By O. Philipsen, Ph. de Forcrand (auth.), Wolfgang E. Nagel, Dietmar H. Kröner, Michael M. Resch (eds.)
This ebook offers the cutting-edge in simulation on supercomputers. prime researchers current effects accomplished on platforms of the excessive functionality Computing heart Stuttgart (HLRS) for the yr 2012. The studies hide all fields of computational technology and engineering starting from CFD through computational physics and chemistry to machine technological know-how with a different emphasis on industrially suitable purposes. providing effects for either vector-systems and micro-processor dependent platforms the publication permits to check functionality degrees and value of varied architectures. As HLRS operates not just a wide cluster procedure but additionally one of many biggest NEC vector platforms on the earth this e-book supplies a great perception additionally into the opportunity of vector structures. The booklet covers the most equipment in excessive functionality computing. Its awesome leads to attaining maximum functionality for construction codes are of specific curiosity for either the scientist and the engineer. The publication comes with a wealth of colored illustrations and tables of effects.
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Extra info for High Performance Computing in Science and Engineering ‘12: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2012
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References 1. T. Palberg. Crystallization kinetics of repulsive colloidal spheres. J. : Condens. Matter, 11:R323, 1999. 2. P. N. Pusey. Colloidal suspensions. In J. P. Hansen, D. Levesque, and J. Zinn-Justin, editors, Liquids, freezing, and glass transition, page 763, Amsterdam, 1991. North Holland. 3. E. Bartsch. Diffusion in concentrated colloidal suspensions and glasses. Curr. Opin. Colloid Interface Sci, 3:577, 1998. 4. H. L¨owen. Colloidal dispersions in external fields: recent developments.
J. Chem. , 101(8):7181–7184, OCT 15 1994. Multi Relaxation Time Lattice Boltzmann Simulations of Multiple Component Fluid Flows in Porous Media Sebastian Schmieschek, Ariel Narv´aez, and Jens Harting Abstract The flow of fluid mixtures in complex geometries is of practical interest in many fields, ranging from oil recovery to freeze-dried food products. Due to its inherent locality the lattice Boltzmann method allows for straightforward implementation of complex boundaries and excellently scaling parallel computations.