Numerical Transport Process of Splitting Kinetic Schemes in the Navier–Stokes–Fourier Limit
DOI10.1080/10618562.2021.2023737zbMath1487.76061OpenAlexW4293169846MaRDI QIDQ5075250
Yajun Zhu, Kun Xue, Cheng-Wen Zhong
Publication date: 10 May 2022
Published in: International Journal of Computational Fluid Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/10618562.2021.2023737
finite volume methodBoltzmann equationlattice Boltzmann methodasymptotic preservingeffective relaxation timemultiscale kinetic method
Finite volume methods applied to problems in fluid mechanics (76M12) Rarefied gas flows, Boltzmann equation in fluid mechanics (76P05) Particle methods and lattice-gas methods (76M28) Compressible Navier-Stokes equations (76N06)
Cites Work
- Study on gas kinetic unified algorithm for flows from rarefied transition to continuum.
- Rarefied flow computations using nonlinear model Boltzmann equations
- Ray effect in rarefied flow simulation
- The lattice Boltzmann method for nearly incompressible flows
- An implicit unified gas-kinetic scheme for unsteady flow in all Knudsen regimes
- Unified gas-kinetic wave-particle methods. I: Continuum and rarefied gas flow
- DSMC simulation of hypersonic flows using an improved SBT-TAS technique
- Implicit unified gas-kinetic scheme for steady state solutions in all flow regimes
- A class of asymptotic-preserving schemes for kinetic equations and related problems with stiff sources
- A unified gas-kinetic scheme for continuum and rarefied flows
- Asymptotic preserving Monte Carlo methods for the Boltzmann equation
- Time Relaxed Monte Carlo Methods for the Boltzmann Equation
- Asymptotic Preserving Implicit-Explicit Runge--Kutta Methods for Nonlinear Kinetic Equations
- Lattice Boltzmann Method and Its Applications in Engineering
- Radiometric flow in periodically patterned channels: fluid physics and improved configurations
- LATTICE BOLTZMANN METHOD FOR FLUID FLOWS
- DISCRETE VELOCITY MODEL AND IMPLICIT SCHEME FOR THE BGK EQUATION OF RAREFIED GAS DYNAMICS
- Direct Modeling for Computational Fluid Dynamics
- A Model for Collision Processes in Gases. I. Small Amplitude Processes in Charged and Neutral One-Component Systems
- A Unified Computational Fluid Dynamics Framework from Rarefied to Continuum Regimes
- Direct methods for solving the Boltzmann equation and study of nonequilibrium flows
- A gas-kinetic BGK scheme for the Navier-Stokes equations and its connection with artificial dissipation and Godunov method
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