Published 2011 | Version v1
Miscellaneous Open

High performance 3D neutron transport on peta scale and hybrid architectures within APOLLO3 code

  • 1. CEA- DEN/DANS/DM2S/SERMA/LLPR, Gif-sur-Yvette Cedex (France)

Description

APOLLO3 code is a common project of CEA, AREVA and EDF for the development of a new generation system for core physics analysis. We present here the parallelization of two deterministic transport solvers of APOLLO3: MINOS, a simplified 3D transport solver on structured Cartesian and hexagonal grids, and MINARET, a transport solver based on triangular meshes on 2D and prismatic ones in 3D. We used two different techniques to accelerate MINOS: a domain decomposition method, combined with an accelerated algorithm using GPU. The domain decomposition is based on the Schwarz iterative algorithm, with Robin boundary conditions to exchange information. The Robin parameters influence the convergence and we detail how we optimized the choice of these parameters. MINARET parallelization is based on angular directions calculation using explicit message passing. Fine grain parallelization is also available for each angular direction using shared memory multithreaded acceleration. Many performance results are presented on massively parallel architectures using more than 103 cores and on hybrid architectures using some tens of GPUs. This work contributes to the HPC development in reactor physics at the CEA Nuclear Energy Division. (author)

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Additional details

Publishing Information

Imprint Pagination
16 p.
Report number
INIS-BR--17208

Conference

Title
International conference on mathematics and computational methods applied to nuclear science and engineering
Acronym
M&C 2011
Dates
8-12 May 2011
Place
Rio de Janeiro, RJ (Brazil)