activity
20172020
most citedNon-equilibrium transport of inhomogeneous shale gas under ultra-tight confinement

3 citations · 6 across the 4 of their papers we have counts for

collaborators

5 papers

physics.flu-dyn20201 cited

Non-ideal gas dynamics under confinement: rarefaction effect, dense effect and molecular interaction

Baochao Shan, Peng Wang, Songze Chen +1

The effects of volume exclusion and long-range intermolecular attraction are investigated by the simplified kinetic model for surface-confined inhomogeneous fluids. Gas dynamics of…

physics.geo-ph20203 cited

Non-equilibrium transport of inhomogeneous shale gas under ultra-tight confinement

Baochao Shan, Runxi Wang, Peng Wang +3

The non-equilibrium transport of inhomogeneous and dense gases highly confined by surface is encountered in many engineering applications. For example, in the shale gas production…

physics.comp-ph2019

Can we find steady-state solutions to multiscale rarefied gas flows within dozens of iterations?

Wei Su, Lianhua Zhu, Peng Wang +2

One of the central problems in the study of rarefied gas dynamics is to find the steady-state solution of the Boltzmann equation quickly. When the Knudsen number is large, i.e. the…

physics.comp-ph20192 cited

Implicit Discontinuous Galerkin Method for the Boltzmann Equation

Wei Su, Peng Wang, Yonghao Zhang +1

An implicit high-order discontinuous Galerkin (DG) method is developed to find steady-state solution of rarefied gas flow described by the Boltzmann equation with full collision op…

physics.comp-ph2017

A multi-level parallel solver for rarefied gas flows in porous media

Minh Tuan Ho, Lianhua Zhu, Lei Wu +4

A high-performance gas kinetic solver using multi-level parallelization is developed to enable pore-scale simulations of rarefied flows in porous media. The Boltzmann model equatio…