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Titlebook: High Performance Computing in Science and Engineering, Garching/Munich 2009; Transactions of the Siegfried Wagner,Matthias Steinmetz,Marku

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书目名称High Performance Computing in Science and Engineering, Garching/Munich 2009
副标题Transactions of the
编辑Siegfried Wagner,Matthias Steinmetz,Markus Michael
视频video
概述Includes supplementary material:
图书封面Titlebook: High Performance Computing in Science and Engineering, Garching/Munich 2009; Transactions of the  Siegfried Wagner,Matthias Steinmetz,Marku
描述The Leibniz Supercomputing Centre (LRZ) and the Bavarian Competence Network for Technical and Scienti?c High Performance Computing (KONWIHR) publish in the present book results of numerical simulations facilitated by the High P- formance Computer System in Bavaria (HLRB II) within the last two years. The papers were presented at the Fourth Joint HLRB and KONWIHR Review and - sult Workshop in Garching on 8th and 9th December 2009, and were selected from all progress reports of projects that use the HLRB II. Similar to the workshop two years ago, the majority of the contributed papers belong to the area of computational ?uid dynamics (CFD), condensed matter physics, astrophysics, chemistry, computer sciences and high-energy physics. We note a considerable increase of the user c- munity in some areas: Compared to 2007, the number of papers increased from 6 to 12 in condensed matter physics and from 2 to 5 in high-energy physics. Bio s- ences contributed only one paper in 2007, but four papers in 2009. This indicates that the area of application of supercomputers is continuously growing and entering new ?elds of research. The year 2007 saw two major events of particular importance for
出版日期Conference proceedings 2010
关键词3D; Simulation; Sparse matrix; astrophysics; calculus; computational fluid dynamics; computational physics
版次1
doihttps://doi.org/10.1007/978-3-642-13872-0
isbn_softcover978-3-662-51963-9
isbn_ebook978-3-642-13872-0
copyrightSpringer-Verlag Berlin Heidelberg 2010
The information of publication is updating

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waLBerla: Optimization for Itanium-based Systems with Thousands of Processorstanium processor require programming techniques that assist the compiler in efficient code vectorization, especially for complex C++ codes like the waLBerla framework. An approach using variable length arrays shows promising results.
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Computational Steering of Complex Flow Simulations gap between steering and HPC is bridged by a hierarchical approach that performs fast interactive simulations for many scenario variants increasing the accuracy via hierarchical refinements in dependence of the time the user wants to wait. Finally, the user can trigger large simulations for selecte
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Comparing Frequency-Based Flow Solutions to Traditional Unsteady Fluid Dynamics Analysis in Turbomacbations of adjacent blade rows is approximated. Within the present study an unsteady Navier-Stokes-simulation is compared to a NLH computation in order to explain differences of the approaches. Therefore, an unsteady full-annulus simulation with about 40 million gridpoints as well a NLHs simulation
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High Performance Computing in Science and Engineering, Garching/Munich 2009Transactions of the
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High Performance Computing in Science and Engineering, Garching/Munich 2009978-3-642-13872-0
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Conference proceedings 2010and from 2 to 5 in high-energy physics. Bio s- ences contributed only one paper in 2007, but four papers in 2009. This indicates that the area of application of supercomputers is continuously growing and entering new ?elds of research. The year 2007 saw two major events of particular importance for
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