2009 |
19 | EE | Hendrik Speleers,
Paul Dierckx,
Stefan Vandewalle:
Quasi-hierarchical Powell-Sabin B-splines.
Computer Aided Geometric Design 26(2): 174-191 (2009) |
2008 |
18 | EE | Chengjian Zhang,
Stefan Vandewalle:
Stability criteria for exact and discrete solutions of neutral multidelay-integro-differential equations.
Adv. Comput. Math. 28(4): 383-399 (2008) |
17 | EE | Tim Boonen,
Jan Van Lent,
Stefan Vandewalle:
Local Fourier Analysis of Multigrid for the Curl-Curl Equation.
SIAM J. Scientific Computing 30(4): 1730-1755 (2008) |
2007 |
16 | EE | Dries Kimpe,
Robert B. Ross,
Stefan Vandewalle,
Stefaan Poedts:
Transparent Log-Based Data Storage in MPI-IO Applications.
PVM/MPI 2007: 233-241 |
15 | EE | Hendrik Speleers,
Paul Dierckx,
Stefan Vandewalle:
Weight control for modelling with NURPS surfaces.
Computer Aided Geometric Design 24(3): 179-186 (2007) |
14 | EE | Martin J. Gander,
Stefan Vandewalle:
Analysis of the Parareal Time-Parallel Time-Integration Method.
SIAM J. Scientific Computing 29(2): 556-578 (2007) |
13 | EE | Daan Huybrechs,
Stefan Vandewalle:
A Sparse Discretization for Integral Equation Formulations of High Frequency Scattering Problems.
SIAM J. Scientific Computing 29(6): 2305-2328 (2007) |
2006 |
12 | EE | Dries Kimpe,
Andrea Lani,
Tiago Quintino,
Stefan Vandewalle,
Stefaan Poedts,
Herman Deconinck:
A Study of Real World I/O Performance in Parallel Scientific Computing.
PARA 2006: 871-881 |
11 | EE | Dries Kimpe,
Stefan Vandewalle,
Stefaan Poedts:
On the Usability of High-Level Parallel IO in Unstructured Grid Simulations.
PVM/MPI 2006: 400-401 |
10 | EE | Hendrik Speleers,
Paul Dierckx,
Stefan Vandewalle:
Local subdivision of Powell-Sabin splines.
Computer Aided Geometric Design 23(5): 446-462 (2006) |
9 | EE | Chengjian Zhang,
Stefan Vandewalle:
General Linear Methods for Volterra Integro-differential Equations with Memory.
SIAM J. Scientific Computing 27(6): 2010-2031 (2006) |
8 | EE | Andrea Lani,
Tiago Quintino,
Dries Kimpe,
Herman Deconinck,
Stefan Vandewalle,
Stefaan Poedts:
Reusable object-oriented solutions for numerical simulation of PDEs in a high performance environment.
Scientific Programming 14(2): 111-139 (2006) |
7 | EE | Dries Kimpe,
Stefan Vandewalle,
Stefaan Poedts:
EVector: An efficient vector implementation - Using virtual memory for improving memory.
Scientific Programming 14(2): 45-59 (2006) |
2005 |
6 | EE | Andrea Lani,
Tiago Quintino,
Dries Kimpe,
Herman Deconinck,
Stefan Vandewalle,
Stefaan Poedts:
The COOLFluiD Framework: Design Solutions for High Performance Object Oriented Scientific Computing Software.
International Conference on Computational Science (1) 2005: 279-286 |
5 | EE | Dries Kimpe,
Andrea Lani,
Tiago Quintino,
Stefaan Poedts,
Stefan Vandewalle:
The COOLFluiD Parallel Architecture.
PVM/MPI 2005: 520-527 |
4 | EE | Jan Van Lent,
Stefan Vandewalle:
Multigrid Methods for Implicit Runge-Kutta and Boundary Value Method Discretizations of Parabolic PDEs.
SIAM J. Scientific Computing 27(1): 67-92 (2005) |
1997 |
3 | EE | Min Hu,
Ken Jackson,
Jan Janssen,
Stefan Vandewalle:
Remarks on the optimal convolution kernel for CSOR waveform relaxation.
Adv. Comput. Math. 7(1-2): 135-156 (1997) |
1995 |
2 | EE | Stefan Vandewalle,
Graham Horton:
Fourier Mode Analysis of the Multigrid Waveform Relaxation and Time-Parallel Multigrid Methods.
Computing 54(4): 317-330 (1995) |
1987 |
1 | | Stefan Vandewalle,
Dirk Roose:
The Parallel Waveform Relaxation Multigrid Method.
PPSC 1987: 152-156 |