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Tuesday, August 4, 2020 | History

3 edition of Parallelizing Navier-Stokes computations on a variety of architectural platforms found in the catalog.

Parallelizing Navier-Stokes computations on a variety of architectural platforms

Parallelizing Navier-Stokes computations on a variety of architectural platforms

  • 135 Want to read
  • 19 Currently reading

Published by National Aeronautics and Space Administration, National Technical Information Service, distributor in [Washington, D.C, Springfield, Va .
Written in English

    Subjects:
  • Navier-Stokes equation.,
  • Parallel processing (Computers),
  • Multiprocessing (Computers),
  • Cray computers.,
  • Computational fluid dynamics.,
  • Distributed memory.,
  • Flow distribution.,
  • Memory (Computers)

  • Edition Notes

    Other titlesParallelizing Navier Stokes computations on a variety of architectural platforms
    StatementD.N. Jayasimha, M.E. Hayder, S.K. Pillay.
    SeriesNASA technical memorandum -- 113158
    ContributionsHayder, M. E., Pillay, S. K., United States. National Aeronautics and Space Administration.
    The Physical Object
    FormatMicroform
    Pagination1 v.
    ID Numbers
    Open LibraryOL17128531M

    Massively Parallel Processing Applications and Development Proceedings of the EUROSIM Conference on Massively Parallel Processing Applications and Development, Delft, The Netherlands, 21–23 June Book • Efficiently parallelizing Ab-Initio-Computations in Quantum Chemistry. F. Brakhagen, P.G. Lauwers, H. von Trotha. the compressible Navier-Stokes equations, on a variety of parallel architecture platforms. The platforms chosen for this study are a cluster of workstations (the LACE experimental testbed at NASA Lewis), a shared memory muItiprocessor (the Cray YMP), and distributed memory multiprocessors with different topologies -- the IBM SP and the Cray T3D. We.

    Architecture and Waste. Kara H., et al. (ed.)., Architecture and Waste: A (Re)planned Obsolescence (Actar) – February This book also pursues, in particular, the same theme: that is to say Author: Strelka Magazine. Navier-Stokes Equations: Theory and Numerical Analysis focuses on the processes, methodologies, principles, and approaches involved in Navier-Stokes equations, computational fluid dynamics (CFD), and mathematical analysis to which CFD is grounded. The publication first takes a look at steady-state Stokes equations and steady-state Navier-Stokes Author: Roger Temam.

      American Institute of Aeronautics and Astronautics Sunrise Valley Drive, Suite Reston, VA Cited by: Contents Preface xiii List of Acronyms xix 1 Introduction 1 Introduction 1 Toward Automating Parallel Programming 2 Algorithms 4 Parallel Computing Design Considerations 12 Parallel Algorithms and Parallel Architectures 13 Relating Parallel Algorithm and Parallel Architecture 14 Implementation of Algorithms: A Two-Sided Problem


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Parallelizing Navier-Stokes computations on a variety of architectural platforms Download PDF EPUB FB2

Curate flow field of a jet using the compressible Navier-Stokes equations, on a variety of parallel architectural platforms. The platforms chosen for this study are a cluster of workstations (the LACE experimental testbed at NASA Lewis), a shared memory multiprocessor (the Cray YMP), distributed mem.

Parallelizing Navier-Stokes computations on a variety of architectural platforms (SuDoc NAS ) [D. Jayasimha] on *FREE* shipping on qualifying : D. Jayasimha. CiteSeerX - Document Details (Isaac Councill, Lee Giles, Pradeep Teregowda): We study the computational, communication, and scalability characteristics of a Computational Fluid Dynamics application, which solves the time accurate flow field of a jet using the compressible Navier-Stokes equations, on a variety of parallel architectural platforms.

We study the computational, communication, and scalability characteristics of a Computational Fluid Dynamics application, which solves the time accurate flow field of a jet using the compressible Navier-Stokes equations, on a variety of parallel.

Parallelizing Navier-Stokes Computations on a Variety of Architectural Platforms on a variety of parallel architectural platforms. The platforms chosen for this study are a cluster of. texts All Books All Texts latest This Just In Smithsonian Libraries FEDLINK (US) Genealogy Lincoln Collection.

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on a variety of parallel architectural platforms. The platforms chosen for this study are a cluster of workstations (the LACE experimental testbed at NASA Lewis), a shared memory multiprocessor (the Cray YMP), distributed memory multiprocessors with different.

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Jayasimha (ISBN:) from Amazon's Book Store. Everyday low prices and free delivery on eligible : D. Jayasimha. software design is the book Design Patterns: Elements of Reusable Object-Oriented Software, which outlined a number of patterns useful for object-oriented programming [10].

Another work we have found useful is an Introduction to Software Architecture [11], which describes a variety of structural patterns. Computer architecture.; Parallel processing (Computers) Parallelizing Navier-Stokes computations on a variety of architectural platforms / D.N.

Jayasimha, M. Hayder, S.K. Pillay - Details - Trove. Abstract. We study the computational, communication, and scalability characteristics of a computational fluid dynamics application, which solves the time-accurate flow field of a jet using the compressible Navier-Stokes equations, on a variety of parallel architectural by: 1.

The book is an excellent contribution to the literature concerning the mathematical analysis of the incompressible Navier-Stokes equations. It provides a very good introduction to the subject, covering several important directions, and also presents a number of recent results, with an emphasis on non-perturbative regimes.

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Occupy Wall Street TV NSA Clip Library. the compressible Navier-Stokes equations, on a variety of parallel architecture platforms. The platforms chosen for this study are a cluster of workstations (the LACE experimental testbed at NASA.

Get this from a library. Parallelizing Navier-Stokes computations on a variety of architectural platforms. [D N Jayasimha; Ehteshamul Md Hayder; S K Pillay; United States. National Aeronautics and Space Administration.]. Jayasimha has written: 'Parallelizing Navier-Stokes computations on a variety of architectural platforms' -- subject(s): Computational fluid dynamics, Cray computers, Memory (Computers.

Parallel Navier-Stokes computations on shared and distributed memory architectures [microform] / M. Ehteshamu Hayder, D.N. Jayasimha, and Sasi Kumar Pillay National Aeronautics and Space Administration, Lewis Research Center, Institute for Computational Mechanics in Propulsion ; National Technical Information Service, distributor [Cleveland.

Parallel Computations focuses on parallel computation, with emphasis on algorithms used in a variety of numerical and physical applications and for many different types of parallel computers. Topics covered range from vectorization of fast Fourier transforms (FFTs) and of the incomplete Cholesky conjugate gradient (ICCG) algorithm on the Cray-1 Book Edition: 1.

D. Jayasimha, M. Hayder, and S. Pillay, Parallelizing Navier-Stokes Computations on a Variety of Architectural Platforms, in Proceedings of Supercomputing'95, Google Scholar by: 3. Implementation and analysis of a Navier-Stokes algorithm on parallel computers [microform] / Raad A. Fatoohi, Chester E.

Grosch Institute for Computer Applications in Science and Engineering, NASA Langley Research Center ; National Technical Information Service, distributor Hampton, Va.: [Springfield, Va Australian/Harvard Citation.3. Computation of the basis function on a given triangle 4.

Solution of the Stokes problem 5. Solution of Navier–Stokes equations Appendix III. Some Developments on Navier-Stokes Equations in the Second Half of the 20th Century Introduction Part I: The incompressible Navier–Stokes equations Size: KB.The GPU performance and speedup ratio for different grid sizes are calculated and the ability of present GPU parallelizing work is investigated and discussed.

2. Numerical implementation. The incompressible Navier–Stokes equations are solved numerically with the Stream Cited by: 6.