<  Retour au portail Polytechnique Montréal

Documents publiés en "2010"

Monter d'un niveau
Pour citer ou exporter [feed] Atom [feed] RSS 1.0 [feed] RSS 2.0
Nombre de documents: 8

Département de génie chimique

Vidal, D., Roy, R., & Bertrand, F. (2010). On improving the performance of large parallel lattice Boltzmann flow simulations in heterogeneous porous media. Computers and Fluids, 39(2), 324-337. Lien externe

Vidal, D., Roy, R., & Bertrand, F. (2010). A parallel workload balanced and memory efficient lattice-Boltzmann algorithm with single unit BGK relaxation time for laminar Newtonian flows. Computers and Fluids, 39(8), 1411-1423. Lien externe

Département de génie informatique et génie logiciel

Poirier, B., Roy, R., & Dagenais, M. (2010). Accurate offline synchronization of distributed traces using kernel-level events. Operating Systems Review, 44(3), 75-87. Lien externe

Roy, R. (2010). Reactor core methods. Dans Nuclear Computational Science: A Century in Review (167-215). Lien externe

Roy, R., Marleau, G., & Hébert, A. (mai 2010). Rudi Stamm'ler contributions and DRAGON [Communication écrite]. International Conference on Advances in Reactor Physics to Power the Nuclear Reanissance (PHYSOR 2010), Pittsburgh, Pennsylvania. Non disponible

Vidal, D., Roy, R., & Bertrand, F. (2010). On improving the performance of large parallel lattice Boltzmann flow simulations in heterogeneous porous media. Computers and Fluids, 39(2), 324-337. Lien externe

Vidal, D., Roy, R., & Bertrand, F. (2010). A parallel workload balanced and memory efficient lattice-Boltzmann algorithm with single unit BGK relaxation time for laminar Newtonian flows. Computers and Fluids, 39(8), 1411-1423. Lien externe

Département de génie physique

Roy, R., Marleau, G., & Hébert, A. (mai 2010). Rudi Stamm'ler contributions and DRAGON [Communication écrite]. International Conference on Advances in Reactor Physics to Power the Nuclear Reanissance (PHYSOR 2010), Pittsburgh, Pennsylvania. Non disponible

Liste produite: Wed Jul 17 02:30:12 2024 EDT.