Vapor flows condensing at incidence onto a plane condensed phase in the presence of a noncondensable gas. II. Supersonic condensation
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Publication:3554211
DOI10.1063/1.1630324zbMath1186.76514OpenAlexW4235017969MaRDI QIDQ3554211
Kazuo Aoki, Satoshi Taguchi, Shigeru Takata
Publication date: 22 April 2010
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/2433/39784
Related Items (8)
Vapor flows along a plane condensed phase with weak condensation in the presence of a noncondensable gas ⋮ A numerical algorithm for kinetic modelling of evaporation processes ⋮ Molecular gas dynamics analysis on condensation coefficient of vapour during gas–vapour bubble collapse ⋮ Vapor flows with evaporation and condensation in the continuum limit: Effect of a trace of noncondensable gas. ⋮ Half-space problem for the discrete Boltzmann equation: condensing vapor flow in the presence of a non-condensable gas ⋮ Kinetic theory analysis of the two-surface problem of a vapor–vapor mixture in the continuum limit ⋮ Vapor flows in the continuum limit in the presence of a small amount of noncondensable gas ⋮ Model Boltzmann equation for gas mixtures: Construction and numerical comparison
Cites Work
- Analytical study of transonic flows of a gas condensing onto its plane condensed phase on the basis of kinetic theory
- Vapor flows with evaporation and condensation in the continuum limit: Effect of a trace of noncondensable gas.
- Notes on the boundary conditions for fluid-dynamic equations on the interface of a gas and its condensed phase
- Gas-dynamic boundary conditions of evaporation and condensation: Numerical analysis of the Knudsen layer
- Vapor flows condensing at incidence onto a plane condensed phase in the presence of a noncondensable gas. I. Subsonic condensation
- A kinetic model for a multicomponent gas
- Numerical analysis of steady flows of a gas condensing on or evaporating from its plane condensed phase on the basis of kinetic theory: Effect of gas motion along the condensed phase
- Kinetic theory analysis of gas flows condensing on a plane condensed phase: Case of a mixture of a vapor and a noncondensable gas
- Numerical analysis of gas flows condensing on its plane condensed phase on the basis of kinetic theory
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
- Entropy inequalities for evaporation/condensation problem in rarefied gas dynamics
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