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Titlebook: Supercomputers and Fluid Dynamics; Proceedings of the F Kunio Kuwahara,Raul Mendez,Steven A. Orszag Conference proceedings 1986 Springer-Ve

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书目名称Supercomputers and Fluid Dynamics
副标题Proceedings of the F
编辑Kunio Kuwahara,Raul Mendez,Steven A. Orszag
视频video
丛书名称Lecture Notes in Engineering
图书封面Titlebook: Supercomputers and Fluid Dynamics; Proceedings of the F Kunio Kuwahara,Raul Mendez,Steven A. Orszag Conference proceedings 1986 Springer-Ve
描述In the past several years, it has become apparent that computing will soon achieve a status within science and engineering to the classical scientific methods of laboratory experiment and theoretical analysis. The foremost tools of state-of-the-art computing applications are supercomputers, which are simply the fastest and biggest computers available at any given time. Supercomputers and supercomputing go hand-in-hand in pacing the development of scientific and engineering applications of computing. Experience has shown that supercomputers improve in speed and capability by roughly a factor 1000 every 20 years. Supercomputers today include the Cray XMP and Cray-2, manufactured by Cray Research, Inc., the Cyber 205, manufactured by Control Data Corporation, the Fujitsu VP, manufactured by Fujitsu, Ltd., the Hitachi SA-810/20, manufactured by Hitachi, Ltd., and the NEC SX, manufactured by NEC, Inc. The fastest of these computers are nearly three orders-of-magnitude faster than the fastest computers available in the mid-1960s, like the Control Data CDC 6600. While the world-wide market for supercomputers today is only about 50 units per year, it is expected to grow rapidly over the ne
出版日期Conference proceedings 1986
关键词computer; development; dynamics; fluid dynamics; science; simulation; fluid- and aerodynamics
版次1
doihttps://doi.org/10.1007/978-3-642-82908-6
isbn_softcover978-3-540-17051-8
isbn_ebook978-3-642-82908-6Series ISSN 0176-5035
issn_series 0176-5035
copyrightSpringer-Verlag Berlin, Heidelberg 1986
The information of publication is updating

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Spectral Element Simulation of Flow in Grooved Channels: Cooling Chips with Tollmien-Schlichting Waized system results in subcritical resonant excitation as the critical Reynolds number is approached. Application of this subcritical flow excitation to heat transfer enhancement and the cooling of chips (electronic components) is described.
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,The Scalar Performance of Three Supercomputers Cray’s X-MP/2, Fujitsu’s VP-200 and NEC’s SX-2,s (although not discussing in detail the latter systems) and survey the scalar performance of these three systems on five fluid dynamics codes used as benchmarks. A vector performance study of these three systems will be postponed to a later article.
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Conference proceedings 1986NEC, Inc. The fastest of these computers are nearly three orders-of-magnitude faster than the fastest computers available in the mid-1960s, like the Control Data CDC 6600. While the world-wide market for supercomputers today is only about 50 units per year, it is expected to grow rapidly over the ne
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Computational Study of Three-Dimensional Wake Structure,sional color graphic system. It was found that a pair of vortex tubes separated from a body plays the most important role in the wake. Near the body vortex tubes are rather stable, however, they gradually become unsteady as they flow down.
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