International audienceWe present a general, high-order, fully explicit relaxation scheme which can be applied to any system of nonlinear hyperbolic conservation laws in multiple dimensions. The scheme consists of two steps. In a first (relaxation) step, the nonlinear hyperbolic conservation law is approximated by a kinetic equation with stiff BGK source term. Then, this kinetic equation is integrated in time using a projective integration method. After taking a few small (inner) steps with a simple, explicit method (such as direct forward Euler) to damp out the stiff components of the solution, the time derivative is estimated and used in an (outer) Runge–Kutta method of arbitrary order. We show that, with an appropriate choice of inner ste...
A new genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity Bo...
A new genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity Bo...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
International audienceWe present a general, high-order, fully explicit relaxation scheme which can b...
International audienceWe present a general, high-order, fully explicit relaxation scheme which can b...
We present a general, high-order, fully explicit relaxation scheme which can be applied to any syste...
We present a general, high-order, fully explicit, relaxation scheme for systems of nonlinear hyperbo...
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 ...
A new algorithm for the numerical solution of stiff hyperbolic relaxation systems is presented. It i...
A novel genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity ...
A novel genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity ...
. A general idea for solving hyperbolic systems of conservation laws is to use a local relaxation ap...
A new genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity Bo...
A new genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity Bo...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...
International audienceWe present a general, high-order, fully explicit relaxation scheme which can b...
International audienceWe present a general, high-order, fully explicit relaxation scheme which can b...
We present a general, high-order, fully explicit relaxation scheme which can be applied to any syste...
We present a general, high-order, fully explicit, relaxation scheme for systems of nonlinear hyperbo...
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 ...
A new algorithm for the numerical solution of stiff hyperbolic relaxation systems is presented. It i...
A novel genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity ...
A novel genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity ...
. A general idea for solving hyperbolic systems of conservation laws is to use a local relaxation ap...
A new genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity Bo...
A new genuinely multi-dimensional relaxation scheme is proposed. Based on a new discrete velocity Bo...
We study a projective integration scheme for a kinetic equation in both the diffusive and hydrodynam...