An analytical approach to the unified solution of kinetic equations in rarefied gas dynamics. III: Evaporation and condensation problems
From MaRDI portal
Publication:980686
DOI10.1007/S00033-009-0046-7zbMath1333.76066OpenAlexW2008948741MaRDI QIDQ980686
C. S. Scherer, L. B. Barichello
Publication date: 29 June 2010
Published in: ZAMP. Zeitschrift für angewandte Mathematik und Physik (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00033-009-0046-7
Rarefied gas flows, Boltzmann equation in fluid mechanics (76P05) Kinetic theory of gases in equilibrium statistical mechanics (82B40)
Related Items (2)
A Discrete-Ordinates Solution for the Strong Evaporation Problem in Rarefied Gas Dynamics ⋮ An analytical approach to the strong evaporation problem in rarefied gas dynamics
Cites Work
- Unnamed Item
- Unnamed Item
- The linearized Boltzmann equation: sound-wave propagation in a rarefied gas
- An analytical approach to the unified solution of kinetic equations in the rarefied gas dynamics. II: Heat transfer problems
- An analytical approach to the unified solution of kinetic equations in rarefied gas dynamics. I: Flow problems
- The Boltzmann equation and its applications
- Heat transfer and evaporation/condensation problems based on the linearized Boltzmann equation.
- The McCormack model for gas mixtures: The temperature-jump problem
- Kinetic theory and fluid dynamics
- A discrete-ordinates solution for Poiseuille flow in a plane channel
- Half-space problems in the kinetic theory of gases
- SOLUTION OF THE BOLTZMANN-HILBERT INTEGRAL EQUATION II. THE COEFFICIENTS OF VISCOSITY AND HEAT CONDUCTION
- Kinetic Models and the Linearized Boltzmann Equation
- Notes on the boundary conditions for fluid-dynamic equations on the interface of a gas and its condensed phase
- The FN-method in kinetic theory I. Half-space problems
- Evaporation and condensation on a plane condensed phase: Numerical analysis of the linearized Boltzmann equation for hard-sphere molecules
- Gas flows caused by evaporation and condensation on two parallel condensed phases and the negative temperature gradient: Numerical analysis by using a nonlinear kinetic equation
- Construction of linearized kinetic models for gaseous mixtures and molecular gases
- Kinetic theory of planar condensation and evaporation
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
- A review of the rarefied gas dynamics theory associated with some classical problems in flow and heat transfer
This page was built for publication: An analytical approach to the unified solution of kinetic equations in rarefied gas dynamics. III: Evaporation and condensation problems