
14%
Viscosity
14%
Volatilization
14%
Water Column
14%
Wave Energy
14%
Wind Speed
14%
Earth and Planetary Sciences
Canada
12%
Computer Programs
12%
Data Buoy
12%
Dispersant
100%
Graphical User Interface
12%
New York
12%
Object-Oriented Programming
12%
Oil Slick
62%
Oil Spill
100%
Salinity
25%
Spilling
12%
Temperature Variation
12%
Vaporization
12%
Water Column
12%
Wave Energy
12%
Engineering
Current Speed
12%
Dispersant
100%
Fluid Viscosity
12%
Generating Temperature
12%
Graphical User Interface
12%
Implicit Function Theorem
12%
Numerical Technique
12%
Oil Composition
25%
Oil Spill
100%
Oriented Programming
12%
Simulation Result
12%
Solution Technique
12%
Specifies
12%
Vaporization
12%
Wave Energy
12%
Material Science
Chemical Property
100%
Density
50%
Physical Property
100%