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- W2392512058 abstract "Based on practical gas equation of state(EOS),a calculation method applicable to high-pressure physical properties including thermal conductivity and diffusivity was established in this paper.High-pressure vapor-liquid phase equilibrium(VLE),the critical point of mixture and enthalpies of evaporation were introduced into heat and mass transfer process on droplet surface.A single fuel droplet evaporation model in high-pressure environments was then set up.N-nonane droplet evaporation in nitrogen environment at sub-critical and super-critical pressures and physical control of factors were investigated,and the process and condition of transition on droplet surface from subcritical to super-critical state at super-critical pressure were especially discussed.The results indicate that the whole droplet evaporation from beginning to end at sub-critical pressure is subject to phase change.When the fuel and ambient gas mixtures on droplet surface achieve the critical point under super-critical pressure,transition occurs on droplet surface from sub-critical to super-critical state.Afterwards,droplet surface disappears,and fuel diffusion from high concentrations of fuel core to the remote field is not affected by phase change.Additionally,the minimum ambient pressure required for transition on droplet surface decreases as ambient temperature increases." @default.
- W2392512058 created "2016-06-24" @default.
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- W2392512058 date "2010-01-01" @default.
- W2392512058 modified "2023-09-27" @default.
- W2392512058 title "Fuel Droplet Evaporation in Sub-Critical and Super-Critical Pressure Environments" @default.
- W2392512058 hasPublicationYear "2010" @default.
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