• DocumentCode
    3106622
  • Title

    Generating the Voronoi-Delaunay Dual Diagram for Co-Volume Integration Schemes

  • Author

    Sazonov, Igor ; Hassan, Oubay ; Morgan, Ken ; Weatherill, Nigel P.

  • Author_Institution
    Swansea Univ., Swansea
  • fYear
    2007
  • fDate
    9-11 July 2007
  • Firstpage
    199
  • Lastpage
    204
  • Abstract
    Advantages of co-volume methods (based on the use of a high quality Voronoi diagram and the dual Delaunay mesh) for two- and three-dimensional computational electromagnetics are well known. The co-volume method is faster than traditional methods for an unstructured mesh and needs less memory. The co-volume integration scheme preserves energy, i.e. gives high accuracy of wave amplitude. It also gives better accuracy if the scattering objects has sharp corners or vertices. However, the co-volume method requires use of high quality unstructured dual Voronoi-Delaunay diagrams which cannot be created by classical mesh generation methods. For two-dimensional problems, a stitching method gives the best mesh quality for a wide variety of domains. Generation of a three-dimensional dual mesh appropriate for the use of a co-volume scheme is a much more difficult issue. Here, an approach is being developed where the main ideas of the stitching method are exploited. Some examples of three-dimensional meshes generated by this new method, as well as the results of the integration of Maxwell´s equations on those meshes, are presented.
  • Keywords
    computational geometry; finite volume methods; Maxwell equation; Voronoi-Delaunay dual diagram; covolume integration scheme; stitching method; Computational electromagnetics; Electromagnetic scattering; Finite element methods; Geometry; Integral equations; Magnetic fields; Maxwell equations; Mesh generation; Shape; Wire;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Voronoi Diagrams in Science and Engineering, 2007. ISVD '07. 4th International Symposium on
  • Conference_Location
    Glamorgan
  • Print_ISBN
    0-7695-2869-4
  • Type

    conf

  • DOI
    10.1109/ISVD.2007.26
  • Filename
    4276122