International audienceIn this paper we present a parallelization strategy on distributed memory systems for the Fast Kinetic Scheme - a semi-Lagrangian scheme developed in U. Comput. Phys., Vol. 255, 2013, pp 680-698] for solving kinetic equations. The original algorithm was proposed for the BGK approximation of the collision kernel. In this work we deal with its extension to the full Boltzmann equation in six dimensions, where the collision operator is resolved by means of fast spectral method. We present close to ideal scalability of the proposed algorithm on tera- and peta-scale systems
The paper presents a parallelization technique for the finite pointset method, a numerical method fo...
In this Note we present methods for the development of fast numerical schemes for the Boltzmann coll...
The impressive progress of the kinetic consistent schemes in the solution of the gas dynamics probl...
International audienceIn this paper we present a parallelization strategy on distributed memory syst...
International audienceIn this paper we deal with the extension of the Fast Kinetic Scheme (FKS) [J. ...
In this paper we demonstrate the capability of the fast semi-Lagrangian scheme developed in [20] and...
In this paper we present a new ultra efficient numerical method for solving kinetic equations. In th...
In a recent paper we presented a new ultra efficient numerical method for solving kinetic equations ...
In this manuscript we review the basic techniques for the application of spectral methods to kinetic...
The impressive progress of the kinetic schemes in the solution of gas dynamics problems and the deve...
The development of accurate and fast numerical schemes for the five fold Boltzmann collision integra...
In this paper we present a new ultra efficient numerical method for solving ki-netic equations. In t...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
We introduce an extension of the fast semi-Lagrangian scheme developed in J Comput Phys 255:680–698 ...
Particle simulations are the most widely used methods for the numerical solution of the Boltzmann eq...
The paper presents a parallelization technique for the finite pointset method, a numerical method fo...
In this Note we present methods for the development of fast numerical schemes for the Boltzmann coll...
The impressive progress of the kinetic consistent schemes in the solution of the gas dynamics probl...
International audienceIn this paper we present a parallelization strategy on distributed memory syst...
International audienceIn this paper we deal with the extension of the Fast Kinetic Scheme (FKS) [J. ...
In this paper we demonstrate the capability of the fast semi-Lagrangian scheme developed in [20] and...
In this paper we present a new ultra efficient numerical method for solving kinetic equations. In th...
In a recent paper we presented a new ultra efficient numerical method for solving kinetic equations ...
In this manuscript we review the basic techniques for the application of spectral methods to kinetic...
The impressive progress of the kinetic schemes in the solution of gas dynamics problems and the deve...
The development of accurate and fast numerical schemes for the five fold Boltzmann collision integra...
In this paper we present a new ultra efficient numerical method for solving ki-netic equations. In t...
The Boltzmann equation, an integro-differential equation for the molecular distribution function in ...
We introduce an extension of the fast semi-Lagrangian scheme developed in J Comput Phys 255:680–698 ...
Particle simulations are the most widely used methods for the numerical solution of the Boltzmann eq...
The paper presents a parallelization technique for the finite pointset method, a numerical method fo...
In this Note we present methods for the development of fast numerical schemes for the Boltzmann coll...
The impressive progress of the kinetic consistent schemes in the solution of the gas dynamics probl...