The formulation of computationally efficient methods describing gas mixtures at kinetic level suitable for demanding aerospace applications presents significant challenges. This work presents a gas-kinetic scheme for binary gas mixtures in which the kinetic model is capable of recovering, in the continuum limit, the correct heat transfer, mixture viscosity, and species diffusion. The model accounts for separate species-mean velocity such that the species diffusion and velocity drift are accurately represented. The main goal is to derive a numerically efficient gas kinetic scheme (GKS) method that has the ability to accurately model species diffusion and velocity drift, such that two-species Navier–Stokes equations are recovered with the cor...
The need of developing advanced micro-electro-mechanical systems (MEMS) has motivated the study of f...
Recent progress in the development of the gas-kinetic scheme is reviewed in this article, with empha...
A multispeed discrete‐velocity molecular model of a rarefied gas is developed which permits quantita...
Many high-speed flows of engineering and scientific importance involve gas mixtures. Accounting for ...
The discrete unified gas kinetic scheme (DUGKS) was originally developed for single-species flows co...
Gas mixtures are important for many practical applications. Extending kinetic model equations of the...
Engineering applications that include flows with thermodynamic non-equilibrium and rarefaction effec...
AbstractThe Boltzmann simplified velocity distribution function equation, as adapted to various flow...
erworben im Rahmen der Schweizer Nationallizenzen (www.nationallizenzen.ch)Gas-kinetic theory is als...
AbstractHypersonic flows about space vehicles produce flowfields in thermodynamic non-equilibrium wi...
Thermally induced non-equilibrium gas flows have been simulated in the present study by coupling kin...
In this article, we present the applications of the discrete unified gas kinetic scheme (DUGKS) for ...
In the study of rarefied gas dynamics, the discrete velocity method (DVM) has been widely employed t...
It is well known that for increasingly rarefied flowfields, the predictions from continuum formulati...
Practical applications involve flows that often have more than one constituent. Therefore, the capab...
The need of developing advanced micro-electro-mechanical systems (MEMS) has motivated the study of f...
Recent progress in the development of the gas-kinetic scheme is reviewed in this article, with empha...
A multispeed discrete‐velocity molecular model of a rarefied gas is developed which permits quantita...
Many high-speed flows of engineering and scientific importance involve gas mixtures. Accounting for ...
The discrete unified gas kinetic scheme (DUGKS) was originally developed for single-species flows co...
Gas mixtures are important for many practical applications. Extending kinetic model equations of the...
Engineering applications that include flows with thermodynamic non-equilibrium and rarefaction effec...
AbstractThe Boltzmann simplified velocity distribution function equation, as adapted to various flow...
erworben im Rahmen der Schweizer Nationallizenzen (www.nationallizenzen.ch)Gas-kinetic theory is als...
AbstractHypersonic flows about space vehicles produce flowfields in thermodynamic non-equilibrium wi...
Thermally induced non-equilibrium gas flows have been simulated in the present study by coupling kin...
In this article, we present the applications of the discrete unified gas kinetic scheme (DUGKS) for ...
In the study of rarefied gas dynamics, the discrete velocity method (DVM) has been widely employed t...
It is well known that for increasingly rarefied flowfields, the predictions from continuum formulati...
Practical applications involve flows that often have more than one constituent. Therefore, the capab...
The need of developing advanced micro-electro-mechanical systems (MEMS) has motivated the study of f...
Recent progress in the development of the gas-kinetic scheme is reviewed in this article, with empha...
A multispeed discrete‐velocity molecular model of a rarefied gas is developed which permits quantita...