Parallel universal access layer: A scalable I/O library for integrated tokamak modeling
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Summary
The outcome shows that the new implementation of the Universal Access Layer extension enables the I/O of datasets with several GB in size but also speeds up the write rate by a factor of 13 in the best case.
- Type
- article
- Published
- 2013-03-01
- Cited by
- 4
- References
- 11
- OpenAlex
- https://openalex.org/W2065646313
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8197798
Keywords
Computer science, Tokamak, Scalability, File system, Snapshot (computer storage)
References
- MPI: A Message-Passing Interface Standard
- HDF: an update and future directions
- A universal access layer for the Integrated Tokamak Modelling Task Force
- Impact of large island perturbations on turbulent blob transport in tokamaks
- A generic data structure for integrated modelling of tokamak physics and subsystems
- The Globus Striped GridFTP Framework and Server
- An overview of the ITER project
- gGEM: A Gyrofluid Model to be Used on Distributed Platforms
- Scalable massively parallel I/O to task-local files
- Kepler: an extensible system for design and execution of scientific workflows
- GPFS: A Shared-Disk File System for Large Computing Clusters
- Proceedings of the Fast 2002 Conference on File and Storage Technologies Gpfs: a Shared-disk File System for Large Computing Clusters
Cited by
- Visualization support for code development in EUROfusion integrated modelling
- Recent EUROfusion Achievements in Support of Computationally Demanding Multiscale Fusion Physics Simulations and Integrated Modeling
- Unified Approach to Visualizations within the European Integrated Tokamak Modelling Framework
- Recent EUROfusion achievements in support of computationally demanding multi-scale fusion physics simulations and integrated modelling
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