Performance Of A Parallel Code For The Euler Equations On Hypercube Computers - Info and Reading Options
By Barszcz, Eric, Chan, Tony F., Jesperson, Dennis C. and Tuminaro, Raymond S
"Performance Of A Parallel Code For The Euler Equations On Hypercube Computers" and the language of the book is English.
“Performance Of A Parallel Code For The Euler Equations On Hypercube Computers” Metadata:
- Title: ➤ Performance Of A Parallel Code For The Euler Equations On Hypercube Computers
- Authors: Barszcz, EricChan, Tony F.Jesperson, Dennis C.Tuminaro, Raymond S
- Language: English
“Performance Of A Parallel Code For The Euler Equations On Hypercube Computers” Subjects and Themes:
- Subjects: ➤ DAMAGE - SURFACE CRACKS - TEMPERATURE EFFECTS - JOINTS (JUNCTIONS) - POSTFLIGHT ANALYSIS - SPACE SHUTTLE BOOSTERS - SPACE TRANSPORTATION SYSTEM - THERMAL PROTECTION - ABNORMALITIES - FLIGHT SAFETY - SPACE SHUTTLE MISSIONS
Edition Identifiers:
- Internet Archive ID: nasa_techdoc_19910002071
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"Performance Of A Parallel Code For The Euler Equations On Hypercube Computers" Description:
The Internet Archive:
The performance of hypercubes were evaluated on a computational fluid dynamics problem and the parallel environment issues were considered that must be addressed, such as algorithm changes, implementation choices, programming effort, and programming environment. The evaluation focuses on a widely used fluid dynamics code, FLO52, which solves the two dimensional steady Euler equations describing flow around the airfoil. The code development experience is described, including interacting with the operating system, utilizing the message-passing communication system, and code modifications necessary to increase parallel efficiency. Results from two hypercube parallel computers (a 16-node iPSC/2, and a 512-node NCUBE/ten) are discussed and compared. In addition, a mathematical model of the execution time was developed as a function of several machine and algorithm parameters. This model accurately predicts the actual run times obtained and is used to explore the performance of the code in interesting but yet physically realizable regions of the parameter space. Based on this model, predictions about future hypercubes are made.
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"Performance Of A Parallel Code For The Euler Equations On Hypercube Computers" is available for download from The Internet Archive in "texts" format, the size of the file-s is: 11.45 Mbs, and the file-s went public at Mon Jul 26 2010.
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- Internet Archive Link: Archive.org page
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- Number of Files: 13
- Number of Available Files: 13
- Added Date: 2010-07-26 06:07:32
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