001     5127
005     20200610184408.0
024 8 _ |a 4299
024 7 _ |2 ISSN
|a 0944-2952
024 7 _ |2 Handle
|a 2128/3667
037 _ _ |a PreJuSER-5127
041 _ _ |a German
088 1 _ |a Juel-4299
088 _ _ |a Juel-4299
|2 JUEL
100 1 _ |0 P:(DE-Juel1)132251
|a Schiller, Annika
|b 0
|e Corresponding author
|u FZJ
245 _ _ |a Mesoscopic Simulations on Cell Broadband Engine using Stochastic Rotation Dynamics
260 _ _ |a Jülich
|b Forschungszentrum Jülich GmbH Zenralbibliothek, Verlag
|c 2009
300 _ _ |a V, 135 p.
336 7 _ |0 PUB:(DE-HGF)19
|2 PUB:(DE-HGF)
|a Master Thesis
336 7 _ |0 2
|2 EndNote
|a Thesis
336 7 _ |2 DataCite
|a Output Types/Supervised Student Publication
336 7 _ |2 DRIVER
|a masterThesis
336 7 _ |2 ORCID
|a SUPERVISED_STUDENT_PUBLICATION
336 7 _ |2 BibTeX
|a MASTERSTHESIS
490 0 _ |0 PERI:(DE-600)2414853-2
|8 35698
|a Berichte des Forschungszentrums Jülich
|v 4299
|x 0944-2952
500 _ _ |a Record converted from JUWEL: 18.07.2013
500 _ _ |a Record converted from VDB: 12.11.2012
502 _ _ |a Aachen, FH., Standort Jülich, Master, 2009
|b Master (FH)
|c FH. Aachen
|d 2009
520 _ _ |a The simulation of hydrodynamic properties of fluid and flow phenomena on the mesoscale is a challenge for conventional techniques, e. g. Molecular Dynamics or Monte Carlo. In many cases, the mesoscopic behavior of fluids or flows is important to understand as it is key to the interplay between macroscopic flow and microstructures. To overcome the wide range of length and time scales, several mesoscale simulation techniques were developed. Their principle is to coarse-grain irrelevant atomistic details while correctly incorporating the essential physics and conservation laws. One of these mesoscale simulation techniques is the so called Stochastic Rotation Dynamics (SRD), which solves the linearized Navier-Stokes equations by using a particle-based approach. Since the requirement of high performance computing and memory for computer simulations is growing, hardware architecture determines the efficiency of a simulation in terms of execution time. The Cell Broadband Engine (Cell/BE) is a heterogeneous multicore processor and has been designed to support a broad range of applications. To simplify the enabling of applications on the Cell/BE, high-level programming models were developed. One example is the Cell Superscalar Framework (CellSs) which offers a portable programming model to port, parallelize and tune applications on Cell/BE. In the scope of this thesis, a simulation program on the basis of the SRD algorithm is developed which is able to model a variety of fluids with different properties. Additionally, an algorithm for the simulation of immiscible binary mixtures is implemented, which is applied in addition to the SRD algorithm. Thereafter, the implementation is ported to the Cell/BE using the high-level programming model CellSs. Finally, simulation results using SRD are presented and the performance results obtained by the calculation on the Cell/BE are discussed critically.
536 _ _ |0 G:(DE-Juel1)FUEK411
|2 G:(DE-HGF)
|a Scientific Computing
|c P41
|x 0
540 _ _ |a Neither this book nor any part of it may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying, microfilming, and recording, or by any information storage and retrieval system, without permission in writing from the publisher.
655 _ 7 |a Hochschulschrift
|x Master Thesis (FH)
856 4 _ |u https://juser.fz-juelich.de/record/5127/files/Juel_4299_Schiller.pdf
|y OpenAccess
909 C O |o oai:juser.fz-juelich.de:5127
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913 1 _ |0 G:(DE-Juel1)FUEK411
|b Schlüsseltechnologien
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|l Supercomputing
|v Scientific Computing
|x 0
914 1 _ |a Masterarbeit
|y 2009
915 _ _ |0 StatID:(DE-HGF)0510
|2 StatID
|a OpenAccess
920 1 _ |0 I:(DE-Juel1)JSC-20090406
|g JSC
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|l Jülich Supercomputing Centre
|x 0
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980 _ _ |a UNRESTRICTED
980 _ _ |a JUWEL
980 _ _ |a FullTexts
980 1 _ |a FullTexts


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