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Titlebook: High Performance Computing in Science and Engineering, Munich 2004; Transactions of the Siegfried Wagner,Werner Hanke,Franz Durst Conferen

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書(shū)目名稱High Performance Computing in Science and Engineering, Munich 2004
副標(biāo)題Transactions of the
編輯Siegfried Wagner,Werner Hanke,Franz Durst
視頻videohttp://file.papertrans.cn/427/426383/426383.mp4
圖書(shū)封面Titlebook: High Performance Computing in Science and Engineering, Munich 2004; Transactions of the  Siegfried Wagner,Werner Hanke,Franz Durst Conferen
描述Leading-edge research groups in the field of scientific computing present their outstanding projects using the High Performance Computer in Bavaria (HLRB), Hitachi SR8000-F1, one of the top-level supercomputers for academic research in Germany. The projects address modelling and simulation in the disciplines Biosciences, Chemistry, Chemical Physics, Solid-State Physics, High-Energy Physics, Astrophysics, Geophysics, Computational Fluid Dynamics, and Computer Science. The authors describe their scientific background, their resource requirements with respect to top-level supercomputers, and their methods for efficient utilization of the costly high-performance computing power. Contributions of interdisciplinary research projects that have been supported by the Competence Network for Scientific High Performance Computing in Bavaria (KONWIHR) complete the broad range of supercomputer research and applications covered by this volume.
出版日期Conference proceedings 2005
關(guān)鍵詞computer; computer science; computer-aided design (CAD); modeling; scientific computing; simulation; super
版次1
doihttps://doi.org/10.1007/b137893
isbn_softcover978-3-642-42532-5
isbn_ebook978-3-540-26657-0
copyrightSpringer-Verlag Berlin Heidelberg 2005
The information of publication is updating

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Michael Bühl,Rachel Schurhammer,Petra Imhoft appears that the possession of an infinite number of such symmetries is a characterizing property of “solvable” equations, such as the Korteweg—de Vries equation, which have “soliton” solutions and can be linearized either directly or via inverse scattering.
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Markus P?hlmann,Andreas Meyer,Magali Benoit,Walter Kob two epochs. Further a list of comments are included about linear and nonlinear prediction of type Kolmogorov–Wiener. Further an extensive list of geodetic examples is given. The concept of Krige prediction is described.
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A Coupled DNS/Monte-Carlo Solver for Dilute Suspensions of Brownian Fibres in Turbulent Channel Flown Newtonian solvents. These equations are solved by a Monte-Carlo method. First results show a dramatic reduction of the Reynolds shear stress. However, only a mild reduction of the drag is observed because the fibres generate considerable shear stress components at the wall at the configuration chosen.
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— A Parallel, Object-oriented Framework for Hierarchical-hybrid Grid Structures in Technical Simulaurthermore, it offers flexible visualization functionality for both local and remote use on number crunchers and workstations. It is based on modern object-oriented software engineering techniques without compromising on performance issues.
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DNS of Passive Scalar Transport in Turbulent Supersonic Channel Flowently on the Hitachi SR8000-F1. Budgets of the Reynolds stresses and the passive scalar fluxes are presented, as well as explanations concerning the reduction of the pressure-correlation terms, using a Green‘s function approach.
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