DOE OSTI · 1784604
Adaptive Mesh Refinement for Parallel in Time Methods
Abstract
The project applied the multigrid-reduction-in-time (MGRIT) algorithm to an existing sub-cycled adaptive mesh refinement (AMR) code to investigate the performance of flows dominated by inertial physics. Previous work demonstrated good performance from MGRIT+AMR applied to flows dominated by diffusive physics. Consistent with previous experience, inertial physics negatively affected convergence rates and performance. Efforts to circumvent this issue by appealing to the physics of turbulence were investigated. It has been demonstrated that scales can be effectively transferred between multigrid levels for a turbulent flow resulting in a) partial convergence observed and b) nearly identical results to sequential time-stepping. Performance improvements have not yet been demonstrated - attempts at coarsening the grid on coarser MG levels compromises the solution quality and leads to divergence. This report summarize the accomplishments for the time-frame from 10/5/2020 to 12/31/2020 with an informal no-cost-extension to 05/20/2021
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Guzik, Stephen, Gao, Xinfeng. 2021-05-20. Adaptive Mesh Refinement for Parallel in Time Methods. https://doi.org/10.2172/1784604
Cite the original work for its findings. Save a collection to share your selection of sources.