International audienceWe investigate a projective integration scheme for a kinetic equation in the limit of vanishing mean free path, in which the kinetic description approaches a diffusion phenomenon. The scheme first takes a few small steps with a simple, explicit method, such as a spatial centered flux/forward Euler time integration, and subsequently projects the results forward in time over a large time step on the diffusion time scale. We show that, with an appropriate choice of the inner step size, the time-step restriction on the outer time step is similar to the stability condition for the diffusion equation, whereas the required number of inner steps does not depend on the mean free path. We also provide a consistency result. The p...
International audienceWe propose a new numerical scheme for linear transport equations. It is based ...
We investigate a high-order, fully explicit, asymptotic-preserving scheme for a kinetic equation wit...
We propose a multilevel Monte Carlo method for a particle-based asymptotic-preserving scheme for kin...
International audienceWe investigate a projective integration scheme for a kinetic equation in the l...
International audienceWe investigate a projective integration scheme for a kinetic equation in the l...
International audienceWe investigate a projective integration scheme for a kinetic equation in the l...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
We investigate a high-order, fully explicit, asymptotic-preserving scheme for a kinetic equation wit...
International audienceWe investigate a high-order, fully explicit, asymptotic-preserving scheme for ...
International audienceWe investigate a high-order, fully explicit, asymptotic-preserving scheme for ...
International audienceWe investigate a high-order, fully explicit, asymptotic-preserving scheme for ...
We present a mathematical analysis of the asymptotic preserving scheme proposed in [M. Lemou and L. ...
International audienceWe propose a new numerical scheme for linear transport equations. It is based ...
We propose a new numerical scheme for linear transport equations. It is based on a decomposition of ...
International audienceWe propose a new numerical scheme for linear transport equations. It is based ...
We investigate a high-order, fully explicit, asymptotic-preserving scheme for a kinetic equation wit...
We propose a multilevel Monte Carlo method for a particle-based asymptotic-preserving scheme for kin...
International audienceWe investigate a projective integration scheme for a kinetic equation in the l...
International audienceWe investigate a projective integration scheme for a kinetic equation in the l...
International audienceWe investigate a projective integration scheme for a kinetic equation in the l...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
We investigate a high-order, fully explicit, asymptotic-preserving scheme for a kinetic equation wit...
International audienceWe investigate a high-order, fully explicit, asymptotic-preserving scheme for ...
International audienceWe investigate a high-order, fully explicit, asymptotic-preserving scheme for ...
International audienceWe investigate a high-order, fully explicit, asymptotic-preserving scheme for ...
We present a mathematical analysis of the asymptotic preserving scheme proposed in [M. Lemou and L. ...
International audienceWe propose a new numerical scheme for linear transport equations. It is based ...
We propose a new numerical scheme for linear transport equations. It is based on a decomposition of ...
International audienceWe propose a new numerical scheme for linear transport equations. It is based ...
We investigate a high-order, fully explicit, asymptotic-preserving scheme for a kinetic equation wit...
We propose a multilevel Monte Carlo method for a particle-based asymptotic-preserving scheme for kin...