Proceedings FVCA 8International audienceWe present a high-order, fully explicit, asymptotic-preserving projective integration scheme for the nonlinear BGK equation. The method first takes a few small (inner) steps with a simple, explicit method (such as direct forward Euler) to damp out the stiff components of the solution. Then, the time derivative is estimated and used in an (outer) Runge-Kutta method of arbitrary order. Based on the spectrum of the linearized BGK operator, we deduce that, with an appropriate choice of inner step size, the time step restriction on the outer time step as well as the number of inner time steps is independent of the stiffness of the BGK source term. We illustrate the method with numerical results in one and ...
AbstractWe study the design of a general, fully explicit numerical method for simulating kinetic equ...
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...
© Springer International Publishing AG 2017. We present a high-order, fully explicit, asymptotic-pre...
Proceedings FVCA 8International audienceWe present a high-order, fully explicit, asymptotic-preservi...
Proceedings FVCA 8International audienceWe present a high-order, fully explicit, asymptotic-preservi...
International audienceWe present high-order, fully explicit projective integration schemes for nonli...
We propose fully explicit projective integration and telescopic projective integration schemes for t...
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 ...
36 pages, 16 figures, 3 tablesInternational audienceWe propose fully explicit projective integration...
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 study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
We present a general, high-order, fully explicit, relaxation scheme for systems of nonlinear hyperbo...
AbstractWe study the design of a general, fully explicit numerical method for simulating kinetic equ...
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...
© Springer International Publishing AG 2017. We present a high-order, fully explicit, asymptotic-pre...
Proceedings FVCA 8International audienceWe present a high-order, fully explicit, asymptotic-preservi...
Proceedings FVCA 8International audienceWe present a high-order, fully explicit, asymptotic-preservi...
International audienceWe present high-order, fully explicit projective integration schemes for nonli...
We propose fully explicit projective integration and telescopic projective integration schemes for t...
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 ...
36 pages, 16 figures, 3 tablesInternational audienceWe propose fully explicit projective integration...
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 study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
We present a general, high-order, fully explicit, relaxation scheme for systems of nonlinear hyperbo...
AbstractWe study the design of a general, fully explicit numerical method for simulating kinetic equ...
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...