DOE OSTI · 1826867
Parallel Multigrid in Time and Space for Extreme-Scale Computational Science
Abstract
The coming massive parallelism of exascale computing presents a pressing challenge for the many DOE simulations of time-dependent partial differential equations, which typically use traditional sequential time stepping methods. Since this traditional approach is inherently serial, it presents a sequential bottleneck when moving to exascale computing, because future performance gains will come through greater concurrency, not faster clock speeds. Thus, the goal of this work is to research parallelism in time, i.e., methods that compute multiple time values simultaneously, not sequentially. The focus will be on hyperbolic and chaotic problems of programmatic interest to DOE, with the goal of enabling scalable simulations of time-dependent hyperbolic and chaotic problems on future architectures.
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Schroder, Jacob. 2021-10-20. Parallel Multigrid in Time and Space for Extreme-Scale Computational Science. https://doi.org/10.2172/1826867
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