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Publications about 'Neutron'
Thesis
  1. S. Moustafa. Massively Parallel Cartesian Discrete Ordinates Method for Neutron Transport Simulation. PhD thesis, Université de Bordeaux, December 2015. Keyword(s): Neutron. [bibtex-entry]


  2. B. Lathuilière. Domain decomposition method for the Simplified Transport Equation in neutronic. PhD thesis, Université Sciences et Technologies - Bordeaux I, February 2010. Keyword(s): Neutron. [Abstract] [bibtex-entry]


Articles in journal, book chapters
  1. S. Moustafa, I. Dutka-Malen, L. Plagne, A. Poncot, and P. Ramet. Shared Memory Parallelism for 3D Cartesian Discrete Ordinates Solver. Annals of Nuclear Energy, 2014. ISSN: 0306-4549. Keyword(s): Neutron. [bibtex-entry]


  2. M. Barrault, B. Lathuilière, P. Ramet, and J. Roman. Efficient parallel resolution of the simplified transport equations in mixed-dual formulation. Journal of Computational Physics, 230(5):2004 - 2020, 2011. ISSN: 0021-9991. Keyword(s): Neutron. [bibtex-entry]


Conference articles
  1. S. Moustafa, M. Faverge, L. Plagne, and P. Ramet. 3D Cartesian Transport Sweep for Massively Parallel Architectures with PARSEC. In 29th IEEE International Parallel & Distributed Processing Symposium, IPDPS'15, Hyderabad, India, pages 581-590, May 2015. ISSN: 1530-2075. Keyword(s): Neutron. [bibtex-entry]


  2. S. Moustafa, M. Faverge, L. Plagne, and P. Ramet. Parallel 3D Sweep Kernel with PARSEC. In 16th IEEE International Conference on High Performance and Communications, workshop on HPC-CFD in Energy/Transport Domains, Paris, France, August 2014. Keyword(s): Neutron. [bibtex-entry]


  3. S. Moustafa, I. Dutka-Malen, L. Plagne, A. Poncot, and P. Ramet. Shared Memory Parallelism for 3D Cartesian Discrete Ordinates Solver. In Joint International Conference on Supercomputing in Nuclear Applications + Monte Carlo, Paris, France, October 2013. Keyword(s): Neutron. [bibtex-entry]


  4. M. Barrault, B. Lathuilière, P. Ramet, and J. Roman. A Non Overlapping Parallel Domain Decomposition Method Applied to The Simplified Transport Equations. In International Conference on Mathematics, Computational Methods & Reactor Physics, New-York, USA, May 2009. Keyword(s): Neutron. [bibtex-entry]


  5. M. Barrault, B. Lathuilière, P. Ramet, and J. Roman. A Domain Decomposition Method Applied to Large Eigenvalue Problems in Neutron Physics. In Proceedings of PMAA'2008, Neuchatel, Swiss, June 2008. Keyword(s): Neutron. [Abstract] [bibtex-entry]


  6. M. Barrault, B. Lathuilière, P. Ramet, and J. Roman. A domain decomposition method applied to the simplified transport equations. In IEEE 11th International Conference on Computational Science and Engineering, Sao Paulo, Brazil, pages 91-97, July 2008. Keyword(s): Neutron. [Abstract] [bibtex-entry]


  7. M. Barrault, B. Lathuilière, P. Ramet, and J. Roman. A domain decomposition method for the resolution of an eigenvalue problem in neutron physics. In International Symposium on Iterative Methods in Scientific Computing (IMACS), Lille, France, March 2008. Keyword(s): Neutron. [bibtex-entry]


Internal reports
  1. M. Faverge, S. Moustafa, F. Févotte, L. Plagne, and P. Ramet. Efficient Parallel Solution of the 3D Stationary Boltzmann Transport Equation for Diffusive Problems. Research Report RR-9116, Inria ; EDF Lab, September 2017. Keyword(s): Neutron. [bibtex-entry]


  2. G. Caramel and P. Ramet. Optimisation des performances des outils de calcul de neutronique des coeurs. Technical report, E.D.F. / SINETICS, 2007. Note: Rapport Final. Keyword(s): Sparse. [bibtex-entry]


Miscellaneous
  1. S. Moustafa, M. Faverge, L. Plagne, and P. Ramet. 3D Cartesian Transport Sweep for Massively Parallel Architectures on top of PaRSEC. 9th Scheduling for Large Scale Systems Workshop, Lyon, France, July 2014. Keyword(s): Neutron. [bibtex-entry]


  2. S. Moustafa, M. Faverge, L. Plagne, and P. Ramet. 3D Cartesian Transport Sweep for Massively Parallel Architectures on top of PaRSEC. SOLHAR meeting, Toulouse, France, June 2014. Keyword(s): Neutron. [bibtex-entry]



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Last modified: Tue Apr 4 11:58:35 2023
Author: ramet.


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