Onsager-Casimir reciprocal relations based on the Boltzmann equation and gas-surface interaction. Gaseous mixtures
From MaRDI portal
Publication:867058
DOI10.1007/s10955-006-9200-1zbMath1107.82022OpenAlexW1994720511MaRDI QIDQ867058
Denize Kalempa, F. M. Sharipov
Publication date: 14 February 2007
Published in: Journal of Statistical Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10955-006-9200-1
Rarefied gas flows, Boltzmann equation in fluid mechanics (76P05) Statistical mechanics of gases (82D05) Irreversible thermodynamics, including Onsager-Machlup theory (82B35)
Related Items (11)
Onsager-Casimir reciprocal relations based on the Boltzmann equation and gas-surface interaction. Gaseous mixtures ⋮ Reciprocity relations in flows of a rarefied gas between plane parallel walls with nonuniform surface properties ⋮ Sound wave propagation in rarefied molecular gases ⋮ Flows of rarefied gaseous mixtures with a low mole fraction. Separation phenomenon ⋮ Drag and thermophoresis on a sphere in a rarefied gas based on the Cercignani–Lampis model of gas–surface interaction ⋮ Symmetry of the unsteady linearized Boltzmann equation in a fixed bounded domain ⋮ Bi-velocity hydrodynamics: multicomponent fluids ⋮ Reply to the comments of Sharipov on ``Symmetry of the linearized Boltzmann equation ⋮ Comments on ``Symmetry of the linearized Boltzmann equation by S. Takata ⋮ Symmetry of the linearized Boltzmann equation and its application ⋮ Symmetry of the linearized Boltzmann equation. II: Entropy production and Onsager-Casimir relation
Cites Work
- Unnamed Item
- Onsager-Casimir reciprocal relations based on the Boltzmann equation and gas-surface interaction. Gaseous mixtures
- Application of the Cercignani-Lampis scattering kernel to calculations of rarefied gas flows. III: Poiseuille flow and thermal creep through a long tube.
- Concise and accurate solutions to half-space binary-gas flow problems defined by the McCormack model and specular-diffuse wall conditions
- Numerical analysis of thermal-slip and diffusion-slip flows of a binary mixture of hard-sphere molecular gases
- Velocity slip and temperature jump coefficients for gaseous mixtures. II. Thermal slip coefficient
- Numerical analysis of the shear flow of a binary mixture of hard-sphere gases over a plane wall
- Velocity slip and temperature jump coefficients for gaseous mixtures. III. Diffusion slip coefficient
- Velocity slip and temperature jump coefficients for gaseous mixtures. I. Viscous slip coefficient
- Flow of gaseous mixtures through rectangular microchannels driven by pressure, temperature, and concentration gradients
- Construction of linearized kinetic models for gaseous mixtures and molecular gases
- Non-equilibrium thermodynamics and liquid helium II
This page was built for publication: Onsager-Casimir reciprocal relations based on the Boltzmann equation and gas-surface interaction. Gaseous mixtures