This third volume will be a continuation of the two previous volumes, and will include other HPC ecosystems using the same chapter outline: description of a flagship system, major application workloads, facilities, and sponsors.
Features:
- Describes many prominent, international systems in HPC from 2015 through 2017 including each system’s hardware and software architecture
- Covers facilities for each system including power and cooling
- Presents application workloads for each site
- Discusses historic and projected trends in technology and applications
- Includes contributions from leading experts
Designed for researchers and students in high performance computing, computational science, and related areas, this book provides a valuable guide to the state-of-the art research, trends, and resources in the world of HPC.
This third volume will be a continuation of the two previous volumes, and will include other HPC ecosystems using the same chapter outline: description of a flagship system, major application workloads, facilities, and sponsors.
Features:
- Describes many prominent, international systems in HPC from 2015 through 2017 including each system’s hardware and software architecture
- Covers facilities for each system including power and cooling
- Presents application workloads for each site
- Discusses historic and projected trends in technology and applications
- Includes contributions from leading experts
Designed for researchers and students in high performance computing, computational science, and related areas, this book provides a valuable guide to the state-of-the art research, trends, and resources in the world of HPC.

Contemporary High Performance Computing: From Petascale toward Exascale, Volume 3
478
Contemporary High Performance Computing: From Petascale toward Exascale, Volume 3
478Product Details
ISBN-13: | 9781138487079 |
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Publisher: | Taylor & Francis |
Publication date: | 05/14/2019 |
Series: | Chapman & Hall/CRC Computational Science |
Pages: | 478 |
Product dimensions: | 7.00(w) x 10.00(h) x (d) |