Resumé
Studies of glaciers and ice sheets have increased the demand for high performance numerical ice flow models over the past decades. When exploring the highly non-linear dynamics of fast flowing glaciers and ice streams, or when coupling multiple flow processes for ice, water, and sediment, researchers are often forced to use super-computing clusters. As an alternative to conventional high-performance computing hardware, the Graphical Processing Unit (GPU) is capable of massively parallel computing while retaining a compact design and low cost. In this study, we present a strategy for accelerating a higher-order ice flow model using a GPU. By applying the newest GPU hardware, we achieve up to 180× speedup compared to a similar but serial CPU implementation. Our results suggest that GPU acceleration is a competitive option for ice-flow modelling when compared to CPU-optimised algorithms parallelised by the OpenMP or Message Passing Interface (MPI) protocols.
| Originalsprog | Engelsk |
|---|---|
| Sider (fra-til) | 210-220 |
| Antal sider | 11 |
| Tidsskrift | Computers and Geosciences |
| Vol/bind | 72 |
| DOI | |
| Status | Udgivet - nov. 2014 |
Programområde
- Programområde 5: Natur og klima
Fingeraftryk
Dyk ned i forskningsemnerne om 'Ice-sheet modelling accelerated by graphics cards'. Sammen danner de et unikt fingeraftryk.Citationsformater
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