| 2006 |
| 13 | EE | Malin Ljungberg,
Kurt Otto,
Michael Thuné:
Design and usability of a PDE solver framework for curvilinear coordinates.
Advances in Engineering Software 37(12): 814-825 (2006) |
| 12 | EE | Markus Nordén,
Sverker Holmgren,
Michael Thuné:
OpenMP versus MPI for PDE solvers based on regular sparse numerical operators.
Future Generation Comp. Syst. 22(1-2): 194-203 (2006) |
| 2005 |
| 11 | EE | Anna Eckerdal,
Michael Thuné:
Novice Java programmers' conceptions of "object" and "class", and variation theory.
ITiCSE 2005: 89-93 |
| 2002 |
| 10 | EE | Markus Nordén,
Sverker Holmgren,
Michael Thuné:
OpenMP versus MPI for PDE Solvers Based on Regular Sparse Numerical Operators.
International Conference on Computational Science (3) 2002: 681-690 |
| 2000 |
| 9 | EE | Johan Steensland,
Stefan Söderberg,
Michael Thuné:
A Comparison of Partitioning Schemes for Blockwise Parallel SAMR Algorithms.
PARA 2000: 160-169 |
| 8 | EE | Michael Thuné,
Stefan Söderberg:
Optimal Parameter Values for a Parallel Structured Adaptive Mesh Refinement Algorithm.
PARA 2000: 177-186 |
| 7 | | Michael Thuné,
Krister Åhlander,
Malin Ljungberg,
Markus Nordén,
Kurt Otto,
Jarmo Rantakokko:
Object-oriented Modeling of Parallel PDE Solvers.
The Architecture of Scientific Software 2000: 159-174 |
| 1997 |
| 6 | EE | Michael Thuné:
Partitioning Strategies for Composite Grids.
Parallel Algorithms Appl. 11(3-4): 325-348 (1997) |
| 5 | EE | Eva Mossberg,
Kurt Otto,
Michael Thuné:
Object-Oriented Software Tools for the Construction of Preconditioners.
Scientific Programming 6(3): 285-295 (1997) |
| 1996 |
| 4 | | Michael Thuné,
Krister Åhlander:
Towards an Expressive Language for PDE Solvers.
ESOP 1996: 373-386 |
| 1993 |
| 3 | EE | Michael Thuné:
A Partitioning Algorithm for Composite Grids.
Parallel Algorithms Appl. 1(1): 69-81 (1993) |
| 1991 |
| 2 | | Michael Thuné:
Straightforward partitioning of composite grids for explicit difference methods.
Parallel Computing 17(6-7): 665-672 (1991) |
| 1990 |
| 1 | | Michael Thuné:
A partitioning strategy for explicit difference methods.
Parallel Computing 15(1-3): 147-154 (1990) |