International audienceThis paper introduces a new class of numerical methods for the time integration of evolution equations set as Cauchy problems of ODEs or PDEs. The systematic design of these methods mixes the Runge–Kutta collocation formalism with collocation techniques, in such a way that the methods are linearly implicit and have high order. The fact that these methods are implicit allows to avoid CFL conditions when the large systems to integrate come from the space discretization of evolution PDEs. Moreover, these methods are expected to be efficient since they only require to solve one linear system of equations at each time step, and efficient techniques from the literature can be used to do so. After the introduction of the meth...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
This paper introduces a new class of numerical methods for the time integration of evolution equatio...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
This paper introduces a new class of numerical methods for the time integration of evolution equatio...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
ABSTRACT—The stability and accuracy of the numerical integration of the time-evolution equation obta...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
International audienceThe main purpose of the paper is to show how to use implicit-explicit (IMEX) R...
This chapter describes implicit time integration methods developed by four TILDA partners for the ap...
Abstract. Stiffly accurate implicit Runge–Kutta methods are studied for the time discretisation of n...
We consider the construction of semi-implicit linear multistep methods which can be applied to time ...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
This paper introduces a new class of numerical methods for the time integration of evolution equatio...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
This paper introduces a new class of numerical methods for the time integration of evolution equatio...
International audienceThis paper introduces a new class of numerical methods for the time integratio...
ABSTRACT—The stability and accuracy of the numerical integration of the time-evolution equation obta...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
International audienceThe main purpose of the paper is to show how to use implicit-explicit (IMEX) R...
This chapter describes implicit time integration methods developed by four TILDA partners for the ap...
Abstract. Stiffly accurate implicit Runge–Kutta methods are studied for the time discretisation of n...
We consider the construction of semi-implicit linear multistep methods which can be applied to time ...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...
The talk focuses on recent advances in the adapted numerical solution of evolutionary problems, most...