AbstractIn the context of multiscale computations, techniques have recently been developed that enable microscopic simulators to perform macroscopic level tasks (equation-free multiscale computations). The main tool is the so-called coarse-grained time-stepper, which implements an approximation of the unavailable macroscopic time-stepper using only the microscopic simulator. Several schemes were developed to accelerate the coarse-grained time-stepper, exploiting the smoothness in time of the macroscopic dynamics. To date, mainly the stability of these methods was analyzed. In this paper, we focus on their accuracy properties, mainly in the context of parabolic problems. We study the global error of the different methods, compare with explic...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
International audienceWe introduce a micro-macro parareal algorithm for the time-parallel integratio...
AbstractIn the context of multiscale computations, techniques have recently been developed that enab...
AbstractTime integration schemes with a fixed time step, much smaller than the dominant slow time sc...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
We discuss through multiple numerical examples the accuracy and efficiency of a micro-macro accelera...
textabstractTo solve ODEs with different time scales which are localized over the components, multir...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
Abstract. We introduce a micro-macro parareal algorithm for the time-parallel integration of multisc...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
International audienceWe introduce a micro-macro parareal algorithm for the time-parallel integratio...
AbstractIn the context of multiscale computations, techniques have recently been developed that enab...
AbstractTime integration schemes with a fixed time step, much smaller than the dominant slow time sc...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
We discuss through multiple numerical examples the accuracy and efficiency of a micro-macro accelera...
textabstractTo solve ODEs with different time scales which are localized over the components, multir...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
Abstract. We introduce a micro-macro parareal algorithm for the time-parallel integration of multisc...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
Time integration schemes with a fixed time step, much smaller than the dominant slow time scales of ...
Multirate time stepping is a numerical technique for efficiently solving large-scale ordinary differ...
International audienceWe introduce a micro-macro parareal algorithm for the time-parallel integratio...