Study of Shock Structures Using the Unified Gas-Kinetic Wave-Particle Method with Various BGK Models
DOI10.1080/10618562.2022.2082418zbMath1496.76101OpenAlexW4282915248MaRDI QIDQ5095808
Zhongzheng Jiang, Guochao Fan, Weifang Chen, Wenwen Zhao
Publication date: 10 August 2022
Published in: International Journal of Computational Fluid Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/10618562.2022.2082418
ellipsoidal statistical modelheat fluxnon-equilibrium flowhigh Mach numberpositive-preserving Shakhov model
Shock waves and blast waves in fluid mechanics (76L05) Rarefied gas flows, Boltzmann equation in fluid mechanics (76P05) Particle methods and lattice-gas methods (76M28)
Cites Work
- Unnamed Item
- Unnamed Item
- Unified gas-kinetic scheme for diatomic molecular simulations in all flow regimes
- A numerical method for simulation of microflows by solving directly kinetic equations with WENO schemes
- A generalized hydrodynamic computational model for rarefied and microscale diatomic gas flows
- Macroscopic transport equations for rarefied gas flows. Approximation methods in kinetic theory.
- Asymptotic solutions of numerical transport problems in optically thick, diffusive regimes
- Super-Burnett corrections to the stress tensor and the heat flux in a gas of Maxwellian molecules
- The BGK-model with velocity-dependent collision frequency
- Numerical comparison between the Boltzmann and ES-BGK models for rarefied gases
- Unified gas-kinetic wave-particle methods. III: Multiscale photon transport
- Unified gas-kinetic wave-particle methods. V: Diatomic molecular flow
- Unified gas-kinetic wave-particle methods. I: Continuum and rarefied gas flow
- A unified gas-kinetic scheme for continuum and rarefied flows. IV: Full Boltzmann and model equations
- Implicit unified gas-kinetic scheme for steady state solutions in all flow regimes
- A unified gas-kinetic scheme for continuum and rarefied flows
- DISCRETE VELOCITY MODEL AND IMPLICIT SCHEME FOR THE BGK EQUATION OF RAREFIED GAS DYNAMICS
- An improved unified gas-kinetic scheme and the study of shock structures
- Thermodynamically consistent hydrodynamic computational models for high-Knudsen-number gas flows
- Regularization of Grad’s 13 moment equations: Derivation and linear analysis
- Numerical comparison of Bhatnagar–Gross–Krook models with proper Prandtl number
- Structure of normal shock waves: Direct numerical analysis of the Boltzmann equation for hard-sphere molecules
- An Undecomposed Hybrid Algorithm for Nonlinear Coupled Constitutive Relations of Rarefied Gas Dynamics
- A high-order moment approach for capturing non-equilibrium phenomena in the transition regime
- Study of rarefied shear flow by the discrete velocity method
- On the kinetic theory of rarefied gases
- The profile of a steady plane shock wave
- 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
- A gas-kinetic BGK scheme for the Navier-Stokes equations and its connection with artificial dissipation and Godunov method
This page was built for publication: Study of Shock Structures Using the Unified Gas-Kinetic Wave-Particle Method with Various BGK Models