NASA NTRS · 20000069007
Large-Scale Distributed Computational Fluid Dynamics on the Information Power Grid Using Globus
Abstract
This paper describes an experiment in which a large-scale scientific application development for tightly-coupled parallel machines is adapted to the distributed execution environment of the Information Power Grid (IPG). A brief overview of the IPG and a description of the computational fluid dynamics (CFD) algorithm are given. The Globus metacomputing toolkit is used as the enabling device for the geographically-distributed computation. Modifications related to latency hiding and Load balancing were required for an efficient implementation of the CFD application in the IPG environment. Performance results on a pair of SGI Origin 2000 machines indicate that real scientific applications can be effectively implemented on the IPG; however, a significant amount of continued effort is required to make such an environment useful and accessible to scientists and engineers.
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Barnard, Stephen, Biswas, Rupak, Saini, Subhash, VanderWijngaart, Robertus, Yarrow, Maurice, Zechtzer, Lou, Foster, Ian, Larsson, Olle. 1999-01-01. Large-Scale Distributed Computational Fluid Dynamics on the Information Power Grid Using Globus. https://ntrs.nasa.gov/citations/20000069007
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