• DocumentCode
    1367760
  • Title

    Accelerated isosurface extraction in time-varying fields

  • Author

    Sutton, Philip M. ; Hansen, Charles D.

  • Author_Institution
    Lawrence Livermore Nat. Lab., CA, USA
  • Volume
    6
  • Issue
    2
  • fYear
    2000
  • Firstpage
    98
  • Lastpage
    107
  • Abstract
    For large time-varying data sets, memory and disk limitations can lower the performance of visualization applications. Algorithms and data structures must be explicitly designed to handle these data sets in order to achieve more interactive rates. The Temporal Branch-on-Need Octree (T-BON) extends the three-dimensional branch-on-need octree for time-varying isosurface extraction. This data structure minimizes the impact of the I/O bottleneck by reading from disk only those portions of the search structure and data necessary to construct the current isosurface. By performing a minimum of I/O and exploiting the hierarchical memory found in modern CPUs, the T-BON algorithm achieves high performance isosurface extraction in time-varying fields. The paper extends earlier work on the T-BON data structure by including techniques for better memory utilization, out-of-core isosurface extraction, and support for nonrectilinear grids. Results from testing the T-BON algorithm on large data sets show that its performance is similar to that of the three-dimensional branch-on-need octree for static data sets while providing substantial advantages for time varying fields
  • Keywords
    data structures; data visualisation; feature extraction; octrees; search problems; I/O bottleneck; T-BON; Temporal Branch-on-Need Octree; accelerated isosurface extraction; data structures; hierarchical memory; high performance isosurface extraction; interactive rates; large data sets; large time-varying data sets; memory utilization; nonrectilinear grids; search structure; static data sets; three-dimensional branch-on-need octree; time-varying fields; time-varying isosurface extraction; visualization applications; Acceleration; Algorithm design and analysis; Computational fluid dynamics; Data mining; Data structures; Data visualization; Instruments; Isosurfaces; Sampling methods; Testing;
  • fLanguage
    English
  • Journal_Title
    Visualization and Computer Graphics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1077-2626
  • Type

    jour

  • DOI
    10.1109/2945.856992
  • Filename
    856992