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- W1537432887 abstract "Motions of a vapor, transient to steady, due to evaporation and condensation processes occurring at the cylindrical condensed phases have been considered numerically based not only on the Boltzmann equation of BGK type but also on the formulation for phase-change problems at ordinary fluid dynamic level, in other words, the Navier-Stokes equations with the boundary conditions at the interface for evaporation and condensation derived earlier from a general asymptotic analysis of the weakly nonlinear version of the Boltzmann equation of BGK type. The results based on both of these systems of governing equations agree quite well, describing even the early processes of establishment of the flow fields as well as their transient and final states. The production of the waves, shock waves and contact regions, their propagation and interaction with the condensed phases are clearly seen on both systems of equations. From this fact, the usefulness of the fluid dynamic formulation can be recognized and it can be used for analyses of problems associated with phase changes in place of the Boltzmann equation of BGK type, although of course there are some restrictions on its applicability because of the parameters involved having restricted ranges of values." @default.
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- W1537432887 date "2001-01-01" @default.
- W1537432887 modified "2023-09-27" @default.
- W1537432887 title "Transient to steady evaporation and condensation of a vapor between the cylindrical phases—Navier-Stokes and Boltzmann solutions—" @default.
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- W1537432887 doi "https://doi.org/10.1063/1.1407611" @default.
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