2006 |
18 | EE | Satoshi Ito,
Hiroshi Okuda:
HPC-MW: A Problem Solving Environment for Developing Parallel FEM Applications.
PARA 2006: 694-702 |
2003 |
17 | EE | Kai Wang,
Sangbae Kim,
Jun Zhang,
Kengo Nakajima,
Hiroshi Okuda:
Global and Localized Parallel Preconditioning Techniques for Large Scale Solid Earth Simulations.
IPDPS 2003: 258 |
16 | EE | Hiroshi Okuda,
Kengo Nakajima,
Mikio Iizuka,
Li Chen,
Hisashi Nakamura:
Parallel Finite Element Analysis Platform for the Earth Simulator: GeoFEM.
International Conference on Computational Science 2003: 773-780 |
15 | EE | Kai Wang,
Sangbae Kim,
Jun Zhang,
Kengo Nakajima,
Hiroshi Okuda:
Global and localized parallel preconditioning techniques for large scale solid Earth simulations.
Future Generation Comp. Syst. 19(4): 443-456 (2003) |
2002 |
14 | EE | Kengo Nakajima,
Hiroshi Okuda:
Parallel Iterative Solvers for Unstructured Grids Using an OpenMP/MPI Hybrid Programming Model for the GeoFEM Platform on SMP Cluster Architectures.
ISHPC 2002: 437-448 |
13 | | Kazuo Minami,
Hiroshi Okuda:
Optimization of GeoFEM for high performance sequential computer architectures.
Concurrency and Computation: Practice and Experience 14(6-7): 395-409 (2002) |
12 | | Kengo Nakajima,
Hiroshi Okuda:
Parallel iterative solvers for unstructured grids using a directive/MPI hybrid programming model for the GeoFEM platform on SMP cluster architectures.
Concurrency and Computation: Practice and Experience 14(6-7): 411-429 (2002) |
11 | | Yoshitaka Wada,
Hiroshi Okuda:
Effective adaptation technique for hexahedral mesh.
Concurrency and Computation: Practice and Experience 14(6-7): 451-463 (2002) |
10 | | Hiroaki Matsui,
Hiroshi Okuda:
Thermal convection analysis in a rotating shell by a parallel finite-element method - development of a thermal-hydraulic subsystem of GeoFEM.
Concurrency and Computation: Practice and Experience 14(6-7): 465-481 (2002) |
9 | | Mikio Iizuka,
Daigo Sekita,
Hisashi Suito,
Mamoru Hyodo,
Kazuro Hirahara,
David Place,
Peter Mora,
Osamu Hazama,
Hiroshi Okuda:
Parallel simulation system for earthquake generation: fault analysis modules and parallel coupling analysis.
Concurrency and Computation: Practice and Experience 14(6-7): 499-519 (2002) |
8 | | Hiroshi Okuda,
Norihisa Anan:
Optimization of element-by-element FEM in HPF 1.1.
Concurrency and Computation: Practice and Experience 14(8-9): 647-663 (2002) |
2001 |
7 | EE | Kengo Nakajima,
Jochen Fingberg,
Hiroshi Okuda:
Parallel 3D Adaptive Compressible Navier-Stokes Solver in GeoFEM with Dynamic Load-Balancing by DRAMA Library.
HPCN Europe 2001: 183-193 |
6 | EE | Kazuteru Garatani,
Hisashi Nakamura,
Hiroshi Okuda,
Genki Yagawa:
GeoFEM: high performance parallel FEM for solid earth.
Future Generation Comp. Syst. 18(1): 107-114 (2001) |
2000 |
5 | EE | Kazuteru Garatani,
Hisashi Nakamura,
Hiroshi Okuda,
Genki Yagawa:
Large-Scale Parallel Wave Propagation Analysis by GeoFEM.
HPCN Europe 2000: 445-453 |
1999 |
4 | | Kazuteru Garatani,
Hisashi Nakamura,
Hiroshi Okuda,
Genki Yagawa:
GeoFEM: High Performance Parallel FEM for Solid Earth.
HPCN Europe 1999: 133-140 |
3 | | Mikio Iizuka,
Hisashi Nakamura,
Kazuteru Garatani,
Kengo Nakajima,
Hiroshi Okuda,
Genki Yagawa:
GeoFEM: High-Performance Parallel FEM for Geophysical Applications.
ISHPC 1999: 292-303 |
1998 |
2 | | Kengo Nakajima,
Hisashi Nakamura,
Hiroshi Okuda:
Highly Stable Localized ILU Preconditioning for Unstructured Grids.
HPCN Europe 1998: 904-906 |
1997 |
1 | | Genki Yagawa,
Yasushi Nakabayashi,
Hiroshi Okuda:
Large-Scale Finite Element Fluid Analysis by Massively Parallel Processors.
Parallel Computing 23(9): 1365-1377 (1997) |