collaborators

6 papers

physics.comp-ph2026

An efficient treatment of heat-flux boundary conditions in GSIS for rarefied gas flows

Yanbing Zhang, Ruifeng Yuan, Liyan Luo +1

Heat-flux boundary conditions are challenging to implement efficiently in rarefied gas flow simulations because the wall-reflected gas temperature and density must be determined dy…

physics.comp-ph2025

Fast-Converging and Asymptotic-Preserving DSMC

Bin Hu, Liyan Luo, Kaiyuan Wang +1

Improving the efficiency of the direct simulation Monte Carlo (DSMC) method has become increasingly urgent with the rapid development of space exploration. To address this issue, t…

physics.flu-dyn2025

Accelerating the Monte Carlo simulation of the Enskog equation for multiscale dense gas flows

Bin Hu, Liyan Luo, Lei Wu

A general synthetic iterative scheme is proposed to solve the Enskog equation within a Monte Carlo framework. The method demonstrates rapid convergence by reducing intermediate Mon…

physics.flu-dyn2025

Enhancing DSMC simulations of rarefied gas mixtures using a fast-converging and asymptotic-preserving scheme

Liyan Luo, Jianan Zeng, Yanbin Zhang +3

The numerical simulation of rarefied gas mixture dynamics with disparate masses using the direct simulation Monte Carlo (DSMC) method is slow, primarily because the time step is co…

physics.comp-ph2025

Multiscale simulation of interacting turbulent and rarefied gas flows in the DSMC framework

Liyan Luo, Songyan Tian, Lei Wu

A multiscale stochastic-deterministic coupling method is proposed to investigate the complex interactions between turbulent and rarefied gas flows within a unified framework. This…

physics.comp-ph2025

Multiscale simulation of rarefied polyatomic gas flow via DIG method

Liyan Luo, Tao Huang, Qi Li +1

A novel multiscale numerical method is developed to accelerate direct simulation Monte Carlo (DSMC) simulations for polyatomic gases with internal energy. This approach applies the…