Efficient modeling of rarefied flow has drawn widespread interest for practical engineering applications. In the present work, we proposed the Grad's distribution function for 13 moments-based moment gas kinetic solver (G13-MGKS) and the macroscopic governing equations are derived based on the moment integral of discrete Boltzmann equation in the finite volume framework. Numerical fluxes at the cell interface related to the macroscopic variables, stress and heat flux can be reconstructed from the Boltzmann integration equation at surrounding points of the cell interface directly, so the complicated partial differential equations with tedious implementation of boundary conditions in the moment method can be avoided. Meanwhile, the explicit e...
The accurate and computationally efficient prediction of rarefied gas flows remains a challenging re...
In this study, we propose a non-linear continuous stochastic velocity process for simulations of mon...
Various engineering problems imply rarefied gas flows that rely in the transition and free molecula...
In the study of rarefied gas dynamics, the discrete velocity method (DVM) has been widely employed t...
Hyperbolic moment equations for the simulation of rarefied gas flows are derived and solved using ap...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
With discretized particle velocity space, a multiscale unified gas-kinetic scheme for entire Knudsen...
For increasingly rarefied flowfields, the predictions from continuum formulation, such as the Navier...
The method of moments provides a flexible mathematical framework to derive reduced-order models for ...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
Non-equilibrium rarefied flows are encountered frequently in supersonic flight at high altitudes, va...
Abstract. In this paper we present fundamental properties and new results for the regularized 13-mom...
The accurate and computationally efficient prediction of rarefied gas flows remains a challenging re...
In this study, we propose a non-linear continuous stochastic velocity process for simulations of mon...
Various engineering problems imply rarefied gas flows that rely in the transition and free molecula...
In the study of rarefied gas dynamics, the discrete velocity method (DVM) has been widely employed t...
Hyperbolic moment equations for the simulation of rarefied gas flows are derived and solved using ap...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
One of the central problems in the study of rarefied gas dynamics is to find the steady-state soluti...
With discretized particle velocity space, a multiscale unified gas-kinetic scheme for entire Knudsen...
For increasingly rarefied flowfields, the predictions from continuum formulation, such as the Navier...
The method of moments provides a flexible mathematical framework to derive reduced-order models for ...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
Non-equilibrium rarefied flows are encountered frequently in supersonic flight at high altitudes, va...
Abstract. In this paper we present fundamental properties and new results for the regularized 13-mom...
The accurate and computationally efficient prediction of rarefied gas flows remains a challenging re...
In this study, we propose a non-linear continuous stochastic velocity process for simulations of mon...
Various engineering problems imply rarefied gas flows that rely in the transition and free molecula...