Kinetic Fokker-Planck (FP) methods for modeling rarefied gas flows have received increasing attention over the last few years. However, formulating such models for realistic multi-species gases is still an open subject of research. Therefore, in this letter, we develop a kinetic FP model for describing gas mixtures with particles interacting according to the variable hard-sphere interaction potential. In accordance with the kinetic FP framework, a stochastic solution algorithm is employed in order to solve the model on a particle level. Different test cases are carried out, and the performance of the proposed method is compared with the direct simulation Monte Carlo algorithm
The flow through a thin slit and a thin orifice is studied with the Direct Simulation Monte Carlo (D...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
The Direct Simulation Monte Carlo (DSMC) method is widely used to model non-equilibrium rarefied gas...
Kinetic Fokker-Planck (FP) methods for modeling rarefied gas flows have received increasing attentio...
Numerical, aerodynamic analysis of spacecraft requires the modeling of rarefied hypersonic flows. Su...
Flows encountered in space applications, like atmospheric reentry or jet plume interactions, are cha...
In this study, we propose a non-linear continuous stochastic velocity process for simulations of mon...
The modeling of gas flows as for re-entry vehicles or jet plume expansion faces a large range of the...
Numerical simulation of hypersonic rarefied gas flows requires modelling of non-equilibrium flow phe...
In recent years the kinetic Fokker-Planck approach for modeling gas flows has become increasingly po...
The design of spacecraft requires modeling of a wide range of rarefaction and non-equilibrium flow e...
The topic of this thesis is the analysis and parallel implementation of the Fokker-Planck-DSMC algor...
This minicourse contains a description of recent results on the modelling of rarefied gases in weakl...
The aim of this book is to provide a consistent treatment of kinetic equations both from the viewpo...
Introduction Particle methods to simulate rarefied gas flows have found an increasing interest in C...
The flow through a thin slit and a thin orifice is studied with the Direct Simulation Monte Carlo (D...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
The Direct Simulation Monte Carlo (DSMC) method is widely used to model non-equilibrium rarefied gas...
Kinetic Fokker-Planck (FP) methods for modeling rarefied gas flows have received increasing attentio...
Numerical, aerodynamic analysis of spacecraft requires the modeling of rarefied hypersonic flows. Su...
Flows encountered in space applications, like atmospheric reentry or jet plume interactions, are cha...
In this study, we propose a non-linear continuous stochastic velocity process for simulations of mon...
The modeling of gas flows as for re-entry vehicles or jet plume expansion faces a large range of the...
Numerical simulation of hypersonic rarefied gas flows requires modelling of non-equilibrium flow phe...
In recent years the kinetic Fokker-Planck approach for modeling gas flows has become increasingly po...
The design of spacecraft requires modeling of a wide range of rarefaction and non-equilibrium flow e...
The topic of this thesis is the analysis and parallel implementation of the Fokker-Planck-DSMC algor...
This minicourse contains a description of recent results on the modelling of rarefied gases in weakl...
The aim of this book is to provide a consistent treatment of kinetic equations both from the viewpo...
Introduction Particle methods to simulate rarefied gas flows have found an increasing interest in C...
The flow through a thin slit and a thin orifice is studied with the Direct Simulation Monte Carlo (D...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
The Direct Simulation Monte Carlo (DSMC) method is widely used to model non-equilibrium rarefied gas...