Unsteady flow simulation using an MIMD computer
Numerical simulations of unsteady flows require algorithms with high order of accuracy in both time and space and correspondingly vast computer resources, because flow properties may have to be computed for large times before significant information can be extracted from them. Massively parallel com...
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Published in | IEEE, COMPUTER SOCIETY, LOS ALAMITOS, CA (USA). pp. 336-341. 1992 pp. 336 - 341 |
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Main Authors | , |
Format | Conference Proceeding Journal Article |
Language | English |
Published |
IEEE Comput. Soc. Press
1992
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Subjects | |
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Abstract | Numerical simulations of unsteady flows require algorithms with high order of accuracy in both time and space and correspondingly vast computer resources, because flow properties may have to be computed for large times before significant information can be extracted from them. Massively parallel computers are particularly well suited for these simulations if the computational domain could be mapped on to the processors while maintaining high efficiency and time synchronization between the nodes of the MIMD computer. Certain aspects of the implementation of a time-accurate algorithm to solve the Navier-Stokes equations on structured grids, using a massively parallel processor, are presented in this paper along with results for two problems: (1) the changing characteristics of the near-wake flow behind a cylinder as a function of Reynolds number and (2) dynamics of vortex pairing in free-shear layers.< > |
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AbstractList | Numerical simulations of unsteady flows require algorithms with high order of accuracy in both time and space and correspondingly vast computer resources, because flow properties may have to be computed for large times before significant information can be extracted from them. Massively parallel computers are particularly well suited for these simulations if the computational domain could be mapped on to the processors while maintaining high efficiency and time synchronization between the nodes of the MIMD computer. Certain aspects of the implementation of a time-accurate algorithm to solve the Navier-Stokes equations on structured grids, using a massively parallel processor, are presented in this paper along with results for two problems: (1) the changing characteristics of the near-wake flow behind a cylinder as a function of Reynolds number and (2) dynamics of vortex pairing in free-shear layers.< > Numerical simulations of unsteady flows require algorithms with high order of accuracy in both time and space and correspondingly vast computer resources, also because flow properties may have to be computed for large times before significant information can be extracted from them. Massively parallel computers are particularly well suited for these simulations if the computational domain could be mapped on to the processors while maintaining high efficiency and time synchronization between the nodes of the MIMD computer. Certain aspects of the implementation of a time accurate algorithm to solve the Navier-Stokes equations on structured grids, using a massively parallel processor, are presented in this paper along with results for two problems: 1) the changing characteristics of the near-wake flow behind a cylinder as a function of Reynolds number and 2) dynamics of vortex pairing in free-shear layers. |
Author | Chakravarthy, S.R. Palaniswamy, S. |
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PublicationTitle | IEEE, COMPUTER SOCIETY, LOS ALAMITOS, CA (USA). pp. 336-341. 1992 |
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Snippet | Numerical simulations of unsteady flows require algorithms with high order of accuracy in both time and space and correspondingly vast computer resources,... Numerical simulations of unsteady flows require algorithms with high order of accuracy in both time and space and correspondingly vast computer resources, also... |
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SubjectTerms | Algorithms Computational modeling Computer architecture Computer simulation Distributed computer systems Distributed computing Fluid dynamics Grid computing Hypercubes Large-scale systems Message passing Multiprocessing programs Multiprocessing systems Navier-Stokes equations Numerical simulation Parallel processing systems Program processors Storage allocation (computer) Vortex flow |
Title | Unsteady flow simulation using an MIMD computer |
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