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Modelling of biodiesel fuel droplet heating and evaporation
Sergei Sazhin
, Mansour Al Qubeissi
, Rasoul Nasiri
, R. Kolodnytska
, A.E. Elwardany
, Morgan Heikal
University of Brighton
Advanced Engineering Centre
Research output
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peer-review
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Keyphrases
Droplet Heating
100%
Fuel Droplet
100%
Droplet Evaporation
100%
Biodiesel Fuel
100%
Methyl Ester
50%
Diesel Fuel
50%
Gasoline Fuel
50%
Evaporation Time
33%
Evaporation Enthalpy
33%
Component Model
33%
Single Component
33%
Molar Mass
33%
Recirculation
16%
Temperature Gradient
16%
Surface Temperature
16%
Ester Oil
16%
One-component
16%
Species Diffusion
16%
Hemp
16%
Gradient Diffusion
16%
Excess Molar Enthalpy
16%
Transport Coefficients
16%
Rapeseed Methyl Ester
16%
Palm Oil Methyl Ester
16%
Boiling Temperature
16%
Soybean Oil Methyl Ester
16%
Multi-component Model
16%
Thermodynamic Coefficients
16%
Chemistry
Methyl Ester
100%
Biodiesel
100%
Enthalpy of Evaporation
33%
Molar Mass
33%
Multicomponent Reaction
33%
Boiling
16%
Engineering
Biodiesel
100%
Component Model
50%
Molar Mass
33%
Single Component
33%
Boiling Temperature
16%
Rapeseed Oil Methyl Ester
16%
Molar Enthalpy
16%
Thermal Gradient
16%
Temperature Gradients
16%
Chemical Engineering
Enthalpy
100%
Thermal Gradient
50%