Application of the integro-moment method to steady-state two-dimensional rarefied gas flows subject to boundary induced discontinuities
DOI10.1016/j.jcp.2008.03.008zbMath1388.76276OpenAlexW2112705225WikidataQ122247779 ScholiaQ122247779MaRDI QIDQ939494
Dimitris Valougeorgis, Stelios Varoutis, F. M. Sharipov
Publication date: 22 August 2008
Published in: Journal of Computational Physics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jcp.2008.03.008
Fredholm integral equationsrarefied gas flowsnon-equilibrium flowsKnudsen numberBoltzmann and kinetic model equations
Lua error in Module:PublicationMSCList at line 37: attempt to index local 'msc_result' (a nil value).
Related Items (9)
Cites Work
- Unnamed Item
- Evaluation of the integral \(\int^\infty_0t^n \exp(-t^2-x/t)dt\)
- Application of the integro-moment method to steady-state two-dimensional rarefied gas flows subject to boundary induced discontinuities
- Conservative evaluation of Boltzmann collision integral in discrete ordinates approximation
- The Boltzmann equation and its applications
- New directions in fluid dynamics: non-equilibrium aerodynamic and microsystem flows
- Direct simulation of gas flows at the molecular level
- Gas flow near a plate oscillating longitudinally with an arbitrary frequency
- Numerical analysis of thermal-slip and diffusion-slip flows of a binary mixture of hard-sphere molecular gases
- The driven cavity flow over the whole range of the Knudsen number
- Flow of gaseous mixtures through rectangular microchannels driven by pressure, temperature, and concentration gradients
- Couette flow of a binary gas mixture
- Numerical analysis of a flow induced in a rarefied gas between noncoaxial circular cylinders with different temperatures for the entire range of the Knudsen number
- Discontinuity of the velocity distribution function in a rarefied gas around a convex body and the S layer at the bottom of the Knudsen layer
- Acceleration Schemes of the Discrete Velocity Method: Gaseous Flows in Rectangular Microchannels
- Motion of a sphere in a rarefied gas
- A NOTE ON THE PROPAGATION OF BOUNDARY INDUCED DISCONTINUITIES IN KINETIC THEORY
- Flow of Rarefied Gas through a Circular Pipe
- Some Boundary Value Problems in the Kinetic Theory of Gases
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
- Direct methods for solving the Boltzmann equation and study of nonequilibrium flows
This page was built for publication: Application of the integro-moment method to steady-state two-dimensional rarefied gas flows subject to boundary induced discontinuities