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Droplet heating and evaporation: A new approach to the modeling of the processes
D. V. Antonov
, S. Tonini
, G. E. Cossali
, V. V. Dolgikh
, P. A. Strizhak
, S. S. Sazhin
School of Arch, Tech and Eng
Research output
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peer-review
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Keyphrases
Droplet Heating
100%
Droplet Evaporation
100%
Droplet Radius
100%
Liquid Phase Model
100%
Droplet Temperature
100%
Analytical Solution
50%
Thermal Conductivity
50%
Energy Conservation
50%
Gas Phase
50%
Nusselt number
50%
Momentum Conservation
50%
Evaporation Rate
50%
Phase Model
50%
Model Support
50%
Heat Mass Transfer
50%
Liquid Thermal Conductivity
50%
Heat Transfer Equation
50%
Mono-component
50%
Mass Conservation
50%
Experimental Error
50%
Margin of Error
50%
Implicit Expression
50%
Number Expressions
50%
Tomsk
50%
Physics
Liquid Phase
100%
Thermal Conductivity
100%
Boundary Condition
50%
Vapor Phase
50%
Nusselt Number
50%
Mass Transport
50%
Chemical Engineering
Thermal Conductivity of Liquids
100%
Nusselt Number
50%
Mass Transport
50%