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Stefan Vandewalle: [Publications] [Author Rank by year] [Co-authors] [Prefers] [Cites] [Cited by]

Publications of Author

  1. 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. [Citation Graph (0, 0)][DBLP]
    International Conference on Computational Science (1), 2005, pp:279-286 [Conf]
  2. Stefan Vandewalle, Dirk Roose
    The Parallel Waveform Relaxation Multigrid Method. [Citation Graph (0, 0)][DBLP]
    PPSC, 1987, pp:152-156 [Conf]
  3. Dries Kimpe, Andrea Lani, Tiago Quintino, Stefaan Poedts, Stefan Vandewalle
    The COOLFluiD Parallel Architecture. [Citation Graph (0, 0)][DBLP]
    PVM/MPI, 2005, pp:520-527 [Conf]
  4. Dries Kimpe, Stefan Vandewalle, Stefaan Poedts
    On the Usability of High-Level Parallel IO in Unstructured Grid Simulations. [Citation Graph (0, 0)][DBLP]
    PVM/MPI, 2006, pp:400-401 [Conf]
  5. Hendrik Speleers, Paul Dierckx, Stefan Vandewalle
    Local subdivision of Powell-Sabin splines. [Citation Graph (0, 0)][DBLP]
    Computer Aided Geometric Design, 2006, v:23, n:5, pp:446-462 [Journal]
  6. Hendrik Speleers, Paul Dierckx, Stefan Vandewalle
    Weight control for modelling with NURPS surfaces. [Citation Graph (0, 0)][DBLP]
    Computer Aided Geometric Design, 2007, v:24, n:3, pp:179-186 [Journal]
  7. Stefan Vandewalle, Graham Horton
    Fourier Mode Analysis of the Multigrid Waveform Relaxation and Time-Parallel Multigrid Methods. [Citation Graph (0, 0)][DBLP]
    Computing, 1995, v:54, n:4, pp:317-330 [Journal]
  8. 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. [Citation Graph (0, 0)][DBLP]
    Scientific Programming, 2006, v:14, n:2, pp:111-139 [Journal]
  9. Dries Kimpe, Stefan Vandewalle, Stefaan Poedts
    EVector: An efficient vector implementation - Using virtual memory for improving memory. [Citation Graph (0, 0)][DBLP]
    Scientific Programming, 2006, v:14, n:2, pp:45-59 [Journal]
  10. Chengjian Zhang, Stefan Vandewalle
    General Linear Methods for Volterra Integro-differential Equations with Memory. [Citation Graph (0, 0)][DBLP]
    SIAM J. Scientific Computing, 2006, v:27, n:6, pp:2010-2031 [Journal]
  11. Jan Van Lent, Stefan Vandewalle
    Multigrid Methods for Implicit Runge-Kutta and Boundary Value Method Discretizations of Parabolic PDEs. [Citation Graph (0, 0)][DBLP]
    SIAM J. Scientific Computing, 2005, v:27, n:1, pp:67-92 [Journal]
  12. Martin J. Gander, Stefan Vandewalle
    Analysis of the Parareal Time-Parallel Time-Integration Method. [Citation Graph (0, 0)][DBLP]
    SIAM J. Scientific Computing, 2007, v:29, n:2, pp:556-578 [Journal]
  13. Dries Kimpe, Andrea Lani, Tiago Quintino, Stefan Vandewalle, Stefaan Poedts, Herman Deconinck
    A Study of Real World I/O Performance in Parallel Scientific Computing. [Citation Graph (0, 0)][DBLP]
    PARA, 2006, pp:871-881 [Conf]
  14. Dries Kimpe, Rob Ross, Stefan Vandewalle, Stefaan Poedts
    Transparent Log-Based Data Storage in MPI-IO Applications. [Citation Graph (0, 0)][DBLP]
    PVM/MPI, 2007, pp:233-241 [Conf]

  15. On the Local Approximation Power of Quasi-Hierarchical Powell-Sabin Splines. [Citation Graph (, )][DBLP]


  16. Stability criteria for exact and discrete solutions of neutral multidelay-integro-differential equations. [Citation Graph (, )][DBLP]


  17. Remarks on the optimal convolution kernel for CSOR waveform relaxation. [Citation Graph (, )][DBLP]


  18. Quasi-hierarchical Powell-Sabin B-splines. [Citation Graph (, )][DBLP]


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