Pages that link to "Item:Q4838757"
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The following pages link to 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 (Q4838757):
Displaying 15 items.
- A spectral-Lagrangian Boltzmann solver for a multi-energy level gas (Q348951) (← links)
- An analytical approach to the strong evaporation problem in rarefied gas dynamics (Q493582) (← links)
- Temperature and pressure criteria for half-space discrete velocity models (Q701062) (← links)
- An analytical approach to the unified solution of kinetic equations in rarefied gas dynamics. III: Evaporation and condensation problems (Q980686) (← links)
- Evaporation from or condensation onto a sphere: Numerical analysis of the Boltzmann equation for hard-sphere molecules (Q1130384) (← links)
- Heat transfer and evaporation/condensation problems based on the linearized Boltzmann equation. (Q1418164) (← links)
- A hybrid discontinuous Galerkin scheme for multi-scale kinetic equations (Q2000469) (← links)
- Kinetic theory analysis of the two-surface problem of a vapor–vapor mixture in the continuum limit (Q3554469) (← links)
- Notes on the boundary conditions for fluid-dynamic equations on the interface of a gas and its condensed phase (Q3555352) (← links)
- Qualitative analysis of the Navier–Stokes equations for evaporation–condensation problems (Q4426444) (← links)
- Criteria for inverted temperatures in evaporation–condensation processes (Q4716465) (← links)
- Numerical analysis of a rarefied gas flow past a volatile particle using the Boltzmann equation for hard-sphere molecules (Q4841880) (← links)
- Boundary conditions at the vapor-liquid interface (Q5244914) (← links)
- A Discrete-Ordinates Solution for the Strong Evaporation Problem in Rarefied Gas Dynamics (Q6084594) (← links)
- Stationary flows of the ES-BGK model with the correct Prandtl number (Q6612259) (← links)