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タイトルParallel architectures for iterative methods on adaptive, block structured grids
本文(外部サイト)http://hdl.handle.net/2060/19830026341
著者(英)Vanrosendale, J.; Gannon, D.
著者所属(英)NASA Langley Research Center
発行日1983-03-01
言語eng
内容記述A parallel computer architecture well suited to the solution of partial differential equations in complicated geometries is proposed. Algorithms for partial differential equations contain a great deal of parallelism. But this parallelism can be difficult to exploit, particularly on complex problems. One approach to extraction of this parallelism is the use of special purpose architectures tuned to a given problem class. The architecture proposed here is tuned to boundary value problems on complex domains. An adaptive elliptic algorithm which maps effectively onto the proposed architecture is considered in detail. Two levels of parallelism are exploited by the proposed architecture. First, by making use of the freedom one has in grid generation, one can construct grids which are locally regular, permitting a one to one mapping of grids to systolic style processor arrays, at least over small regions. All local parallelism can be extracted by this approach. Second, though there may be a regular global structure to the grids constructed, there will be parallelism at this level. One approach to finding and exploiting this parallelism is to use an architecture having a number of processor clusters connected by a switching network. The use of such a network creates a highly flexible architecture which automatically configures to the problem being solved.
NASA分類COMPUTER PROGRAMMING AND SOFTWARE
レポートNO83N34612
NAS 1.26:172195
REPT-83-39
NASA-CR-172195
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/161516


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