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A simplified model for bi-component droplet heating and evaporation
Sergei Sazhin
, A.E. Elwardany
, P.A. Krutitskii
, G. Castanet
, F. Lemoine
, Elena Sazhina
, Morgan Heikal
University of Brighton
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Keyphrases
Droplet Heating
100%
Droplet Evaporation
100%
Simplified Model
100%
Bi-component Droplet
100%
Analytical Solution
50%
Non-ideal Model
50%
Acetone
50%
Activity Coefficient
50%
Recirculation
25%
Temperature Distribution
25%
Numerical Code
25%
Effective Thermal Conductivity
25%
Monodisperse Spray
25%
Droplet Temperature
25%
Diffusion Equation
25%
Effective Diffusivity
25%
Transient Heat Conduction Equation
25%
Species Diffusion
25%
Rich Mixture
25%
Heat Diffusion
25%
Vortex Model
25%
Temperature Evolution
25%
Diffusivity Model
25%
Coefficient Ideals
25%
Moving Droplet
25%
Mass Diffusion
25%
Engineering
Activity Coefficient
100%
Heat Conduction Equation
50%
Effective Thermal Conductivity
50%
Transients
50%
Diffusion Equation
50%
Vortex Model
50%
Rich Mixture
50%
Effective Diffusivity
50%
Key Process
50%
Measured Temperature
50%
Chemical Engineering
Thermal Conductivity
100%
Heat Conduction
100%